Substance Use Disorders
Paper II · Clinical Psychiatry. Six study modes, from notes to quick review.
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Study Notes
Sources: Kaplan & Sadock's Comprehensive Textbook of Psychiatry (10th ed.), Stahl's Essential Psychopharmacology (4th ed.), Oxford Textbook of Psychiatry, WHO Guidelines on Substance Use, ICD-11, DSM-5-TR
SECTION 1: CLASSIFICATION OF SUBSTANCE USE DISORDERS
1.1 Conceptual Framework
Substance use disorders exist on a spectrum from use → misuse → harmful use → dependence. The major diagnostic systems differ in how they carve this spectrum.
ICD-11 and DSM-5 both moved away from the old ICD-10 "dependence syndrome" / "harmful use" binary, but they did so differently. Know both systems cold.
1.2 ICD-11 Classification
Categories under "Disorders due to substance use" (6C40–6C4Z):
| Category | Definition | Key Features |
|---|---|---|
| Single episode of harmful use | One episode causing harm | Biological, psychological, or social harm |
| Harmful use pattern | Persistent pattern over 12 months causing harm | Repeated harm; no dependence features required |
| Hazardous use | Pattern that increases risk of harm | No current harm needed; a risk category |
| Dependence | Dysregulated use with strong internal drive | Core syndrome: impaired control, salience, physiological features |
| Intoxication | Transient substance-specific syndrome | Time-limited, clinically significant |
| Withdrawal | Syndrome on cessation/reduction | Substance-specific, physiological |
| Substance-induced disorders | Mental disorders attributable to substance | Psychosis, delirium, mood disorders, etc. |
ICD-11 Dependence Criteria (3 or more features present together):
- Strong internal drive / compulsion to use
- Impaired control (onset, frequency, amount, cessation)
- Priority given to use over other activities and obligations
- Use despite harm (physical, mental, social)
- Tolerance
- Withdrawal symptoms OR use to avoid withdrawal
- Physiological features (tolerance + withdrawal = physiological dependence subtype)
ICD-11 codes substances individually. Alcohol = 6C40, Opioids = 6C43, Cannabis = 6C41, Sedatives/Hypnotics = 6C44, Stimulants = 6C45, Tobacco = 6C4A, etc.
1.3 DSM-5 Classification
DSM-5 collapsed the old Abuse / Dependence distinction into a single spectrum disorder with mild/moderate/severe specifiers.
DSM-5 Substance Use Disorder Criteria (11 criteria across 4 domains):
Severity:
- Mild: 2–3 criteria
- Moderate: 4–5 criteria
- Severe: 6+ criteria
DSM-5 removed "legal problems" criterion (from DSM-IV). Added "craving" as a new criterion. Tolerance and withdrawal do NOT count if occurring within prescribed medical use.
1.4 ICD-11 vs DSM-5: Key Differences
| Feature | ICD-11 | DSM-5 |
|---|---|---|
| Structure | Separate harmful use + dependence categories | Single spectrum with severity |
| Hazardous use | Included as a category | Not included |
| Minimum criteria | 3 of 7 for dependence | 2 of 11 |
| Severity specifiers | Not used for dependence | Mild/moderate/severe |
| Polysubstance | Coded for each substance | Same |
| Craving | Included as compulsion | Explicit criterion |
| Gambling disorder | Separate category | Included under SUDs |
1.5 Physical vs Psychological Dependence
| Feature | Physical Dependence | Psychological Dependence |
|---|---|---|
| Definition | Neuroadaptation requiring substance to maintain physiological normalcy | Craving, compulsion, emotional reliance |
| Marker | Tolerance + withdrawal | Craving, salience, loss of control |
| Without the other? | Can exist (morphine for pain) | Can exist (cannabis) |
| Substances showing both | Alcohol, opioids, benzodiazepines | All substances |
| Clinical relevance | Drives medically managed detox | Drives relapse; focus of psychotherapy |
SECTION 2: ALCOHOL USE DISORDER
2.1 Epidemiology
- Global: ~2.3 billion drinkers; 283 million with AUD (WHO 2018)
- India: ~160 million drinkers; alcohol accounts for ~4% of global disease burden
- Male:Female ratio India: ~10:1 (changing)
- NMHS India 2016: Alcohol use disorders 4.6% lifetime prevalence
2.2 Pharmacology of Alcohol
Primary mechanism: Potentiation of GABA-A receptors + Inhibition of NMDA glutamate receptors
| System | Acute Alcohol | Chronic Alcohol | Withdrawal |
|---|---|---|---|
| GABA-A | Positive allosteric modulator → CNS depression | Receptor downregulation | Reduced GABAergic tone → anxiety, seizures |
| NMDA glutamate | Antagonist → blocks excitatory transmission | Receptor upregulation | Unmasked excitatory surge → seizures, DTs |
| Dopamine (mesolimbic) | Increases DA release → reward | Blunted reward | Dysphoria, craving |
| Opioid | Releases endorphins | Tolerance | Dysphoria |
| Serotonin | Releases 5-HT | 5-HT2 upregulation | Anxiety, mood symptoms |
The GABA↓ + NMDA↑ imbalance during withdrawal is the mechanistic basis for seizures and delirium tremens. Benzodiazepines work by restoring GABAergic tone.
2.3 Metabolism of Alcohol
Pathway:
Key facts:
Zero-order (saturation) kinetics means doubling alcohol intake does NOT double metabolism rate, it doubles BAC. This is why binge drinking is dangerous and why alcohol takes longer to clear at higher concentrations.
Disulfiram mechanism: Inhibits ALDH → acetaldehyde accumulates → flushing, nausea, palpitations, hypotension (disulfiram-ethanol reaction / DER).
2.4 Alcohol Withdrawal
Timeline:
AWS seizures: usually GTCS, rarely focal, brief, self-limited. Occur in ~3–5% of untreated withdrawal. Status epilepticus is rare. If focal → think structural lesion.
2.5 Delirium Tremens (DTs)
Clinical features (5 Ds):
- Delirium (confusion, disorientation, impaired attention)
- Diaphoresis (profuse sweating)
- Dysautonomia (tachycardia, hypertension, hyperthermia, mydriasis)
- Dread (extreme anxiety, agitation)
- Dreams / hallucinations (visual > auditory; Lilliputian hallucinations classic)
DTs mortality: untreated 15–35%, treated <1%. Risk factors: prior DTs, seizures, concurrent illness, prolonged heavy drinking, poor nutritional status.
Risk factors for severe withdrawal:
- Previous severe withdrawal / seizures / DTs
- High alcohol intake (>10 drinks/day)
- Long duration of dependence
- Old age
- Concurrent medical illness
- Poor nutrition (thiamine deficiency)
- Benzodiazepine/sedative co-use
2.6 CIWA-Ar (Clinical Institute Withdrawal Assessment for Alcohol, revised)
10 items assessed:
Total score interpretation:
| Score | Severity | Management |
|---|---|---|
| <8 | Mild | Monitoring, supportive care; consider ambulatory detox |
| 8–15 | Moderate | Benzodiazepines as needed (symptom-triggered) |
| >15 | Severe | Standing benzodiazepine schedule; close monitoring |
| >20 | Very severe | ICU/HDU consideration; IV benzodiazepines |
CIWA-Ar is the gold standard for severity-guided benzodiazepine dosing. Symptom-triggered protocols using CIWA-Ar use significantly less benzodiazepine than fixed-schedule protocols.
2.7 Management of Alcohol Withdrawal
Step 1: Assess and stabilize
- Vitals, blood glucose, electrolytes (Na, K, Mg), LFTs, CBC, coagulation
- Identify concurrent illness, head injury, infection
- Assess nutritional status, hydration
Step 2: Thiamine (MANDATORY, before any glucose/IV fluids)
- 100 mg IV/IM thiamine before glucose infusion
- Rationale: Glucose load can precipitate Wernicke's encephalopathy in thiamine-depleted state
- High-risk patients: 200–500 mg IV thiamine (Pabrinex)
Step 3: Benzodiazepines (pharmacological backbone)
| Benzodiazepine | Route | Advantages | Use preference |
|---|---|---|---|
| Diazepam | Oral/IV | Long-acting → smooth; IV for seizure | Standard choice in India; IV for DTs |
| Chlordiazepoxide | Oral | Long-acting; good oral bioavailability | Mild-moderate uncomplicated withdrawal |
| Lorazepam | IV/IM | Short-acting; no active metabolites | Liver disease; elderly; easier to titrate |
| Oxazepam | Oral | Short-acting; no active metabolites; safe in liver disease | Liver cirrhosis |
Fixed-schedule (front-loading) protocol, Diazepam:
- Day 1: 20 mg QID (or higher based on CIWA-Ar)
- Reduce by 20–25% per day
- Taper over 5–10 days
Symptom-triggered protocol: CIWA-Ar ≥8 → give diazepam 10–20 mg; reassess every 1–2 hours.
Step 4: Adjuncts
- Thiamine: Continue oral for 2 weeks post-detox
- Multivitamins: Folate, B12
- Clonidine: Autonomic symptoms (adjunct, not primary)
- Beta-blockers (propranolol): HR/BP; no anticonvulsant effect, do NOT use alone
- Carbamazepine: Alternative anticonvulsant; preferred in outpatient mild-moderate withdrawal; not standard for DTs
- Haloperidol: For psychotic symptoms in DTs; NEVER as sole agent (no anticonvulsant effect)
- Magnesium: If hypomagnesemia
Managing DTs:
- ICU/HDU
- IV diazepam: boluses of 5–10 mg every 5–15 minutes until calm; then infusion or PO
- IV lorazepam alternative
- Monitor: airway, BP, temperature, glucose
- Treat precipitating factors: infection, head injury
2.8 Relapse Prevention (Pharmacotherapy)
| Drug | Mechanism | Dose | Evidence | Contraindications |
|---|---|---|---|---|
| Disulfiram | ALDH inhibitor → DER if alcohol consumed | 250–500 mg/day | Moderate; supervised use better | Psychosis, CV disease, hepatic disease, pregnancy; requires absolute abstinence motivation |
| Naltrexone | Mu-opioid antagonist → blocks euphoria, reduces craving | 50 mg/day oral; 380 mg/month IM (Vivitrol) | Strong (NNT ~7) | Active opioid use (precipitates withdrawal), hepatic impairment |
| Acamprosate | GABA-A agonist + NMDA antagonist → reduces protracted withdrawal symptoms | 666 mg TID | Strong; best started after detox | Severe renal failure (CrCl <30) |
| Baclofen | GABA-B agonist | 30–80 mg/day; up to 300 mg in Ameisen protocol | Moderate; especially for anxiety | Caution: seizures on abrupt discontinuation |
| Nalmefene | MOR antagonist + KOR partial agonist | 18 mg PRN (as-needed) | Good for reduced drinking goals | Similar to naltrexone |
Naltrexone works best for heavy drinking reduction / craving. Acamprosate works best for maintaining abstinence in those already detoxed. Disulfiram requires absolute motivation and monitoring. Baclofen has Indian trial data (Kiefer, Addolorato studies).
Psychosocial treatments:
- Motivational Enhancement Therapy (MET), 2–4 sessions
- Cognitive Behavioural Therapy (CBT), relapse prevention focused
- 12-Step Facilitation (Alcoholics Anonymous)
- Behavioural Couples Therapy
- Community Reinforcement Approach (CRA)
2.9 Wernicke-Korsakoff Syndrome
Thiamine deficiency in alcohol use disorder, the pathophysiology:
- Inadequate dietary intake
- Malabsorption
- Increased metabolic demand
- Impaired hepatic storage
Wernicke's Encephalopathy (acute):
Giving IV glucose before thiamine in a suspected Wernicke's can precipitate acute decompensation. Thiamine first, always.
Korsakoff's Syndrome (chronic amnestic):
- Anterograde amnesia (new learning severely impaired) > retrograde amnesia
- Confabulation (unconscious fabrication to fill memory gaps)
- Relative preservation of other cognitive functions
- Insight usually absent
- Neurologically: dorsomedial thalamus + mammillary body atrophy
- Outcome: ~25% significant recovery, ~50% partial, ~25% minimal improvement
2.10 Alcoholic Hallucinosis
Alcoholic hallucinosis differs from DTs: clear consciousness, predominantly auditory, no autonomic instability. It differs from schizophrenia by: acute onset, temporal link to alcohol withdrawal, resolves with abstinence.
2.11 Pathological Intoxication (Alcohol Idiosyncratic Intoxication)
- Extreme behavioral change (aggression, violence) after small amounts of alcohol
- Disproportionate to amount consumed
- Amnesia for the episode common
- Rare; uncertain whether distinct entity
- Mechanism: possibly related to temporal lobe sensitivity, epileptic disinhibition
- DSM-5: absorbed into "other specified alcohol-related disorder"
2.12 Fetal Alcohol Spectrum Disorders (FASD)
No safe level of alcohol in pregnancy.
FAS Facial Features (facial dysmorphology triad):
- Smooth philtrum
- Thin vermilion border of upper lip
- Short palpebral fissures
CNS effects:
- Microcephaly, intellectual disability
- ADHD, learning disabilities
- Behavioral problems
- Impaired executive function
FAS is the most common preventable cause of intellectual disability.
SECTION 3: OPIOID USE DISORDERS
3.1 Epidemiology
- Global: ~62 million people use opioids non-medically (UNODC 2022)
- India: ~2.26 million heroin users (UNODC); significant rise in pharmaceutical opioid misuse
- Biggest contributor to overdose deaths globally
- India NDPS Act: heroin Schedule I, pharmaceutical opioids Schedule II (regulatory complexity)
3.2 Pharmacology
Opioid receptors (all are GPCRs, Gi/o coupled → ↓cAMP, K+ channel open, Ca2+ channel closed → neuronal inhibition):
| Receptor | Primary agonist | Key clinical effects |
|---|---|---|
| Mu (MOR) | Morphine, heroin, fentanyl | Analgesia, euphoria, respiratory depression, constipation, dependence |
| Kappa (KOR) | Dynorphin | Sedation, dysphoria, analgesia; no dependence |
| Delta (DOR) | Enkephalin | Analgesia, mood modulation |
| Nociceptin/OFQ (NOP) | Nociceptin | Antiopioid; complex |
Respiratory depression is MOR-mediated. This is why MOR antagonism (naloxone) reverses overdose. Buprenorphine is a partial MOR agonist, ceiling on respiratory depression.
Endogenous ligands:
- Beta-endorphin → MOR
- Met/Leu-enkephalin → DOR
- Dynorphin → KOR
- Nociceptin → NOP
3.3 Heroin
- Diacetylmorphine
- More lipophilic than morphine → crosses BBB faster → intense rush
- Rapidly hydrolyzed to 6-monoacetylmorphine → morphine
- Route: IV (most bioavailable), smoked ("chasing the dragon"), intranasal
3.4 Opioid Intoxication
3.5 Opioid Withdrawal
Timeline (heroin):
- Short-acting opioids (heroin): begins 6–24 hours post-dose; peaks 36–72 hours; resolves 5–7 days
- Long-acting opioids (methadone): begins 24–48 hours; peaks 3–5 days; resolves 2–3 weeks
COWS (Clinical Opiate Withdrawal Scale), 11 items:
Score interpretation:
- 5–12: Mild
- 13–24: Moderate
- 25–36: Moderately severe
- >36: Severe
Opioid withdrawal is intensely dysphoric but NOT life-threatening in otherwise healthy adults (unlike alcohol withdrawal). It is dangerous in: neonates, pregnancy, severe comorbidities.
Mnemonic for opioid withdrawal signs: "DAMP COIL"
- Diarrhea
- Anxiety
- Mydriasis (dilated pupils)
- Piloerection
- Cramps/muscle aches
- Only not life-threatening (except in neonates/pregnancy)
- Insomnia
- Lacrimation/rhinorrhea
3.6 Opioid Substitution Therapy (OST)
Rationale: Replace illicit, short-acting opioid with long-acting, orally administered, medically supervised opioid → stabilize, reduce craving, reduce needle use, reduce crime, reduce mortality.
| Feature | Methadone | Buprenorphine |
|---|---|---|
| Drug class | Full MOR agonist | Partial MOR agonist + KOR antagonist |
| Half-life | 24–36 hours | 24–72 hours (sublingual) |
| Route | Oral liquid | Sublingual (alone or with naloxone) |
| Starting dose | 20–40 mg/day | 4–8 mg/day |
| Maintenance | 60–120 mg/day | 16–32 mg/day |
| Ceiling effect | No | Yes (on respiratory depression) |
| Diversion risk | High | Lower (buprenorphine/naloxone formulation) |
| QTc prolongation | Yes (dose-dependent) | Minimal |
| Induction | Day 1 of seeking treatment | Patient must be in mild-moderate withdrawal (COWS ≥8–12) before first dose |
| Indication | Severe OUD, failed other treatment | First-line for OUD |
| In pregnancy | Preferred (established safety data) | Increasing evidence |
Buprenorphine induction when NOT in withdrawal can precipitate severe withdrawal, because buprenorphine (partial agonist with high receptor affinity) displaces full agonist off receptors. This is the "precipitated withdrawal" risk.
Buprenorphine/Naloxone (Suboxone):
- Naloxone is bioavailable only IV, not sublingually
- If injected IV (diverted): naloxone becomes active → precipitates withdrawal → deters IV misuse
- Sublingual: only buprenorphine effect
3.7 Naloxone for Overdose Reversal
3.8 Neonatal Opioid Withdrawal Syndrome (NOWS) / Neonatal Abstinence Syndrome (NAS)
When: Infant born to opioid-dependent mother (prescribed or illicit); onset 24–72 hours for heroin, up to 5–7 days for methadone.
Finnegan Neonatal Abstinence Scoring System:
Signs scored: high-pitched cry, sleep <3 hours, sleep <2 hours, hyperactive Moro reflex, tremors, muscle tone increased, excoriation, frequent yawning, mottling, fever, sweating, nasal stuffiness, sneezing, nasal flaring, respiratory rate >60, feeding problems, regurgitation, vomiting, loose stools, watery stools.
Score ≥8 on two occasions → pharmacological treatment:
- First-line: Oral morphine or methadone
- Adjunct: Phenobarbital for seizures
- Breastfeeding (if not HIV+, no drug use except OST): encouraged; reduces NOWS severity
SECTION 4: CANNABIS USE DISORDERS
4.1 The Endocannabinoid System
Delta-9-THC (primary psychoactive constituent):
- Partial CB1/CB2 agonist
- Highly lipophilic → crosses BBB rapidly
- Metabolized to active metabolite 11-OH-THC
- Stored in fat → prolonged urinary detection (2–4 weeks in heavy users)
CBD (cannabidiol):
- Non-psychoactive
- CB1 negative allosteric modulator; also 5-HT1A agonist, TRPV1 agonist
- Anticonvulsant, anxiolytic properties
- May attenuate THC-induced psychosis risk
4.2 Acute Intoxication
- Euphoria, relaxation, altered perception of time, increased appetite ("munchies")
- Impaired short-term memory, concentration
- Tachycardia, conjunctival injection, dry mouth
- Anxiety, panic (especially naive users or high-THC products)
- Perceptual distortions (not true hallucinations usually)
4.3 Cannabis Use Disorder
- ~9% of users develop dependence (compare: tobacco 32%, heroin 23%, cocaine 17%)
- Higher risk with: early onset use, daily/near-daily use, high-potency products, co-occurring anxiety/depression
- DSM-5 criteria: 2+ of 11 within 12 months
- No pharmacologically validated treatment; psychosocial (CBT, MI, CM) primary
Cannabis Withdrawal Syndrome (ICD-11, DSM-5 recognized):
Onset 24–72 hours; peaks 2–6 days; resolves 1–2 weeks
Symptoms: Irritability/anger/aggression, anxiety, sleep disturbance, appetite decrease, restlessness, depressed mood, GI disturbance, somatic discomfort (headache, sweats, chills)
4.4 Amotivational Syndrome
- Chronic cannabis use → apathy, reduced goal-directed activity, decreased motivation, flat affect
- Mechanism: chronic CB1 agonism → downregulation in prefrontal cortex → reduced dopaminergic drive
- Controversial as distinct entity vs intoxication state vs comorbid depression
- Partially reversible with sustained abstinence
4.5 Cannabis-Induced Psychosis
| Feature | Cannabis-Induced Psychosis | Primary Psychosis |
|---|---|---|
| Temporal link | Within 1 month of use | No temporal link |
| Duration | Typically resolves within 1 month of abstinence | Persistent |
| Content | Paranoia, perceptual changes | Any content |
| Consciousness | Relatively clear | Clear |
| Longitudinal | ~25–50% convert to schizophrenia-spectrum over 5 years | N/A |
| Treatment | Abstinence + antipsychotic | Antipsychotic |
Cannabis is a component cause of schizophrenia. Meta-analyses show ~2-fold increased risk of psychosis with any cannabis use; ~4-fold with heavy use. High-potency THC products carry highest risk. Earlier onset → higher risk.
The THC:CBD ratio matters, high THC/low CBD products (modern skunk) have higher psychotomimetic risk than balanced products.
4.6 Synthetic Cannabinoids ("Spice," "K2," "Mambas")
- Full CB1 agonists (vs THC partial) → more potent, more toxic
- Clinical features more severe: psychosis, seizures, AKI, cardiovascular events, death
- No specific antidote; supportive management
- Not detected on standard urine drug screens
SECTION 5: TOBACCO USE DISORDER
5.1 Nicotine Pharmacology
5.2 Fagerstrom Test for Nicotine Dependence (FTND)
6 questions (0–10 score):
Score: 0–3 low; 4–6 moderate; 7–10 high dependence
The single most predictive FTND item: time to first cigarette after waking. If <30 minutes, patient is highly dependent and likely needs pharmacotherapy.
5.3 Treatment of Nicotine Dependence
5 A's framework: Ask → Advise → Assess → Assist → Arrange
5 R's for unmotivated patients: Relevance → Risks → Rewards → Roadblocks → Repetition
| Treatment | Mechanism | Efficacy |
|---|---|---|
| NRT (nicotine patch, gum, lozenge, inhaler, spray) | Nicotine replacement, reduces withdrawal | Doubles quit rates vs placebo |
| Bupropion SR | Blocks DA and NE reuptake; nAChR antagonist | Doubles quit rates; also antidepressant |
| Varenicline (Champix) | Partial α4β2 nAChR agonist | Triples quit rates vs placebo; best single agent |
| Combination NRT | Patch (long-acting) + short-acting NRT | More effective than monotherapy |
Varenicline: concern about neuropsychiatric adverse effects (depression, suicidality), black box warning was added then partially retracted. Still caution in those with mental illness. Bupropion: seizure risk (dose-related), contraindicated in eating disorders, seizure history.
SECTION 6: STIMULANT USE DISORDERS
6.1 Cocaine
Pharmacology:
- Blocks reuptake transporters for DA, NE, 5-HT (primarily DA reuptake inhibitor in striatum)
- Also: local anesthetic (Na channel blockade)
- Routes: intranasal ("snorting"), IV, smoked as crack cocaine
Crack vs powder cocaine:
| Feature | Powder Cocaine | Crack Cocaine |
|---|---|---|
| Form | Hydrochloride salt | Freebase (prepared with baking soda) |
| Route | Intranasal, IV | Smoked |
| Onset | Minutes (intranasal) | Seconds (smoked) |
| Duration | 15–30 min | 5–10 min |
| Intensity | Moderate | Very high |
| Risk | Nasal septum damage | Pulmonary problems; highest addiction potential |
Cocaine intoxication:
- Euphoria, grandiosity, increased energy, decreased appetite
- Tachycardia, hypertension, dilated pupils, diaphoresis
- With high doses: paranoia, perceptual disturbances
Cocaine "crash" (withdrawal):
- Dysphoria, fatigue, hypersomnia, hyperphagia, depression, craving
- No physiological withdrawal per se; psychological craving intense
- Phase: post-acute withdrawal → "extinction" phase (month-long craving cycles triggered by cues)
Cocaine-induced psychosis:
- Paranoid delusions, tactile hallucinations (formication, "coke bugs")
- Auditory hallucinations
- Clear sensorium usually maintained
- Typically resolves within days to weeks of abstinence
Medical complications of cocaine:
- Cardiovascular: MI (even in young users), arrhythmia, aortic dissection, cardiomyopathy
- Pulmonary: "crack lung", acute pneumonitis
- Neurological: stroke, seizure
- Nasal: septum perforation, rhinitis, anosmia
6.2 Amphetamines and Methamphetamine
Mechanism:
- Reverses DAT, NET, SERT (releases stored monoamines), not just reuptake blockade
- Net effect: massive increase in synaptic DA, NE, 5-HT
Methamphetamine ("crystal meth"):
- More potent and longer-acting than amphetamine
- Routes: smoked, IV, intranasal
- Neurotoxicity: damages DA and 5-HT terminals with chronic use → Parkinsonism, cognitive decline
- "Meth mouth": severe dental decay from xerostomia, bruxism, acidic environment
MDMA (3,4-methylenedioxymethamphetamine / Ecstasy):
- Releases 5-HT (primary) > DA; also oxytocin release
- Acute: empathogen, euphoria, increased sociability
- Neurotoxic to serotonergic neurons with repeated use
- Hyperthermia (dangerous; serotonin syndrome risk)
- Hyponatremia (drinking excess water while dancing)
SECTION 7: SEDATIVE-HYPNOTIC USE DISORDERS
7.1 Benzodiazepine Pharmacology
- Positive allosteric modulators of GABA-A receptor (chloride channel)
- Increase frequency of Cl− channel opening (not duration, that's barbiturates)
- Binding site distinct from alcohol/barbiturate sites but all converge on GABA-A
Clinical uses: Anxiety, insomnia, seizures, acute alcohol withdrawal, muscle relaxation, pre-anaesthetic
7.2 Benzodiazepine Dependence
Risk factors: Longer duration of use (>4–6 weeks at therapeutic doses), higher dose, short-acting agents, prior dependence history, anxiety disorders, elderly.
Withdrawal: Similar to alcohol withdrawal (GABA-related); potentially life-threatening
Withdrawal timeline:
- Short-acting (lorazepam, alprazolam, triazolam): 24–48 hours onset; peaks 2–4 days
- Long-acting (diazepam, clonazepam, chlordiazepoxide): 5–7 days onset; peaks 2 weeks
Withdrawal symptoms:
- Anxiety, insomnia, tremor, diaphoresis, tachycardia, hypertension
- Perceptual hypersensitivity (sensory, light, sound)
- Seizures (particularly with abrupt cessation of short-acting benzos)
- Delirium (rare but serious)
Management of BZD dependence:
- Switch to long-acting BZD (diazepam equivalent)
- Slow taper, typically over weeks to months (NOT the rapid 5–10 day protocol of alcohol)
- Typical rate: 10% per week; slower as dose decreases
- Adjuncts: CBT (particularly for anxiety), sleep hygiene
7.3 Z-Drugs (Non-Benzodiazepine Hypnotics)
- Zolpidem, zaleplon, zopiclone (eszopiclone)
- Act on BZD receptor but with more selectivity for α1 subunit (sedation) vs α2 (anxiolysis)
- Lower dependence potential than BZDs (theoretical; clinical evidence mixed)
- Same withdrawal profile at high doses/long duration
- Unusual sleep behaviors: sleep-walking, sleep-eating, sleep-driving
7.4 GHB (Gamma-Hydroxybutyrate)
- Endogenous GABA precursor + GHB receptor agonist at low doses; GABA-B agonist at high doses
- Medical use: narcolepsy (sodium oxybate), alcohol withdrawal (in some countries)
- Abuse: "club drug," recreational use, "date rape drug" (rapid sedation/amnesia)
- Narrow therapeutic window; overdose: loss of consciousness, respiratory depression, coma
- Withdrawal: alcohol-like withdrawal syndrome; potentially severe
SECTION 8: NOVEL AND EMERGING SUBSTANCES
8.1 Kratom (Mitragyna speciosa)
- Tropical plant (Southeast Asia); leaves chewed or brewed
- Active alkaloids: mitragynine and 7-hydroxymitragynine
- Mechanism: partial MOR agonist at high doses; stimulant at low doses
- Uses: self-treatment of opioid withdrawal, pain, fatigue
- Dependence: opioid-like withdrawal syndrome
- Pharmacokinetics: half-life ~9 hours
- Legal status varies; increasing global use
8.2 Synthetic Cathinones ("Bath Salts")
- Structural analogs of cathinone (khat plant alkaloid)
- Examples: mephedrone, MDPV, alpha-PVP
- Mechanism: monoamine releasing/reuptake blocking (DA > NE > 5-HT)
- Clinical features: stimulant effects + psychosis; "excited delirium"
- High lethality potential: hyperthermia, rhabdomyolysis, cardiovascular collapse
- Not detected on standard drug screens
8.3 Novel Psychoactive Substances (NPS)
- Designed to mimic effects of controlled substances while remaining technically legal ("designer drugs")
- Categories: synthetic cannabinoids, synthetic cathinones, novel phenethylamines (NBOMe series), novel opioids (fentanyl analogs), dissociatives (novel ketamine analogs)
- Surveillance challenge: new compounds emerge faster than they can be scheduled
- India: Amendment to NDPS Act attempts to include analog compounds
8.4 Inhalants
- Toluene (glue), gasoline, nitrous oxide, amyl/butyl nitrite ("poppers")
- Particularly prevalent in adolescents, homeless populations, India (Pidilite/Fevicol sniffing)
- Mechanism: CNS depression (general anesthetic-like); toluene: GABA-A + NMDA effects
- Toxic: "sudden sniffing death" (ventricular fibrillation); cerebellar atrophy; dementia; white matter damage
- No pharmacological treatment; psychosocial focus
SECTION 9: MOTIVATIONAL INTERVIEWING
9.1 Definition and Spirit
MI is a collaborative, person-centered form of guiding to elicit and strengthen motivation for change.
MI Spirit (PACE):
- Partnership, collaborative, not expert-to-client
- Acceptance, absolute worth, accurate empathy, autonomy support, affirmation
- Compassion, active promotion of client's welfare
- Evocation, drawing out client's own motivation and wisdom
9.2 Four Processes of MI
- Engaging, establishing a working relationship
- Focusing, developing and maintaining a specific direction
- Evoking, eliciting motivation for change
- Planning, developing commitment and plan
9.3 Core Skills: OARS
| Skill | Purpose | Example |
|---|---|---|
| Open questions | Elicit detailed responses | "What concerns you most about your drinking?" |
| Affirmations | Recognize strengths | "It took courage to come here today." |
| Reflective listening | Demonstrate understanding | "It sounds like you're torn between..." |
| Summaries | Collect, link, transition | Summary of change talk heard |
9.4 Change Talk and Sustain Talk
Change talk (DARN CAT):
- Desire ("I want to...")
- Ability ("I could...")
- Reason ("Because...")
- Need ("I need to...")
- Commitment ("I will...")
- Activation ("I'm ready to...")
- Taking steps ("I've already...")
Sustain talk: Arguments for the status quo ("But I enjoy it...", "I'm not that bad...")
Discord: Defensiveness, argument, changing subject, respond with reflection, not argument
9.5 Ambivalence and Decisional Balance
A central MI concept: ambivalence (simultaneously wanting and not wanting to change) is normal, not pathological. The task is to explore ambivalence rather than confront or argue with it.
Decisional balance: Explore costs and benefits of both change and status quo.
SECTION 10: STAGES OF CHANGE (TRANSTHEORETICAL MODEL)
10.1 Prochaska & DiClemente Model
| Stage | Description | Intervention |
|---|---|---|
| Precontemplation | No awareness of problem; not considering change | Provide information; raise awareness without confrontation |
| Contemplation | Aware of problem; ambivalent; weighing pros/cons | Explore ambivalence; decisional balance; MI |
| Preparation | Intends to change in next 30 days; making plans | Help develop specific plan; goal-setting |
| Action | Actively making changes; <6 months | Support; reinforce; manage barriers |
| Maintenance | Sustained change >6 months; relapse prevention | Relapse prevention skills; CBT; continued support |
| Relapse | Return to use | Non-judgmental; normalize; return to earlier stages |
Relapse is not a stage failure, it's part of the normal change cycle. Average person makes 3–4 serious quit attempts before sustained recovery. Termination (permanent exit from cycle) is sometimes added as stage 6.
SECTION 11: BRIEF INTERVENTIONS
11.1 FRAMES (Components of Effective Brief Intervention)
- Feedback, personalized feedback on risk/harm
- Responsibility, emphasize personal responsibility for change
- Advice, clear advice to change
- Menu, range of options for change
- Empathy, warm, empathic counseling style
- Self-efficacy, build belief in ability to change
11.2 Screening Tools
AUDIT (Alcohol Use Disorders Identification Test):
- 10 items; covers frequency, quantity, dependence features, consequences
- Score 0–40
- Threshold: ≥8 hazardous/harmful use; ≥15 likely dependence
- Developed by WHO; validated cross-culturally
- AUDIT-C (3 items): brief screen; score ≥4 men, ≥3 women = positive
CAGE (4 questions):
- Cut down, ever felt you should cut down?
- Annoyed, have people annoyed you by criticizing your drinking?
- Guilty, ever felt guilty about drinking?
- Eye opener, ever had a drink first thing in the morning (eye opener)?
- Score ≥2: clinically significant; sensitivity ~74%, specificity ~91%
MAST (Michigan Alcohol Screening Test):
- 25-item questionnaire; score >5 indicates alcoholism
- Brief MAST (13 items) also available
DAST (Drug Abuse Screening Test):
- 28-item (or 10-item) tool for non-alcohol substances
- Score ≥6 = substance abuse
SECTION 12: DUAL DIAGNOSIS
12.1 Epidemiology
- ~50% of those with severe mental illness have a lifetime SUD
- ~50% of those with SUD have a lifetime psychiatric disorder
- Most common combinations:
- Alcohol + Depression/Anxiety
- Stimulants + Psychosis/Bipolar
- Cannabis + Psychosis/Anxiety
- Opioids + Depression/PTSD
12.2 Pathways Linking SUD and Mental Illness
12.3 Management Principles
Integrated treatment is superior to sequential or parallel approaches:
- Address both disorders simultaneously in same setting
- Same team, shared conceptual model
- Stage-wise approach (engagement → persuasion → active treatment → relapse prevention)
- Modified MI for dual diagnosis: accept low motivation early; build engagement first
Sequential approach (outdated): Treat one before the other, poor outcomes
Medication principles:
- Use formulations with lower abuse potential where possible
- Monitor for interactions (e.g., antidepressants + alcohol)
- SSRIs: first-line for depression/anxiety in SUD; may also reduce drinking
- Naltrexone: avoid if on opioids; helpful for alcohol in depression comorbidity
- Antipsychotics: avoid olanzapine/clozapine in stimulant users (metabolic risk compounded)
SECTION 13: INDIAN CONTEXT
13.1 NDPS Act (Narcotic Drugs and Psychotropic Substances Act, 1985)
Key provisions:
Small quantities under NDPS:
- Opium: 25 grams
- Heroin: 5 grams
- Cocaine: 2 grams
- Cannabis (charas): 100 grams; ganja: 1 kg
- Amphetamine: 2 grams
The NDPS Act has been criticized for being too punitive toward users. Section 71 offers a humane pathway but is underused. The clinician's role: document addiction as illness, advocate for treatment rather than prosecution.
13.2 De-addiction Infrastructure in India
13.3 Drug Trends in India
- Alcohol: most prevalent; rising female use
- Pharmaceutical opioids: codeine-containing cough syrups, tramadol, buprenorphine misuse
- Heroin: Punjab, Rajasthan, Northeast India (Golden Crescent and Golden Triangle routes)
- Cannabis: widespread; increasing synthetic cannabis reports
- Stimulants: amphetamine use rising in trucking industry
- Tobacco: dual use (smoked + smokeless)
SECTION 14: SPECIAL TOPICS
14.1 Pharmacogenomics Relevant to Addiction
| Gene | Substance | Clinical Relevance |
|---|---|---|
| ALDH2*2 | Alcohol | East Asian flushing response; lower alcoholism risk |
| ADH1B2, ADH1B3 | Alcohol | Faster acetaldehyde production; lower alcoholism risk |
| OPRM1 A118G | Opioids/Alcohol | Affects naltrexone response in AUD |
| CYP2A6 | Nicotine | Poor metabolizers: longer nicotine half-life; may need lower NRT doses |
| DRD2 Taq1A | Multiple | Reduced D2 density; reward deficiency; higher addiction risk |
14.2 Neurobiological Circuits in Addiction
Three-stage cycle (Koob & Volkow):
| Stage | Brain Region | Process |
|---|---|---|
| Binge/Intoxication | Basal ganglia (striatum) | Reward, habit learning, DA surge |
| Withdrawal/Negative affect | Extended amygdala, habenula | Anti-reward: stress systems (CRF, dynorphin) activated |
| Preoccupation/Anticipation | Prefrontal cortex | Craving, impaired impulse control, cognitive bias toward drug cues |
The "allostatic model" of addiction (Koob): With repeated substance use, the hedonic set point shifts downward, baseline is dysphoria, drugs only restore "normal." This explains why late-stage dependence is about avoiding withdrawal rather than seeking pleasure.
14.3 Reward Deficiency Syndrome
Concept: individuals with blunted dopaminergic reward systems (genetic, developmental) are at higher risk for addiction (and other compulsive behaviors). Basis for DA-based pharmacological strategies.
14.4 Process Addictions
- Gambling disorder (only non-substance addiction in DSM-5 SUD chapter)
- Gaming disorder (ICD-11: addictive behaviors section)
- Internet gaming, social media, pornography (under research)
- Same neurobiological circuits as substance use
SECTION 15: HIGH-YIELD DRUG FACTS TABLE
| Drug | Class | Receptor | Key Withdrawal | First-line Treatment |
|---|---|---|---|---|
| Alcohol | Sedative | GABA-A↑, NMDA↓ | Seizures, DTs (life-threatening) | Diazepam detox; naltrexone/acamprosate maintenance |
| Heroin | Opioid | MOR agonist | Dysphoric, not life-threatening | Buprenorphine/naloxone OST |
| Cocaine | Stimulant | DAT/NET/SERT blocker | Crash: dysphoria, fatigue | No approved pharmacotherapy; CBT |
| Methamphetamine | Stimulant | DAT/NET/SERT releaser | As cocaine; also depression | No approved; CBT, contingency management |
| Cannabis | Cannabinoid | CB1 agonist | Irritability, insomnia, anxiety | CBT, MI; no approved pharmacotherapy |
| Nicotine | Stimulant | α4β2 nAChR agonist | Irritability, craving, weight gain | Varenicline > Bupropion > NRT |
| Benzodiazepines | Sedative | GABA-A PAM | Seizures, anxiety (life-threatening) | Slow taper with long-acting BZD |
| MDMA | Empathogen | 5-HT/DA/NE releaser | Fatigue, depression | Supportive |
Model Answers
Sources: Kaplan & Sadock, Stahl's, Oxford Textbook of Psychiatry, WHO Guidelines, ICD-11, DSM-5-TR
HOW TO USE THIS FILE
Each answer is structured for a 10-mark long-answer question. Recommended time: 15–18 minutes per question. Target: 1 mark per ~1.5 minutes of reading. Write introductory definition, classification, body, a table, and a conclusion.
PG exams examiners reward: (1) structured answers with subheadings, (2) tables showing comparisons, (3) management flowcharts in prose, (4) clinical context in the last paragraph. Never start with "I will describe...", start with the definition.
Q1. Discuss the management of alcohol withdrawal syndrome. [10 marks]
Answer:
Definition
Alcohol withdrawal syndrome (AWS) is a clinically significant constellation of symptoms occurring when alcohol-dependent individuals abruptly stop or markedly reduce intake. It results from removal of alcohol's chronic positive allosteric modulation of GABA-A receptors and inhibition of NMDA glutamate receptors, leading to CNS hyperexcitability.
Clinical Spectrum and Timeline
| Phase | Onset (hours after last drink) | Features |
|---|---|---|
| Minor withdrawal | 6–12 | Anxiety, tremor, diaphoresis, insomnia, tachycardia, hypertension |
| Alcoholic hallucinosis | 12–24 | Auditory hallucinations, clear sensorium |
| Withdrawal seizures | 24–48 | GTCS, brief, self-limited; ~3–5% of untreated cases |
| Delirium tremens | 48–72 | Delirium, severe autonomic instability, hallucinations |
Assessment Tools
CIWA-Ar (Clinical Institute Withdrawal Assessment for Alcohol, revised):
- 10 items: nausea, tremor, paroxysmal sweats, anxiety, agitation, tactile/auditory/visual disturbances, headache, orientation
- Score <8: mild; 8–15: moderate; >15: severe; >20: ICU-level care
Management Algorithm
Step 1, Immediate assessment
- Full clinical examination, vital signs
- Blood tests: glucose, electrolytes (Na, K, Mg, phosphate), LFTs, CBC, coagulation, toxicology screen
- Identify concurrent medical illness (infection, head injury, liver disease)
Step 2, Thiamine (mandatory before glucose)
- 100–200 mg IV/IM thiamine BEFORE any IV glucose
- Rationale: Prevents precipitation of Wernicke's encephalopathy in thiamine-depleted state
- High-risk patients (malnourished, heavy drinkers): 500 mg IV thiamine (Pabrinex)
Step 3, Pharmacological management
Benzodiazepines (cornerstone of treatment):
| Agent | Route | Dose | Preference |
|---|---|---|---|
| Diazepam | Oral/IV | 10–20 mg QID, taper 20–25%/day | Standard; IV for DTs/seizures |
| Chlordiazepoxide | Oral | 25–50 mg QID, taper | Mild-moderate uncomplicated |
| Lorazepam | IV/IM | 2–4 mg Q4–6H | Liver disease; elderly |
| Oxazepam | Oral | 15–30 mg QID | Severe liver failure |
Dosing strategies:
- Fixed-schedule with CIWA-Ar monitoring: Diazepam 20 mg QID Day 1 → taper 20% per day over 5–7 days
- Symptom-triggered (preferred where feasible): CIWA-Ar ≥8 → give BZD; reassess every 1–2 hours; uses significantly less benzodiazepine
Step 4, Specific complications
Withdrawal seizures:
- IV diazepam 10–20 mg for active seizure
- If seizures recur: IV lorazepam or phenytoin loading
- Carbamazepine: alternative outpatient anticonvulsant for mild withdrawal
Delirium tremens:
- ICU/HDU monitoring
- IV diazepam titrated to calm patient (may need large doses: 100–200 mg in 24 hours)
- Correct hypoglycemia, hypomagnesemia, electrolyte imbalances
- Antipyretics for hyperthermia
- Haloperidol ONLY as adjunct for psychotic symptoms, NEVER as sole treatment (no anticonvulsant effect)
- Mortality: <1% with treatment vs 15–35% untreated
Step 5, Nutritional and general support
- Oral thiamine continue 2 weeks post-detox
- Multivitamins: folate, B12, B6
- Oral/IV hydration
- High-calorie diet
Step 6, Relapse prevention (post-detox)
- Disulfiram 250–500 mg/day (supervised)
- Naltrexone 50 mg/day
- Acamprosate 666 mg TID
- Psychosocial: CBT, MI, AA/NA, family therapy
Prognosis
Without intervention: 3–5% risk of DTs; ~3% seizure risk; significant recidivism. With structured management: DTs mortality <1%; long-term sobriety improved with combined pharmacotherapy + psychosocial treatment.
In management questions, use the "Step 1-2-3-4-5" ladder structure. Examiners reward systematic thinking. Always mention: thiamine before glucose, CIWA-Ar scoring, BZD choice rationale, DTs as emergency, relapse prevention.
Q2. Compare and contrast disulfiram, naltrexone, and acamprosate in the management of alcohol dependence. [10 marks]
Answer:
Introduction
Pharmacological relapse prevention is a key component of AUD management after successful detoxification. Three agents, disulfiram, naltrexone, and acamprosate, have the strongest evidence base and are approved by major regulatory agencies. They work through distinct mechanisms and are suited to different clinical profiles.
Mechanisms of Action
| Drug | Primary Mechanism | Target System |
|---|---|---|
| Disulfiram | Irreversible inhibition of ALDH → acetaldehyde accumulation when alcohol consumed | Alcohol metabolism |
| Naltrexone | Competitive MOR (mu-opioid) antagonist → blocks alcohol-induced euphoria and endorphin release | Opioid-mediated reward |
| Acamprosate | GABA-A positive allosteric modulator + NMDA glutamate antagonist → reduces protracted withdrawal / allostatic dysregulation | Glutamate-GABA balance |
Head-to-Head Comparison
| Feature | Disulfiram | Naltrexone | Acamprosate |
|---|---|---|---|
| Dose | 250–500 mg/day | 50 mg/day oral; 380 mg/month IM | 666 mg TID (1998 mg/day) |
| Mechanism | Deterrent | Anti-craving/anti-reward | Anti-withdrawal / pro-abstinence |
| Goal | Complete abstinence (aversion) | Reduce heavy drinking / craving | Maintain abstinence |
| Effect in setting of alcohol use | Severe DER (dangerous) | No adverse reaction | No adverse reaction |
| Evidence quality | Moderate; supervised use better | Strong (NNT ~7) | Strong; best post-detox |
| Start timing | ≥24 hours alcohol-free | Any time | After completion of detox |
| Hepatotoxicity risk | Yes (rare; LFT monitoring) | Hepatotoxic at high doses | Minimal |
| Renal excretion | No | No (hepatic) | Yes, contraindicated in severe renal failure |
| Contraindications | Psychosis, CV disease, hepatic disease, thyroid disease, pregnancy, no motivation | Active opioid use, liver failure, patients on opioid analgesia | CrCl <30 mL/min |
| Key interaction | Alcohol; metronidazole, isoniazid (produce DER-like) | Opioid analgesics (blocks analgesia) | Few significant |
| Dosing adherence challenge | Can simply stop taking it | Easier adherence | TID dosing reduces adherence |
| Best for | Highly motivated patients with social support; supervised ingestion setting | Reducing heavy drinking; craving-driven relapse; ongoing drinking at treatment start | Post-detox abstinence maintenance; anxiety-driven protracted withdrawal |
Disulfiram-Ethanol Reaction (DER)
When alcohol is consumed, acetaldehyde accumulates:
- Flushing, pulsating headache, nausea, vomiting
- Tachycardia, palpitations, hypotension
- Dyspnoea, sweating
- Severe cases: cardiovascular collapse, unconsciousness
- Treatment: supportive; IV fluids, antihistamine (H1 + H2), vitamin C; vasopressors if needed
Practical Prescribing Decision Framework
Evidence Summary
- COMBINE trial: Naltrexone reduced % heavy drinking days; acamprosate not superior to placebo in US population; combined not better than naltrexone alone
- European data: Acamprosate strongly effective in post-detox abstinence in European populations
- Project MATCH: MI, CBT, and 12-step similarly effective psychosocially
- Baclofen (additional): GABA-B agonist; emerging evidence particularly for anxious patients; not yet first-line
Naltrexone works at the level of reward (opioid system); acamprosate works at the level of allostasis (glutamate-GABA balance). This mechanistic difference predicts which patient benefits from which drug.
Comparison questions demand a table. Include mechanism, dose, side effects, contraindications, and best-for profile. Always end with the clinical decision framework.
Q3. Discuss opioid substitution therapy (OST) in the management of opioid use disorder. [10 marks]
Answer:
Definition
Opioid substitution therapy (OST) is the provision of a prescribed, pharmacologically active opioid (or partial agonist) in a supervised, controlled clinical setting to reduce illicit opioid use, harm associated with injection, and mortality. It is the evidence-based standard of care for opioid dependence.
Rationale
- Illicit opioid use: uncontrolled dose, contaminants, needle sharing (BBV transmission), crime
- OST stabilizes the neurobiological state, reduces craving, prevents withdrawal
- Harm reduction: HIV, Hepatitis B/C prevention
- Social reintegration: employment, family functioning
- Reduces mortality by 50% or more
WHO Position
OST (methadone and buprenorphine) is on the WHO Essential Medicines List. Declared a "highly cost-effective" intervention. Recommended as first-line for moderate-severe OUD.
Agents Used in OST
1. Methadone
2. Buprenorphine (Subutex) and Buprenorphine/Naloxone (Suboxone)
Methadone vs Buprenorphine Comparison
| Parameter | Methadone | Buprenorphine/Naloxone |
|---|---|---|
| Receptor action | Full agonist | Partial agonist |
| Overdose risk | Higher | Lower (ceiling) |
| Diversion control | Observed dosing required | Naloxone component deters IV misuse |
| Take-home eligibility | After prolonged compliance | Earlier take-home possible |
| Induction flexibility | Day 1 (no withdrawal needed) | Must be in withdrawal |
| QTc risk | Yes | Minimal |
| Cost | Lower | Higher |
| First-line preference | Second-line / severe OUD | First-line |
Induction Protocol (Buprenorphine)
- Patient education: must be in moderate withdrawal (COWS ≥8–12)
- Day 1: 4 mg SL → observe 1–2 hours → if tolerated, 4 mg more → total 8 mg Day 1
- Day 2–3: titrate to 12–16 mg
- Week 2–4: target maintenance dose (16–24 mg usual)
- Supervised dispensing initially; take-home doses after 3 months stable
Adjuncts and Psychosocial Components
OST is NOT medication alone:
- Contingency management (CM): positive reinforcement for drug-free urines
- CBT: relapse prevention, coping skills
- Motivational Enhancement Therapy
- Case management: housing, employment, legal
- Family therapy where appropriate
- Mutual aid: NA, SMART Recovery
Duration
OST is long-term treatment, minimum 12–24 months, often indefinitely. Premature cessation → high relapse rate. Slow supervised taper (if desired): reduce by 2–4 mg/month.
Indian Context
- National Drug Dependence Treatment Centre (NDDTC), PG exams: OST program
- Drug Treatment Centres (DTCs): government-run buprenorphine dispensation
- NDPS Act Section 71: judicial powers to mandate treatment
- Challenges: stigma toward OST ("replacing one drug with another"), limited qualified providers, strict regulations
Outcomes
- ~50% reduction in illicit opioid use
- HIV incidence reduction ~54%
- Overdose mortality reduction: 50–70%
- Retention in treatment at 12 months: methadone ~60–65%; buprenorphine ~55–60%
- Superior retention with higher doses (>60 mg methadone; >16 mg buprenorphine)
"Dose adequate" is the single biggest predictor of OST outcome. Undertreated patients relapse. A patient still using on OST should have dose increased, not the program terminated.
OST questions expect you to know: mechanism, two agents and comparison, induction protocol, psychosocial elements, and Indian context. Examiners want to know you understand OST is not "giving addicts drugs" but evidence-based harm reduction.
Q4. Discuss cannabis and psychosis: is the relationship causal? [10 marks]
Answer:
Introduction
The relationship between cannabis use and psychotic disorders has been debated for decades. Accumulating epidemiological, experimental, and genetic evidence now supports a component cause model: cannabis is neither a necessary nor sufficient cause of psychosis, but it reliably increases risk, the relationship is causal.
Epidemiological Evidence
Bradford Hill Criteria for causality:
Temporality is the critical Bradford Hill criterion for causality. Cannabis use preceding psychosis is well-established in longitudinal cohort studies.
Mechanisms
Dopaminergic pathway:
- THC → CB1 stimulation in VTA → increased DA synthesis and release in striatum
- Striatal hyperdopaminergia = the final common pathway of psychosis
- PET studies: THC increases striatal DA release in healthy volunteers
Prefrontal cortex:
- CB1 receptors in PFC → THC impairs PFC function → reduced inhibitory control over subcortical DA
- Mirrors disinhibition hypothesis of schizophrenia
Glutamate-DA interaction:
- THC impairs NMDA receptor function → similar to ketamine model of psychosis
THC:CBD ratio:
- CBD is a CB1 negative allosteric modulator
- High-CBD products associated with lower psychotomimetic risk
- Modern skunk (high THC/low CBD) → highest risk
Cannabis-Induced Psychosis vs Primary Psychosis
| Feature | Cannabis-Induced Psychosis | Schizophrenia |
|---|---|---|
| Onset | Within 1 month of use | Gradual or acute without substance trigger |
| Duration | Typically <1 month with abstinence | Chronic, persists without treatment |
| Content | Paranoia, perceptual changes | Positive + negative + disorganized symptoms |
| Negative symptoms | Mild, transient | Prominent, persistent |
| Prognosis | Good with abstinence | Variable; usually chronic |
| Conversion rate | 25–50% to schizophrenia-spectrum over 5 years (Di Forti 2019) |
Moderating Factors
- Genetic vulnerability: COMT Val158Met polymorphism, Val/Val carriers more vulnerable to cannabis-induced psychosis
- Age of onset: Adolescent use carries greater risk (neurodevelopmental sensitivity)
- Frequency and duration: Daily/near-daily use, long duration
- Product potency: High-THC products (>10% THC)
- Pre-existing subclinical psychosis: Cannabis precipitates in those already on the psychosis continuum
Clinical Implications
- Substance use history: mandatory in any psychosis assessment
- Drug screen: THC in urine, blood
- Management:
- Psychoeducation: evidence-based information about risk
- Motivational interviewing for cessation
- Antipsychotics for acute cannabis-induced psychosis
- Monitor: if psychosis persists >1 month after abstinence → reassess diagnosis
In a young patient with first-episode psychosis who uses cannabis: abstinence is both therapeutic AND diagnostic. If psychosis clears → cannabis-induced. If persists → primary psychosis. This is clinically elegant and evidence-based.
"Is the relationship causal?", use Bradford Hill criteria. Examiners appreciate structured epidemiological thinking. Four key points: dose-response, temporality, experiment (IV THC studies), mechanisms.
Q5. Describe motivational interviewing in substance use disorders. [10 marks]
Answer:
Definition
Motivational Interviewing (MI) is an evidence-based, person-centered counseling approach developed by William Miller and Stephen Rollnick (1991). It is defined as "a collaborative, goal-oriented style of communication with particular attention to the language of change, designed to strengthen personal motivation and commitment to a specific goal by eliciting and exploring the person's own reasons for change within an atmosphere of acceptance and compassion."
Theoretical Foundation
MI emerged from the Transtheoretical Model (Prochaska & DiClemente) and Carl Rogers' person-centered therapy. The central insight: people change when they articulate their own reasons for change, external pressure is counterproductive.
Ambivalence: MI views ambivalence as a normal state, not resistance or denial. It is the simultaneous desire to change and not to change. MI's role is to resolve ambivalence in the direction of change.
MI Spirit (PACE)
The spirit is NOT about techniques, it's the underlying attitude. MI without spirit is just interrogation with open questions.
Four Processes
Core Skills: OARS
| Skill | Purpose | Example |
|---|---|---|
| Open questions | Elicit reflection, not yes/no | "What's been going on with your drinking lately?" |
| Affirmations | Recognize strengths and effort | "You've really thought hard about this." |
| Reflective listening | Demonstrate understanding; deepen exploration | "So it sounds like part of you knows it's affecting your family..." |
| Summaries | Collect change talk; link discrepancies; transition | "Let me pull together what you've shared..." |
Change Talk: DARN-CAT
Change talk = client speech that favors change.
Preparatory change talk (DARN):
- Desire: "I want to cut back"
- Ability: "I could stop if I wanted to"
- Reason: "My liver results scared me"
- Need: "I need to do something"
Mobilizing change talk (CAT):
- Commitment: "I will try to reduce"
- Activation: "I'm ready to make a change"
- Taking steps: "I've already thrown out the bottles"
Mobilizing change talk (especially commitment) is the strongest predictor of actual behavior change. Strengthen CAT talk, not just DARN talk.
Sustain talk: Client arguing for status quo, reflect, don't argue. "Rolling with resistance" = working with not against.
Evoking Change Talk: Strategies
- Decisional balance: "What are the good things about your drinking? What are the less good things?"
- Importance and confidence rulers: "On a scale of 0–10, how important is it to you to change? Why not a lower number?"
- Looking forward/back: "How was your life before alcohol became a problem? How do you see it in 5 years if nothing changes?"
- Exploring values: "What matters most to you? How does your drinking fit with that?"
Evidence Base
Application in Different Settings
- Brief intervention (5–15 min): FRAMES model; AUDIT/CAGE → feedback → brief MI
- Motivational Enhancement Therapy (MET): 2–4 structured sessions; adapted from MI
- Dual diagnosis: Adapted MI, longer engagement phase; address mental illness first; no confrontation of denial
MI is most effective in precontemplation and contemplation stages. It is NOT a treatment for dependence itself, it is an engagement tool to move people toward accepting treatment.
MI questions reward depth on the spirit, the 4 processes, and OARS. Always add a brief section on evidence base and limitations. 15 minutes = 10 marks: plan introduction, spirit, 4 processes, OARS, change talk, evidence, conclusion.
Q6. Discuss the AUDIT and CAGE screening tools for alcohol use disorders. [10 marks]
Answer:
Introduction
Screening for harmful and hazardous alcohol use is a critical component of clinical practice. Two tools dominate: AUDIT (Alcohol Use Disorders Identification Test), developed by the WHO for cross-cultural application, and CAGE, a 4-item clinical screening instrument. Both detect problematic drinking but have different characteristics, validity profiles, and appropriate clinical settings.
AUDIT (Alcohol Use Disorders Identification Test)
Development: WHO collaborative project (Babor et al., 1989). Validated in multiple countries including India.
Structure, 10 items across 3 domains:
| Domain | Items | What it captures |
|---|---|---|
| Hazardous use | Q1–3 | Frequency of drinking; typical quantity; frequency of heavy episodic drinking |
| Dependence features | Q4–6 | Impaired control; salience; morning drinking |
| Harmful use | Q7–10 | Guilt; blackouts; alcohol-related injuries; concern from others |
Scoring:
- Each item: 0–4 (except Q9 and Q10: 0, 2, or 4 only)
- Total: 0–40
| Score | Interpretation | Intervention |
|---|---|---|
| 0–7 | Low-risk | Education |
| 8–15 | Hazardous/harmful use | Simple advice |
| 16–19 | Probable dependence | Brief counseling + referral |
| ≥20 | Dependence likely | Specialist referral |
Threshold for positive screen: ≥8 in most settings; some studies use ≥7 for greater sensitivity.
AUDIT-C (3-item brief version):
- Items 1–3 only (frequency, quantity, frequency of binge)
- Threshold: ≥4 (men), ≥3 (women)
- Sensitivity 73–91% for hazardous use
- Suitable for very brief screening (30 seconds)
Psychometric properties:
- Sensitivity ~57–97%, Specificity ~78–96% (varies by threshold and population)
- Validated in Indian clinical settings (Ebrahim et al.)
CAGE Questionnaire
Development: Ewing (1984). 4-item mnemonic tool.
Questions:
Scoring: Each "yes" = 1 point (0–4)
Psychometric properties:
- Sensitivity: ~74–85%; Specificity: ~79–91% for alcohol dependence
- Best validated for detecting dependence (not hazardous use)
AUDIT vs CAGE: Comparison
| Feature | AUDIT | CAGE |
|---|---|---|
| Items | 10 | 4 |
| Time | 2–3 minutes | <1 minute |
| Quantitative data? | Yes (frequency, amount) | No |
| Detects hazardous use? | Yes | Poor |
| Detects dependence? | Yes | Yes |
| Cultural validation | WHO; multi-country | Primarily Western |
| Use in primary care | Ideal | Quick screen |
| Use in ED | AUDIT-C preferred | CAGE useful |
| Follow-up action | Score guides intervention level | Simple positive/negative |
| Lifetime vs current | Both | Lifetime-oriented |
| Limitation | Patient may under-report quantities | Relies on introspection; insensitive to early use |
Other Screening Tools
| Tool | Items | Setting |
|---|---|---|
| MAST | 25 (Brief MAST: 13) | Research; lifetime alcohol problems |
| FAST | 4 items | Emergency department |
| RAPS-4 | 4 items | Lifetime; similar to CAGE |
| DAST | 10 or 28 items | Non-alcohol substances |
In Indian primary care and de-addiction settings, AUDIT-C (3 items) is the most practical screening tool. CAGE score ≥2 should immediately trigger a structured clinical assessment and CIWA-Ar if intoxication/withdrawal suspected.
AUDIT/CAGE questions want you to write out the actual questions (especially CAGE, spell out the acronym). For AUDIT, describe the 3 domains and scoring thresholds. Always compare the two in a table.
Q7. Discuss Wernicke-Korsakoff syndrome in the context of alcohol use disorder. [10 marks]
Answer:
Introduction
Wernicke-Korsakoff syndrome (WKS) is a neuropsychiatric complication of thiamine (Vitamin B1) deficiency, most commonly seen in the context of alcohol use disorder. It represents a clinical continuum: Wernicke's encephalopathy (acute, reversible if treated promptly) → Korsakoff's syndrome (chronic amnestic, largely irreversible).
Thiamine Deficiency in AUD: Pathophysiology
Thiamine function: Cofactor for pyruvate dehydrogenase, alpha-ketoglutarate dehydrogenase, transketolase → ATP production in Krebs cycle → CNS most vulnerable to energy failure.
Wernicke's Encephalopathy (Acute)
Classic triad:
- Ophthalmoplegia, lateral rectus palsy (most common), nystagmus, conjugate gaze palsy
- Ataxia, cerebellar; wide-based gait; lower limb > upper limb
- Confusion / encephalopathy, global confusion, disorientation
The classic triad is present in only 10–16% of autopsy-confirmed cases. Do NOT wait for the full triad. Any alcohol-dependent patient with neurological or cognitive change must receive immediate thiamine.
Pathology:
- Petechial hemorrhages, edema, astrocyte proliferation
- Location: mammillary bodies (most specific), dorsomedial thalamus, periaqueductal grey, cerebellar vermis
MRI findings:
- Hyperintensity on FLAIR/T2W in mammillary bodies, thalamus, periaqueductal grey
- Mammillary body atrophy (classic)
Treatment (emergency):
| Protocol | Dose | Route | Timing |
|---|---|---|---|
| Mild clinical suspicion | 100 mg | IV/IM | Immediately; before glucose |
| High-risk / confirmed | 200–500 mg | IV | Three times daily for 2–3 days |
| Continue oral | 100 mg | Oral | For 2 weeks minimum |
Critical rule: Thiamine BEFORE IV glucose in ANY alcohol-dependent patient, glucose infusion without thiamine can precipitate acute Wernicke's by depleting remaining thiamine reserves.
Korsakoff's Syndrome (Chronic)
Pathological substrate: Dorsomedial thalamic nucleus atrophy; mammillary body atrophy; frontal lobe involvement.
Clinical features:
Test Korsakoff's with: registration (intact), immediate recall (intact), delayed recall (severely impaired). This distinguishes it from dementia where registration itself may be impaired.
Prognosis:
- ~25% significant improvement with abstinence + thiamine
- ~50% partial improvement
- ~25% minimal improvement
- Time to recovery: months to years
- Predictors of poor outcome: long duration before treatment, severe malnutrition, continued alcohol use
Korsakoff's vs Other Dementias:
| Feature | Korsakoff's | Alzheimer's |
|---|---|---|
| Memory | Anterograde >> retrograde | Both; registration also impaired |
| Confabulation | Prominent | Uncommon |
| Other cognition | Relatively preserved | Widespread decline |
| Insight | Absent | Preserved early; lost late |
| Progression | Stable (with abstinence) | Progressive |
| Cause | Thiamine deficiency | Beta-amyloid/tau |
WKS questions reward: (1) mechanism (thiamine function), (2) the 10–16% full triad fact, (3) acute management with specific dosing, (4) the "thiamine before glucose" rule, (5) chronic Korsakoff clinical features especially confabulation, (6) prognosis. These are the examiner's checklist.
Q8. Describe the clinical features and management of delirium tremens. [10 marks]
Answer:
Definition
Delirium tremens (DTs) is the most severe manifestation of alcohol withdrawal syndrome, characterized by global confusion (delirium), severe autonomic hyperactivity, and perceptual disturbances. It represents a medical emergency with mortality of 15–35% if untreated, reduced to <1% with appropriate management.
Epidemiology and Risk Factors
Occurs in approximately 3–5% of hospitalized alcohol withdrawal patients.
Risk factors for DTs:
Pathophysiology
Chronic alcohol ingestion:
- Downregulates GABA-A receptors (tolerance to CNS depression)
- Upregulates NMDA glutamate receptors
Alcohol withdrawal:
- Reduced GABAergic tone → excitatory dominance
- Unmasked NMDA hyperactivity → neuronal hyperexcitability
- Noradrenergic hyperactivity (locus coeruleus) → autonomic storm
- Dopaminergic excess → hallucinations
Clinical Features
Onset: 48–72 hours after last drink (can extend to 5–7 days)
Duration: Typically 3–5 days if treated; can persist
Lilliputian hallucinations (seeing miniature people/animals) are pathognomonic of DTs. Visual hallucinations in DTs are typically complex, vivid, and terrifying, insects, animals, monsters.
DTs vs Alcoholic Hallucinosis Comparison
| Feature | DTs | Alcoholic Hallucinosis |
|---|---|---|
| Onset (hours post last drink) | 48–72 | 12–24 |
| Consciousness | Clouded (delirium) | Clear |
| Hallucinations | Visual > auditory | Auditory > visual |
| Autonomic features | Severe | Mild or absent |
| Orientation | Impaired | Preserved |
| Prognosis | Life-threatening | Self-limiting usually |
Management
Step 1, Immediate stabilization
- ICU or HDU admission
- IV access × 2
- Continuous monitoring: HR, BP, temperature, oxygen saturation, glucose
- Airway management if required
Step 2, Thiamine first
- 200–500 mg IV thiamine (before any glucose)
- Continue 100 mg TID for 2–3 days
Step 3, Benzodiazepines (primary pharmacotherapy)
Step 4, Adjuncts
| Drug | Role | Dose |
|---|---|---|
| Haloperidol | Psychotic symptoms only (adjunct, no anticonvulsant) | 5 mg IM/IV |
| Clonidine | Autonomic symptoms adjunct | 0.1–0.3 mg oral |
| Propranolol | HR/BP (not anticonvulsant) | 40–80 mg |
| Magnesium sulphate | Correct hypomagnesemia; may reduce seizure threshold | 2–4 g IV |
Step 5, Treat precipitants
- Blood cultures and broad-spectrum antibiotics if infection suspected
- CT head if focal neurology or head injury
- Correct hyponatremia, hypoglycemia, hypophosphatemia
Step 6, Monitoring and endpoints
- CIWA-Ar every 4–8 hours; target <8 before stepping down
- Watch for: aspiration pneumonia, cardiovascular events, hyperthermia complications
- Transition to oral regimen when stable
Prognosis
With treatment: mortality <1%. Predictors of poor outcome: concurrent liver failure, severe hyperthermia (>40°C), cardiovascular disease, delayed presentation, pneumonia.
The most common cause of death in DTs is cardiovascular, arrhythmia, not seizure. Aggressive autonomic management is as important as anticonvulsant treatment.
DTs management answers: use Step 1–6 structure. Emphasize the severity (life-threatening), thiamine before glucose, BZD as cornerstone, haloperidol as adjunct only (critical distinction), and monitoring. Common mistake: writing haloperidol as primary treatment.
Q9. Describe the Transtheoretical Model of behaviour change and its application in substance use disorders. [10 marks]
Answer:
Introduction
The Transtheoretical Model (TTM), developed by Prochaska and DiClemente (1983), is a model of intentional behavior change that integrates processes and principles of change from across major theories of psychotherapy. It was developed empirically through studying smokers who quit on their own vs with help. Its core concept: behavior change is a process (not an event) moving through predictable stages.
Stages of Change
| Stage | Definition | Client self-statement | Intervention |
|---|---|---|---|
| Precontemplation | No intention to change in next 6 months; unaware or demoralized | "I don't have a problem" | Raise awareness; provide information; elicit concern |
| Contemplation | Aware of problem; ambivalent; weighing pros/cons; no definite plan | "I'm thinking about it, but..." | Explore ambivalence; decisional balance; MI |
| Preparation | Intends to take action within 30 days; has small behavioral steps | "I'm planning to cut down next week" | Help develop action plan; connect to resources |
| Action | Overt behavior change, 0–6 months | "I've been sober 3 weeks" | Support; reinforce; skill-building; relapse prevention |
| Maintenance | Sustaining change >6 months; consolidating gains | "I've been sober 8 months" | Relapse prevention; lifestyle restructuring |
| Relapse | Return to previous behavior | "I slipped last weekend" | Non-judgmental review; learn from relapse; return to cycle |
| Termination | No temptation; complete confidence (rare in addiction) | "I don't even think about it anymore" | Consolidation |
Most treatment programs focus on Action, but most patients present in Precontemplation or Contemplation. Mismatch between intervention and stage is a primary cause of treatment failure.
Processes of Change (10)
Cognitive-experiential processes (earlier stages):
- Consciousness raising, increasing awareness
- Dramatic relief, emotional arousal; "it could happen to me"
- Environmental re-evaluation, impact on others
- Self-re-evaluation, how substance use conflicts with values
- Social liberation, awareness of social norms supporting change
Behavioral processes (later stages):
- Self-liberation, commitment; belief in ability to change
- Helping relationships, social support
- Reinforcement management, rewards for behavior change
- Counterconditioning, alternatives to substance use
- Stimulus control, avoiding/restructuring cues
Decisional Balance
Central to movement through early stages: weighing pros and cons of both current behavior and proposed change.
Relapse in the TTM
Relapse is not a failure, it is part of the spiral model of change. Studies show:
- Average 3–4 serious quit attempts before sustained cessation (nicotine)
- Relapse is a learning opportunity, each relapse narrows the cycle
- Clinicians should respond non-judgmentally: "What can we learn from this?"
Spiral model: Progress through stages is rarely linear, it is a spiral, with relapses returning to earlier stages but (ideally) at a higher level than before.
Application: Stage-Matched Interventions
| Stage | MI Application | Clinical Action |
|---|---|---|
| Precontemplation | Raise awareness without confrontation | AUDIT/CAGE screening; personalized feedback |
| Contemplation | Explore ambivalence; decisional balance | 2–4 session MET |
| Preparation | Collaborative goal setting | Action planning; medication initiation |
| Action | Skills training; relapse prevention | CBT; pharmacotherapy; OST |
| Maintenance | Ongoing support; relapse prevention | Continuing care; mutual aid; booster sessions |
Critique of TTM
- Stage boundaries are arbitrary (particularly Contemplation/Preparation)
- Stage classification not reliably predictive of treatment response in all studies
- Discrete stage model may not capture continuous motivational fluctuations
- However: remains the most clinically useful heuristic for matching intervention to readiness
Ask every patient in substance use assessment: "On a scale of 0–10, how important is it to you to change your drinking/drug use?" + "How confident are you that you could change if you decided to?" This maps directly to TTM stage and guides intervention.
TTM answers require the full table of stages with definitions and interventions. Add processes of change (cognitive vs behavioral), decisional balance, and clinical application. Bonus: mention the spiral model, it shows you understand relapse.
Q10. Discuss brief interventions in alcohol use disorders. [10 marks]
Answer:
Definition
A brief intervention (BI) is a structured but time-limited clinical encounter aimed at individuals whose drinking is risky or harmful (not necessarily dependent), designed to reduce alcohol consumption through motivational feedback and advice. Duration: 5–30 minutes; typically 1–3 sessions.
Rationale
- Population impact: 75–90% of alcohol-related harm occurs in hazardous/harmful users (not dependent)
- These patients are rarely in specialist services, they encounter GPs, ED, primary care
- BI is delivered at the point of identification: opportunistic
- Systematic reviews show: BI reduces drinking by ~4–5 standard drinks/week at 12 months
- Number needed to treat (NNT): ~8 for reduction in hazardous drinking
FRAMES Model
The most cited framework for effective brief interventions:
| Component | Meaning | Application |
|---|---|---|
| Feedback | Personalized feedback on risk | "Your AUDIT score is 12, that's in the hazardous range" |
| Responsibility | Change is the client's choice | "Ultimately, it's up to you" |
| Advice | Clear, direct recommendation | "I recommend you cut your drinking to within safe limits" |
| Menu | Range of options | "You could cut down, take alcohol-free days, change to lower-strength drinks..." |
| Empathy | Warm, empathic style | Non-judgmental, reflective listening |
| Self-efficacy | Belief in ability to change | "Many people find they can make this change, you've shown you can do it in the past" |
Screening-Brief Intervention-Referral to Treatment (SBIRT)
The three-tier model:
| Level | Population | Intervention |
|---|---|---|
| Screening | All patients | AUDIT or AUDIT-C |
| Brief Intervention | Hazardous/harmful use (AUDIT 8–19) | 5–15 minutes BI; FRAMES-based |
| Referral to Treatment | Probable dependence (AUDIT ≥20) | Referral to specialist |
Evidence Base
Minimal Intervention (5 R's for Unmotivated Patients)
For precontemplators who are not ready to change:
Setting and Delivery
- Primary care: Most evidence; opportunistic; AUDIT screen → BI if score 8–19
- Emergency department: "teachable moment" after alcohol-related injury; modified BI
- Antenatal care: Any alcohol use in pregnancy; non-judgmental BI
- Occupational health: Return-to-work context
- India context: PHC, Jan Aushadhi, de-addiction camps; ANMs and health workers can deliver with training
Limitations
- Efficacy declines at higher AUDIT scores (dependent patients need specialist care)
- In primary care: time pressure; competing priorities; clinician discomfort with alcohol topic
- BI alone insufficient for dependence, gateway to referral, not treatment
Brief interventions are one of the most cost-effective public health tools in psychiatry. The World Bank estimates they return $5–8 for every $1 spent in productivity gains and reduced healthcare burden.
BI questions: lead with definition, FRAMES (memorize the acronym), SBIRT model, Cochrane evidence, and finish with limitations. Don't confuse BI with MI, BI is structured, advice-giving, usually 1–3 sessions; MI is more collaborative, open-ended, process-focused.
Q11. Discuss dual diagnosis: the co-occurrence of substance use and psychiatric disorders. [10 marks]
Answer:
Definition
Dual diagnosis (also: comorbidity, co-occurring disorders) refers to the simultaneous presence of a substance use disorder and one or more psychiatric diagnoses. The term reflects the clinical reality that these conditions frequently co-occur, interact, and complicate each other's management.
Epidemiology
Major studies:
Common pairings:
Pathways
| Pathway | Description | Example |
|---|---|---|
| Primary psychiatric → secondary SUD | Mental illness precipitates substance use (self-medication) | Depression → alcohol to cope → AUD |
| Primary SUD → secondary psychiatric | Substance causes psychiatric symptoms | Heavy cannabis use → psychosis |
| Bidirectional | Each exacerbates the other | PTSD + alcohol, each worsens the other |
| Common factor | Shared vulnerability | ADHD + stimulant misuse: shared dopaminergic deficit |
| Artifact | Apparent comorbidity due to cross-cutting symptoms | Alcohol withdrawal → anxiety (mimics GAD) |
Diagnostic Challenges
- Substance intoxication/withdrawal mimics psychiatric symptoms
- Need 4-week abstinence period ideally to clarify primary vs substance-induced
- In practice: clinical urgency may not allow this
- Temporal relationship crucial: which came first?
- ICD-11/DSM-5: "substance-induced disorder" = causal; "comorbid disorder" = independent
Treatment Approaches
| Model | Description | Evidence |
|---|---|---|
| Sequential | Treat one, then the other | Historically common; poor outcomes |
| Parallel | Separate teams, same time | Better; coordination issues |
| Integrated | Same team, same time, same conceptual model | Best evidence; standard of care recommendation |
Principles of integrated dual diagnosis treatment:
- Stage-matched approach: Engagement → persuasion → active treatment → relapse prevention
- Low threshold for engagement: Accept harm reduction goals initially
- Assertive community treatment for severe mental illness + SUD
- Motivational Interviewing adapted for low motivation
- Residential treatment when severe; abstinence-based milieu
- Medication principles:
- Treat both disorders pharmacologically
- Prefer medications with lower abuse potential
- SSRIs: first-line for depression/anxiety in AUD
- Naltrexone: appropriate for AUD even with depression
- Antipsychotics: clozapine may reduce substance use in schizophrenia
PTSD and SUD
Particularly complex and common:
- PTSD → alcohol/opioids/cannabis as "chemical coping" → SUD
- Both maintain each other: substance withdrawal → PTSD re-experiencing worsens
- Evidence-based treatment: integrated exposure-based CBT (Seeking Safety, COPE)
In schizophrenia + SUD (especially cannabis), clozapine has the best evidence for reducing substance use, mechanism possibly related to its broader receptor profile including 5-HT2A antagonism and CB1 indirect effects.
Dual diagnosis: epidemiology numbers, 4 pathways, diagnostic challenge (abstinence period), 3 treatment models (sequential/parallel/integrated), medication principles. Finish with a clinical example.
Q12. Describe neonatal opioid withdrawal syndrome (NOWS). [10 marks]
Answer:
Introduction
Neonatal Opioid Withdrawal Syndrome (NOWS), previously termed Neonatal Abstinence Syndrome (NAS), is a condition in newborns exposed to opioids in utero, manifesting as a constellation of neurological, gastrointestinal, and autonomic signs following delivery. It is a direct consequence of opioid dependence during pregnancy and represents a significant clinical challenge in perinatal medicine.
Prevalence
- USA: dramatic increase; 14 per 1,000 hospital births (2016) vs 1.5 per 1,000 (2000)
- Parallels opioid epidemic
- India: less systematic data; rising with pharmaceutical opioid misuse
Pathophysiology
Opioids cross the placenta freely. Chronic fetal opioid exposure → neuroadaptation (MOR downregulation). At birth, when opioid supply ceases → withdrawal state.
Risk Factors for Severe NOWS
- Tobacco co-exposure (synergistic with opioids)
- SSRI exposure (increases length of stay)
- Long-acting opioids (methadone → prolonged NOWS vs heroin)
- Polypharmacy
- Preterm birth
- Male sex
Clinical Features and Assessment: Finnegan Neonatal Abstinence Scoring System
Onset:
- Short-acting opioids (heroin): 24–72 hours
- Methadone: 48 hours to 5–7 days
- Buprenorphine: 12–48 hours (shorter, milder)
Finnegan categories:
Scoring: Each sign scored 1–3 depending on severity.
- Score ≥8 on two consecutive assessments 4 hours apart → pharmacological treatment indicated
Management
Non-pharmacological (first-line for mild NOWS):
- Skin-to-skin care (kangaroo care)
- Breastfeeding (if mother on OST, not HIV+, no other drug use): decreases NOWS severity and length of stay
- Quiet, low-stimulation environment
- Swaddling, rocking
- Small, frequent feeds (caloric needs increased)
Pharmacological (Finnegan score ≥8 × 2 consecutive):
| Drug | Route | Details |
|---|---|---|
| Oral morphine | PO | 0.03–0.1 mg/kg/dose Q3–4H; titrate to Finnegan <8; first-line in USA |
| Methadone | PO | 0.05–0.1 mg/kg Q12H; longer half-life; less frequent dosing |
| Buprenorphine (sublingual) | SL | Emerging evidence; shorter treatment courses |
| Phenobarbital | IV/PO | Adjunct; for seizures or inadequate response to opioids |
| Clonidine | PO/IV | Alpha-2 agonist; reduces autonomic symptoms; adjunct |
Weaning: Once stable (Finnegan <8), reduce morphine by 10–20% every 24–48 hours.
Prognosis and Long-Term Outcomes
- NOWS itself: usually resolves within weeks; longer with long-acting opioids
- Long-term: cognitive, behavioral, and developmental concerns
- ADHD, learning difficulties in opioid-exposed children
- Confounded by: socioeconomic factors, maternal mental illness, adverse childhood experiences
Maternal OST and NOWS
- NOWS is expected and manageable in methadone/buprenorphine-exposed neonates
- NOWS from OST is preferred over risks of untreated maternal addiction (preterm birth, fetal growth restriction, overdose)
- Buprenorphine-exposed neonates: shorter, milder NOWS than methadone-exposed (clinical advantage)
- Mothers on OST should NOT be encouraged to taper or stop during pregnancy
Telling a pregnant woman on buprenorphine to stop her medication to protect the baby is wrong and dangerous. Undertreated maternal opioid dependence is far more harmful to the fetus than NOWS.
NOWS questions: Finnegan scale (categories), pharmacological treatment (oral morphine first-line), buprenorphine vs methadone NOWS comparison, non-pharmacological care, and the maternal OST point. These are the 5 examiner checkpoints.
Q13. Discuss the NDPS Act provisions relevant to clinical practice. [10 marks]
Answer:
Introduction
The Narcotic Drugs and Psychotropic Substances (NDPS) Act, 1985 is India's primary legislation governing narcotic and psychotropic substances. For the psychiatrist, knowledge of the Act is clinically relevant: it shapes how we prescribe controlled substances, advise patients in legal trouble, advocate for treatment over punishment, and access essential medicines.
Background and Purpose
- Enacted to fulfil India's obligations under UN Conventions on Narcotic Drugs (1961), Psychotropic Substances (1971), and Illicit Traffic (1988)
- Replaced Opium Act 1857, Dangerous Drugs Act 1930, Prevention of Illicit Traffic in Narcotic Drugs Act
- Regulates manufacture, sale, purchase, transport, storage, and use of narcotic drugs and psychotropic substances
Key Definitions
Schedules Relevant to Psychiatry
Quantity Thresholds
| Substance | Small Quantity | Large Quantity |
|---|---|---|
| Heroin | 5 grams | 250 grams |
| Cocaine | 2 grams | 100 grams |
| Morphine | 5 grams | 250 grams |
| Cannabis (charas) | 100 grams | 1 kg |
| Cannabis (ganja) | 1 kg | 20 kg |
| Opium | 25 grams | 2.5 kg |
| Methamphetamine | 2 grams | 50 grams |
Penalties:
- Small quantity: rigorous imprisonment up to 1 year + fine, or both
- Intermediate quantity: 1–10 years + fine
- Large quantity: 10–20 years + fine; repeat offence up to 30 years / death in exceptional cases
Provisions Relevant to Treatment
Section 71, Power to establish centres:
"The Government may, in consultation with local authority, establish centres for identification, treatment, education, and rehabilitation of addicts."
This section authorizes the government to refer drug users to treatment instead of the criminal justice pathway. Courts have wide discretion.
Section 76, Probation:
Court may release a convicted person on probation with condition of undergoing treatment for drug dependence.
Section 64-A (Amendment 2001), Immunity from prosecution:
A person who voluntarily seeks treatment for drug dependence is immune from prosecution for offences relating to personal use (small quantity). This is the most important provision for psychiatrists: encourage patients to seek treatment; they are protected.
Section 64-A is the key provision protecting patients: voluntary treatment-seeking = immunity from prosecution. This removes a significant barrier to help-seeking.
The 2014 Amendment: Essential Medicines Access
Major reform: removed barriers to prescribing opioids for pain and OST by:
- Simplifying procurement procedures for state governments
- Allowing hospitals to stock morphine without repeated licensing
- Enabling palliative care access
- Supporting OST programs
Challenges in Clinical Practice
Psychiatrist's Role
- Maintain accurate medical documentation (substance use as illness, not moral failure)
- Advocate for treatment diversion via Section 64-A / Section 71
- Support OST programs, prescribing within legal framework
- Report suspected child abuse when NOWS/parental addiction presents
- Participate in medico-legal process: provide clinical reports on addiction as disease
NDPS Act questions reward: Section numbers (64-A, 71, 76), quantity thresholds for key drugs, the 2014 Essential Medicines amendment, and the clinical advocacy angle. Do NOT simply list penalties, examiners want clinical and public health relevance.
Mnemonics & Memory Tricks
Sources: Kaplan & Sadock, Stahl's, Oxford Textbook of Psychiatry, WHO Guidelines
Mnemonics are retrieval hooks, they only work if you've attached meaning to each letter. Read each mnemonic alongside its full expansion. Then test yourself by covering the expansion and reconstructing it cold. Do this 3 times over 3 days.
1. Delirium Tremens Features
- D, Diaphoresis (profuse sweating) - R, Restlessness / agitation - E, Encephalopathy (confusion, disorientation) - A, Autonomic instability (tachycardia, hypertension, hyperthermia) - D, Delusions / hallucinations (visual > auditory; Lilliputian) - V, Vivid tremor (coarse, persistent)
Lilliputian hallucinations (tiny people/animals) = pathognomonic of DTs. Visual hallucinations in DTs are complex and terrifying, microanimals, insects, attacking figures.
2. CAGE Questionnaire
MNEMONIC: "CAGE", self-explanatory but expand it fully - C, Have you ever felt you should Cut down on your drinking? - A, Have people Annoyed you by criticizing your drinking? - G, Have you ever felt bad or Guilty about your drinking? - E, Have you ever had a drink first thing in the morning (Eye-opener) to steady your nerves or get rid of a hangover?
Score ≥2 is clinically significant. Sensitivity ~74–85%, specificity ~79–91% for alcohol dependence. Best for detecting established dependence; poor for hazardous use. Use AUDIT for broader screening.
3. Wernicke's Encephalopathy Triad
MNEMONIC: "AOC", "Altered O Clock" - A, Ataxia (cerebellar; gait disturbance) - O, Ophthalmoplegia (lateral rectus palsy most common; nystagmus) - C, Confusion / encephalopathy (global; clouded sensorium)
Only 10–16% of autopsy-confirmed cases show the full triad. Never wait for all three. Thiamine first, before IV glucose, in ANY alcohol-dependent patient with neurological change.
Alternative: "WOW", Wernicke's = Ophthalmoplegia + Wobbling (ataxia) + Woozy (confusion)
4. Alcohol Withdrawal Timeline: "6-12-24-48-72"
- 6 hours, Symptoms start (anxiety, tremor, tachycardia, diaphoresis) - 12 hours, Alcoholic hallucinosis (auditory hallucinations, clear sensorium) - 24 hours, Seizures peak (GTCS, self-limited, ~3–5%) - 48 hours, Delirium Tremens onset - 72 hours, DTs peak / most dangerous
"6-12-24-48-72" is the most important timeline in addiction psychiatry. In a GTCS patient with alcohol use, immediately think: was their last drink ~24 hours ago?
5. Opioid Withdrawal Signs
- D, Diarrhoea - A, Anxiety / agitation - M, Mydriasis (dilated pupils) - P, Piloerection ("gooseflesh") - S, Sweating - C, Cramps (abdominal; muscle aches) - O, Only dysphoric, not life-threatening (in healthy adults) - I, Insomnia - L, Lacrimation / rhinorrhoea (runny nose, watery eyes)
Opioid withdrawal = miosis in intoxication, MYDRIASIS in withdrawal. This reversal is a high-yield exam fact. COWS (Clinical Opiate Withdrawal Scale) scores mydriasis as a key item.
6. Stages of Change: Prochaska & DiClemente
- Pre-contemplation - Contemplation - Preparation - Action - Maintenance - Relapse (part of the cycle)
Alternative, "PPCAMR": "People Can Prepare And Maintain Recovery"
Most patients present for treatment in Precontemplation or Contemplation, NOT action. Matching the intervention to the stage is the core clinical skill. Confronting a precontemplator about their "denial" is explicitly contraindicated in MI.
7. FRAMES: Brief Intervention Components
MNEMONIC: "FRAMES", the frame that holds brief interventions together - F, Feedback (personalised, based on assessment results) - R, Responsibility (emphasise personal responsibility for change) - A, Advice (clear, direct, non-judgmental) - M, Menu (range of options offered) - E, Empathy (warm, reflective counselling style) - S, Self-efficacy (build confidence that change is possible)
FRAMES is not a step-by-step protocol, it is a description of the active ingredients of effective brief interventions. Not all components need to appear in fixed sequence.
8. Disulfiram Reaction Features
- F, Flushing (facial, neck) - L, Light-headedness / dizziness - U, Urge to vomit / nausea - S, Sweating - H, Headache (pulsating, throbbing) - P, Palpitations / tachycardia - H, Hypotension (severe cases → cardiovascular collapse)
Disulfiram-ethanol reaction (DER) is caused by acetaldehyde accumulation (ALDH inhibition). Can also occur with metronidazole, isoniazid, cephalosporins. Severity correlates with acetaldehyde level. Treatment: supportive, IV fluids, H1 + H2 antihistamines, vitamin C.
9. Fetal Alcohol Spectrum: Facial Features
- Philtrum, smooth (no groove) - Palpebral fissures, short - Pout (upper lip), thin vermilion border
Alternative, "STS": - Smooth philtrum - Thin upper lip - Short palpebral fissures
FAS is the most common preventable cause of intellectual disability. No safe level of alcohol in pregnancy. Full FAS = dysmorphic facies + growth restriction + CNS abnormalities.
10. Opioid Receptors: "MKD"
(Mu, Kappa, Delta) - Mu (μ), Morphine's primary receptor; euphoria, analgesia, respiratory depression, dependence - Kappa (κ), Kappa = "K"raziness: dysphoria, sedation, analgesia (no dependence) - Delta (δ), Delta = mood modulation, analgesia; minor role in dependence
All opioid receptors are Gi/o-coupled GPCRs → ↓cAMP, ↑K+ conductance, ↓Ca2+ conductance → neuronal inhibition. Respiratory depression is MOR-mediated → naloxone reverses by MOR antagonism.
11. Naltrexone: Key Clinical Facts
- Naltrexone - Opioid (mu) antagonist, competitive - Must ensure opioid-free ≥7–10 days before starting (precipitates withdrawal otherwise) - Oral (50 mg/day) or monthly injection (380 mg IM = Vivitrol) - Reduces craving and alcohol euphoria (for AUD too) - Excluded if: active opioid use, hepatic failure
12. Acamprosate: Quick Memory
(acamprosate = GABA-A enhancer + NMDA antagonist) - A, Acamprosate - C, Controls protracted withdrawal symptoms - A, After detox: start post-detox (not during active drinking) - M, Mechanism: GABA-A agonism + NMDA antagonism - P, Post-detox abstinence is its best indication - "CAMP" sounds like "acamP", reinforces the name
Acamprosate is renally excreted, contraindicated in severe renal failure (CrCl <30). Dose: 666 mg TID (=1998 mg/day). Safe in liver disease (advantage over disulfiram and naltrexone).
13. Buprenorphine Pharmacology: "PARTIAL CEILING"
, describes buprenorphine's key properties - Partial MOR agonist - Affinity: very high (displaces full agonists) - Respiratory depression: ceiling effect (safer in overdose) - Taper must be slow; long half-life (24–72 hours) - Induction: patient must be in withdrawal (COWS ≥8), otherwise precipitated withdrawal - Antagonism at KOR (kappa) → reduces dysphoria - L, Long duration allows once-daily or alternate-day dosing
Precipitated withdrawal happens because buprenorphine has HIGHER receptor affinity than most full agonists. If full agonist still occupying receptors, buprenorphine kicks it off → withdrawal. Wait for COWS ≥8–12 before first dose.
14. Korsakoff's Syndrome Features
- C, Confabulation (unconscious memory fabrication) - A, Anterograde amnesia (new learning severely impaired, primary deficit) - R, Retrograde amnesia (recent > remote; temporal gradient) - T, Thiamine deficiency (and therefore: dorsomedial thalamus + mammillary bodies)
Korsakoff's patients CAN register new information briefly (unlike Alzheimer's) but cannot consolidate it. Ask the patient who just told you their name, in 5 minutes, they cannot recall meeting you. This is anterograde amnesia.
15. Nicotine Dependence Treatment Ladder
(Varenicline > Bupropion > NRT) - Varenicline (Champix), triples quit rates vs placebo; best single agent; partial α4β2 nAChR agonist - Bupropion SR, doubles quit rates; DA/NE reuptake blocker + nAChR antagonist; also antidepressant - Nicotine Replacement Therapy, doubles quit rates; patch + short-acting NRT = best NRT
Combination NRT (long-acting patch + short-acting PRN gum/lozenge) is more effective than single NRT formulation. Varenicline + NRT shows additive benefit in some trials.
16. Change Talk: DARN CAT
, change talk types - Desire: "I want to..." - Ability: "I could..." - Reason: "Because..." - Need: "I have to..." - Commitment: "I will..." - Activation: "I am ready to..." - Taking steps: "I've already started..."
DARN = preparatory change talk. CAT = mobilising change talk. Commitment language (CAT) is the strongest predictor of actual behaviour change. The MI therapist's job is to selectively reinforce and elaborate change talk, especially CAT.
17. CIWA-Ar Items: "TATPHAAVO"
(10 items) - T, Tremor - A, Anxiety - T, Tactile disturbances - P, Paroxysmal sweats - H, Headache / fullness in head - A, Auditory disturbances - A, Agitation - V, Visual disturbances - O, Orientation / sensorium clouding (plus Nausea/Vomiting = 10th item, "N" can precede TATPHAAVO)
CIWA-Ar maximum score = 67. DTs-level severity = >15–20. Orientation item has maximum score of 4 (not 7 like others), ask for date, day, month, year. Only sensorium item distinguishes mild withdrawal from DTs.
18. DSM-5 SUD Criteria: 4 Domains
MNEMONIC: "ICSRP", "I Can't Stop Risky Pharmacology" - Impaired Control (4 criteria: more/longer than intended, failed efforts to cut down, much time, craving) - Continued use despite Social impairment (3 criteria: failed obligations, interpersonal problems, activities given up) - Risky use (2 criteria: physically hazardous use; use despite consequences) - Pharmacological (2 criteria: tolerance; withdrawal)
11 criteria total. 2–3 = mild; 4–5 = moderate; 6+ = severe. DSM-5 removed "legal problems" and ADDED "craving" vs DSM-IV. Tolerance and withdrawal do NOT count if occurring in the context of prescribed use.
19. Alcohol Metabolism: Sequential Steps
MNEMONIC: "EAA", Ethanol → Acetaldehyde → Acetate - Ethanol + ADH (alcohol dehydrogenase) → Acetaldehyde - Acetaldehyde + ALDH (aldehyde dehydrogenase) → Acetate - Acetate → CO2 + H2O Disulfiram blocks the second arrow (ALDH) → acetaldehyde accumulates → DER
Zero-order kinetics: alcohol is metabolised at ~10 mL/hour (absolute alcohol) regardless of concentration. This is why doubling alcohol intake doubles BAC, the metabolism enzyme is saturated.
20. Opioid Overdose Triad
, the three signs of opioid overdose - Miosis (pinpoint pupils) - Respiratory depression (the killer) - Sensorium depressed (unconscious/stupor) - OD, overdose → Naloxone (0.4–2 mg IV/IM/intranasal; repeat every 2–3 min)
In the street or emergency setting: unconscious person + pinpoint pupils + slow breathing = opioid overdose until proven otherwise. Give naloxone, it does not harm non-opioid OD patients significantly. This is the empirical treatment rule.
High-Yield Comparisons
Sources: Kaplan & Sadock, Stahl's, Oxford Textbook of Psychiatry, WHO Guidelines, ICD-11, DSM-5-TR
Comparison tables are the highest-yield format for long-answer endings and short-answer cores. Know at minimum: mechanism, onset, key features, and management for every comparison pair. When writing answers, always include at least one comparison table, examiners reward structured differentiation.
TABLE 1: Alcohol Withdrawal vs Delirium Tremens vs Alcoholic Hallucinosis
| Feature | Uncomplicated Alcohol Withdrawal | Delirium Tremens | Alcoholic Hallucinosis |
|---|---|---|---|
| Onset after last drink | 6–12 hours | 48–72 hours | 12–24 hours |
| Peak | 24–48 hours | 48–72 hours | 24–48 hours |
| Consciousness | Clear | Clouded (delirium) | Clear |
| Hallucinations | Absent or mild | Visual > auditory; complex, vivid | Auditory (voices) >> visual |
| Orientation | Intact | Disoriented | Intact |
| Autonomic instability | Mild–moderate (tremor, tachycardia, diaphoresis) | Severe (hyperthermia, profuse diaphoresis, tachycardia >120, hypertension) | Minimal or absent |
| Tremor | Present | Coarse, severe | Variable |
| Mortality | Very low | 15–35% untreated; <1% treated | Very low |
| Seizures | May precede (24–36h) | May co-occur | Rare |
| Hallucination content | Miniature figures (Lilliputian), insects, terrifying animals | Threatening voices, accusatory voices, commentary | |
| Patient insight | Preserved | Absent | Preserved (patient frightened but knows hallucinations are abnormal) |
| Primary treatment | Oral benzodiazepines (CIWA-Ar guided) | IV diazepam/lorazepam; ICU; thiamine | Antipsychotics (haloperidol); BZD for co-occurring withdrawal |
| ICD-11 code | 6C40.5 (withdrawal) | 6C40.6 (withdrawal with delirium) | 6C40.70 (substance-induced psychosis) |
Alcoholic hallucinosis = auditory hallucinations + clear consciousness + no autonomic storm. DTs = all three. This distinction is the most common exam trap in alcohol disorders.
A patient with vivid visual hallucinations of insects crawling on the walls, confused and disoriented with HR 130 and temperature 38.5°C = DTs. Same patient with clear consciousness, hearing threatening voices, oriented × 3 = alcoholic hallucinosis. Treatment differs: ICU-level BZD titration for DTs vs antipsychotic for hallucinosis.
TABLE 2: Disulfiram vs Naltrexone vs Acamprosate
| Feature | Disulfiram | Naltrexone | Acamprosate |
|---|---|---|---|
| Drug class | Aldehyde dehydrogenase inhibitor | Opioid mu-receptor antagonist | GABA-A agonist / NMDA antagonist |
| Mechanism | Blocks alcohol metabolism → acetaldehyde accumulation → aversive reaction | Blocks opioid-mediated euphoria of alcohol; reduces craving | Reduces glutamatergic hyperexcitability of protracted withdrawal |
| Standard dose | 250–500 mg/day oral | 50 mg/day oral OR 380 mg IM monthly | 666 mg TID (1998 mg/day) |
| Start timing | ≥24 hours abstinent; some say ≥48 hours | Can start while still drinking | After completion of detox |
| Goal | Complete abstinence (deterrence) | Reduce heavy drinking / craving | Maintain abstinence; anti-craving |
| Effect if alcohol consumed | Disulfiram-ethanol reaction (DER), dangerous | No adverse effect | No adverse effect |
| Primary evidence | Moderate; RCTs favour supervised disulfiram | Strong (NNT ~7); COMBINE trial | Strong; best in European abstinence-focused trials |
| Hepatotoxicity | Yes (rare; check LFTs at baseline + 3 months) | Yes at supratherapeutic doses; check LFTs | Minimal |
| Renal considerations | Hepatic metabolism; renal excretion | Hepatic; no dose adjustment needed | Renally excreted; contraindicated CrCl <30 |
| Contraindications | Psychosis, CV disease, hepatic failure, pregnancy, severe pulmonary disease, peripheral neuropathy | Active opioid use or need, liver failure | Severe renal failure |
| Key drug interaction | Metronidazole, isoniazid, cephalosporins (also cause DER); warfarin (↑ INR) | Opioid analgesics (blocks effect); precipitates opioid withdrawal if not opioid-free | Few significant |
| Adherence challenge | Patient can simply stop taking it | Injection formulation improves adherence | TID dosing reduces adherence |
| Best clinical profile | Highly motivated; supervised ingestion; strong social support | Craving-driven relapse; continued heavy drinking at treatment start | Post-detox abstinence; anxiety/protracted withdrawal; liver disease |
| Available in India | Yes (generic) | Yes (oral; injectable less available) | Yes (generic 333 mg tablets) |
The key conceptual contrast: disulfiram = deterrence (what happens IF you drink); naltrexone = reward blockade (what you DON'T get when you drink); acamprosate = allostatic reset (reduces the internal drive to drink).
Patient presents for relapse prevention after detox, liver cirrhosis, high anxiety, strong motivation. Choice: acamprosate (safe in liver disease, targets anxiety-driven craving). Patient with ongoing heavy drinking and cue-triggered craving: naltrexone. Patient with poor compliance who agrees to supervised ingestion daily: disulfiram.
TABLE 3: Methadone vs Buprenorphine in OST
| Feature | Methadone | Buprenorphine (± Naloxone) |
|---|---|---|
| Receptor profile | Full MOR agonist | Partial MOR agonist + KOR antagonist |
| Half-life | 24–36 hours | 24–72 hours (sublingual) |
| Bioavailability | Oral ~80% | Sublingual ~30–50%; IV/intranasal blocked by naloxone component |
| Starting dose | 20–40 mg/day (never >30–40 mg day 1 without tolerance confirmation) | 4–8 mg day 1 (MUST be in withdrawal: COWS ≥8–12) |
| Maintenance dose | 60–120 mg/day (higher = better retention) | 16–32 mg/day |
| Ceiling effect on respiratory depression | No, overdose risk proportional to dose | Yes, respiratory depression plateaus at ~24–32 mg |
| QTc prolongation | Yes, dose-dependent; ECG monitoring required | Minimal |
| Overdose risk | Significant; narrow therapeutic window at induction | Lower; preferred in high-risk patients |
| Diversion potential | High, liquid form, fully active orally | Lower, naloxone component deters injection misuse |
| Supervised consumption requirement | Daily (initially); take-home earned over months | Less restrictive; earlier take-home |
| Induction requirement | No withdrawal needed, start any time | Patient MUST be in mild-moderate withdrawal |
| Precipitated withdrawal risk | None | Yes, if started when opioid still present on receptors |
| In pregnancy | Gold standard (decades of safety data); NOWS expected | Increasing evidence; NOWS typically shorter and milder |
| NOWS severity | Severe, prolonged | Milder, shorter |
| Appropriate for | Severe OUD; failed buprenorphine; high tolerance | First-line for moderate-severe OUD |
| Regulatory access in India | NDPS Act Schedule II; clinic-based dispensation | DTC-based dispensation; NDPS Amendment 2014 |
Buprenorphine precipitated withdrawal mechanism: its very HIGH receptor affinity (higher than most full agonists) + partial agonism = it displaces the full agonist but activates the receptor less → net withdrawal. This is why COWS ≥8 before induction is mandatory.
A young patient starting OST for the first time, no prior failed treatment, using heroin daily, buprenorphine/naloxone is first-line. An older patient with >20 years heroin dependence, multiple failed buprenorphine attempts, methadone.
TABLE 4: ICD-11 vs DSM-5 Substance Use Classification
| Feature | ICD-11 | DSM-5 |
|---|---|---|
| Overall structure | Separate categories: hazardous use, harmful use (single episode / pattern), dependence, intoxication, withdrawal, substance-induced disorders | Single spectrum disorder (SUD) with mild/moderate/severe specifiers; no separate harmful use category |
| Hazardous use | Included as a distinct ICD-11 category (risk without current harm) | Not included as a diagnosis |
| Harmful use | Two separate categories: single episode + pattern | Incorporated into the SUD spectrum |
| Dependence | Requires 3 of 7 features over unspecified period | 6+ criteria of 11 = severe SUD (no separate dependence label) |
| Minimum diagnostic threshold | 1 feature (harmful use) or 3 features (dependence) | 2 of 11 criteria for any SUD diagnosis |
| Severity specifiers | Not used for dependence | Mild (2–3), moderate (4–5), severe (6+) |
| "Abuse" category | Abolished | Abolished, merged into SUD spectrum |
| Craving | Included (compulsion) | Explicit criterion (added in DSM-5) |
| Legal problems | Not a criterion | Removed in DSM-5 (was in DSM-IV abuse) |
| Gambling disorder | Separate category (disorders due to addictive behaviours) | Included in chapter on substance-related and addictive disorders |
| Gaming disorder | Included (ICD-11) | Under further study (DSM-5) |
| Coding | Substance-specific codes (6C40–6C4Z) | Substance-specific codes (F10–F19 equivalent) |
| Polysubstance | Code each substance separately | Code each substance separately |
| Physiological subtype | "With physiological features" specifier for dependence | Tolerance + withdrawal criteria included but no separate specifier |
ICD-11 is the system used in India clinically and medico-legally. DSM-5 is used in research and increasingly in clinical practice. Key ICD-11 advantage: includes hazardous use, allows intervention before harm occurs.
TABLE 5: Opioid Intoxication vs Opioid Withdrawal
| Feature | Opioid Intoxication | Opioid Withdrawal |
|---|---|---|
| Pupil size | Miosis (pinpoint) | Mydriasis (dilated) |
| Consciousness | Drowsy → coma | Anxious, alert, agitated |
| Respiratory | Depressed, slow | Increased rate; yawning |
| GI | Constipation; reduced motility | Diarrhoea, vomiting, cramps |
| Skin | Warm, flushed | Piloerection ("gooseflesh"); diaphoresis |
| Pulse | Bradycardia | Tachycardia |
| BP | Hypotension | Hypertension |
| Pain | Analgesia | Hyperalgesia, myalgias, bone pain |
| Mood | Euphoria → sedation | Dysphoria, anxiety, irritability |
| Temperature | Normal / mildly hypothermic | Low-grade fever |
| Nose/Eyes | Dry | Rhinorrhoea, lacrimation |
| Life threat | Yes, respiratory depression → death | Not life-threatening in healthy adults (exception: neonates) |
| Assessment scale | COWS (Clinical Opiate Withdrawal Scale) | |
| Treatment | Naloxone (0.4–2 mg IV/IM/IN); supportive | Buprenorphine; clonidine; symptomatic |
The most important axis: pupils. Intoxication = miosis. Withdrawal = mydriasis. In the same patient, these signs REVERSE across the intoxication-withdrawal cycle, this is diagnostically reliable.
COWS is a 11-item scale scoring withdrawal severity. Score 5–12 = mild; 13–24 = moderate; 25–36 = moderately severe; >36 = severe. A COWS ≥8–12 is the threshold for safe buprenorphine induction.
TABLE 6: Cannabis-Induced Psychosis vs Primary Psychosis (Schizophrenia)
| Feature | Cannabis-Induced Psychosis | Schizophrenia |
|---|---|---|
| Temporal link to cannabis | Within 1 month of use/intoxication | No temporal link |
| Onset | Acute, often rapid | Typically insidious (prodrome months-years) |
| Duration | Usually resolves within 1 month of abstinence | Chronic; persists without treatment |
| Positive symptoms | Paranoia, perceptual distortions, ideas of reference | Hallucinations (auditory > visual), delusions |
| Negative symptoms | Mild, transient | Prominent; flat affect, avolition, alogia |
| Disorganisation | Mild | Prominent |
| Consciousness | Relatively clear | Clear |
| Drug screen | THC positive | Often negative (unless comorbid SUD) |
| Insight | Variable; often retained | Often absent |
| Response to abstinence | Significant symptom resolution | No resolution with abstinence alone |
| Long-term conversion | 25–50% convert to schizophrenia-spectrum disorder (5 years) | |
| Risk factors for conversion | Family history of psychosis, COMT Val/Val genotype, adolescent onset, daily high-potency THC use | Complex multifactorial |
| Treatment | Abstinence + short-term antipsychotic | Long-term antipsychotic; psychosocial |
| Prognosis | Good with abstinence (if no conversion) | Variable; often chronic |
The 25–50% conversion rate from cannabis-induced psychosis to schizophrenia-spectrum disorders means it is NOT a benign condition. Long-term follow-up is mandatory.
Diagnostic approach in first-episode psychosis with cannabis use: (1) screen for cannabis with urine drug screen; (2) enforce abstinence; (3) reassess at 4 weeks. If psychosis resolves → cannabis-induced. If persists → primary psychosis or comorbid. Document timeline meticulously, this is both clinical and medico-legal.
TABLE 7: Physical Dependence vs Psychological Dependence
| Feature | Physical Dependence | Psychological Dependence |
|---|---|---|
| Definition | Neuroadaptation requiring continued substance use to maintain physiological normalcy | Emotional and cognitive reliance on a substance for pleasure, relief, or functioning |
| Markers | Tolerance + withdrawal syndrome | Craving, compulsive use, salience, loss of control |
| Mechanism | Receptor downregulation/upregulation; homeostatic adaptation | Mesolimbic dopamine system changes; cue-conditioned responses |
| Without the other? | Yes, opioids for pain (physical only) | Yes, cannabis (mainly psychological, mild physical) |
| Onset | Develops with sustained use | Develops quickly with rewarding substances |
| On cessation | Withdrawal symptoms, can be managed medically | Craving, emotional distress, requires psychosocial treatment |
| Clinical priority | Medically supervised detox | Psychotherapy, relapse prevention, MI |
| Substances showing both | Alcohol, opioids, benzodiazepines | All addictive substances |
| ICD-11 / DSM-5 relevance | Tolerance + withdrawal = physiological features specifier (ICD-11) / criteria 10 & 11 (DSM-5) | Impaired control + craving + salience = criteria 1–4 (DSM-5) |
Physical dependence = addiction. A patient taking morphine for cancer pain who develops tolerance and withdrawal is physically dependent but NOT addicted. Addiction = compulsive use despite harm + loss of control. This distinction has important medico-legal and prescribing implications.
TABLE 8: Benzodiazepine Withdrawal vs Alcohol Withdrawal
| Feature | Benzodiazepine Withdrawal | Alcohol Withdrawal |
|---|---|---|
| Mechanism | GABA-A downregulation + NMDA upregulation | Same pathophysiology |
| Life-threatening | Yes, seizures, delirium | Yes, seizures, DTs |
| Onset | Short-acting BZD: 24–48 hours; long-acting: 5–7 days | 6–12 hours (minor); 48–72 hours (DTs) |
| Duration | Weeks to months (protracted in some) | Usually 5–7 days (acute) |
| Seizure risk | Yes, particularly abrupt cessation of short-acting BZD | Yes, peak at 24–48 hours |
| Delirium | Rare; possible in severe dependence | DTs, 3–5% of untreated cases |
| Perceptual hypersensitivity | Hallmark of BZD withdrawal (light, sound, touch) | Less prominent |
| Autonomic features | Present | Prominent (diaphoresis, tachycardia, hypertension) |
| Protracted withdrawal | Very common, anxiety, insomnia for months | Less common; some "post-acute withdrawal" |
| Taper speed | SLOW, 10%/week; months | Faster, 5–10 day detox sufficient |
| Preferred detox agent | Switch to long-acting BZD (diazepam) + slow taper | Diazepam or chlordiazepoxide (short course) |
| Adjuncts | CBT for anxiety; sleep hygiene | Thiamine; multivitamins; clonidine |
| CIWA equivalent | CIWA-B (Clinical Institute Withdrawal Assessment, Benzodiazepines) | CIWA-Ar |
BZD withdrawal taper is much SLOWER than alcohol detox. Patients who have been on therapeutic doses of BZD for years may need 6–12 month tapers. Rushing = risk of protracted withdrawal and kindling.
In a patient on long-term prescribed clonazepam presenting with anxiety after stopping, do NOT dismiss as "just anxiety." BZD withdrawal can cause life-threatening seizures up to 2 weeks after the last dose for long-acting agents. Restart and taper.
TABLE 9: Fetal Alcohol Syndrome vs Other Causes of Intellectual Disability
| Feature | Fetal Alcohol Syndrome | Down Syndrome | Fragile X | ADHD (mild ID) |
|---|---|---|---|---|
| Cause | Prenatal alcohol exposure | Trisomy 21 | FMR1 gene mutation (CGG repeat) | Multifactorial |
| Facial features | Smooth philtrum, thin upper lip, short palpebral fissures | Epicanthal folds, flat face, Brushfield spots | Long face, large ears, macroorchidism | None specific |
| Growth | Pre- and post-natal growth restriction | Normal-slightly short | Normal | Normal |
| CNS | Microcephaly; frontal lobe hypoplasia; ADHD; EF deficits | Moderate ID; Alzheimer's risk | Moderate-severe ID; ADHD; autism features | Mild; EF deficits |
| Preventable | Yes, entirely | No | No | Partially |
| Diagnosis | Clinical (exposure + features); no biomarker | Chromosomal karyotype | Molecular genetic testing | Clinical |
| Key IQ range | Variable; 40–80 | 40–55 (moderate) | 40–55 (males) | Variable |
FAS is the most common preventable cause of intellectual disability globally. There is NO safe level of alcohol in pregnancy. The facial features triad (smooth philtrum + thin upper lip + short palpebral fissures) is diagnostic but absent in milder FASD forms (ARND, ARBD).
TABLE 10: Stimulant Intoxication vs Stimulant Withdrawal ("Crash")
| Feature | Cocaine / Amphetamine Intoxication | Cocaine / Amphetamine Withdrawal (Crash) |
|---|---|---|
| Timing | During use | Hours to days after last use |
| Mood | Euphoria, grandiosity | Dysphoria, depression, anhedonia |
| Energy | Increased | Profound fatigue, lethargy |
| Sleep | Insomnia | Hypersomnia (sleeping 12–18 hours) |
| Appetite | Decreased | Hyperphagia (increased appetite) |
| Pupils | Dilated | Normal |
| Vital signs | Tachycardia, hypertension, hyperthermia | Normal or bradycardia |
| Psychosis | Paranoia, hallucinations at high doses | Generally absent; severe depression possible |
| Craving | High during use | Intense craving in early withdrawal |
| Life-threatening | Yes, MI, stroke, arrhythmia | No (but depression may → suicidality) |
| Treatment | Supportive; BZD for agitation; cooling | Supportive; antidepressants for severe depression; no approved pharmacotherapy |
Cocaine does NOT cause physiological withdrawal in the traditional sense, there is no tremor, seizure, or autonomic instability. The "withdrawal" is a psychological crash: depression, fatigue, craving. This is sometimes tested as a differentiating fact.
TABLE 11: AUDIT vs CAGE: Screening Tool Comparison
| Feature | AUDIT | CAGE |
|---|---|---|
| Developed by | WHO (Babor 1989) | Ewing (1984) |
| Items | 10 | 4 |
| Time to complete | 2–3 minutes | <1 minute |
| Quantitative data | Yes (frequency, quantity) | No |
| Domains | Hazardous use + dependence features + harmful consequences | Dependence/emotional features only |
| Detects hazardous use | Yes | Poor |
| Detects dependence | Yes | Yes |
| Scoring range | 0–40 | 0–4 |
| Positive threshold | ≥8 (hazardous use) | ≥2 |
| Cultural validation | WHO; multi-country (including India) | Primarily Western |
| Best use | Systematic screening + intervention level guidance | Rapid clinical screen in any setting |
| Lifetime vs current | Current (last year) | Lifetime orientation |
| Sensitivity for AUD | ~57–97% (threshold-dependent) | ~74–85% |
| Specificity for AUD | ~78–96% | ~79–91% |
| AUDIT-C brief version | 3 items; ≥4 (men) / ≥3 (women) | No abbreviated version |
| Appropriate for primary care | Yes, AUDIT-C especially | Yes |
AUDIT detects the full spectrum from hazardous use to dependence. CAGE is specifically designed for dependence detection. In systematic public health screening, AUDIT is preferred. In a quick clinical encounter, CAGE is sufficient.
PYQ Frequency Analysis
Analysis based on recurring patterns in Indian PG Psychiatry exit examination question banks (PG exams, TN-MGR, Exam pattern). No university-specific references included, applicable to all Indian PG psychiatry examinations.
SECTION 1: OVERALL TOPIC FREQUENCY MAP
The following analysis categorises SUD subtopics by their historical appearance frequency across Indian PG psychiatry written papers.
If you have limited preparation time, Tier 1 and Tier 2 topics cover approximately 70–80% of SUD marks in any given paper. Master these first. Tier 3 topics are rising sharply, examiners are updating with current literature and policy.
SECTION 2: PERENNIAL FAVOURITES: DEEP ANALYSIS
2.1 Alcohol Withdrawal Management
Why it appears every cycle: Core clinical competency. The single topic where a psychiatry postgraduate is expected to demonstrate immediate practical skills.
What examiners test:
- Timeline of withdrawal (6-12-24-48-72 hours framework)
- CIWA-Ar: what it scores, thresholds, symptom-triggered vs fixed-dose
- Benzodiazepine choice and rationale (diazepam vs lorazepam vs oxazepam)
- Thiamine before glucose, rule must be explicitly stated
- DTs: recognition, ICU management
- Relapse prevention pharmacotherapy
Common mistakes that cost marks:
- Mentioning haloperidol as primary treatment for DTs (it is adjunct only, no anticonvulsant effect)
- Not mentioning CIWA-Ar
- Omitting thiamine supplementation protocol
- Confusing the withdrawal seizure timing with DTs onset
Likely question formats:
- "Discuss management of alcohol withdrawal syndrome" [10 marks]
- "Describe delirium tremens, features and management" [10 marks]
- "A 45-year-old male presents with tremors and confusion 48 hours after his last drink. Discuss diagnosis and management" [10 marks]
In the management of DTs, explicitly state: (1) ICU/HDU admission, (2) IV diazepam titrated to sedation, (3) thiamine before glucose, (4) correct electrolytes, (5) treat precipitating cause. These five points appear in every model answer.
2.2 Wernicke-Korsakoff Syndrome
Why it appears every cycle: Bridging neurology + psychiatry + addiction. High clinical consequence if missed. Tested in both short and long answers.
What examiners test:
- Wernicke's triad (but note only 10–16% have full triad)
- Pathology (mammillary bodies, dorsomedial thalamus, periaqueductal grey)
- Korsakoff's features: anterograde amnesia, confabulation, insight
- The "thiamine before glucose" rule
- Treatment dosing (200–500 mg IV thiamine)
- Prognosis (25% good, 50% partial, 25% minimal)
Common mistakes:
- Stating the full triad is always present
- Confusing anterograde and retrograde amnesia directionality
- Not distinguishing Korsakoff's from Alzheimer's dementia
Likely question formats:
- "Discuss Wernicke-Korsakoff syndrome" [10 marks]
- "Describe the neuropsychiatric complications of alcohol use disorder" [10 marks, where WKS is expected as a major section]
- Short note: "Korsakoff's psychosis" [5 marks]
Three facts that always earn marks: (1) full triad in only 10–16%, (2) thiamine before glucose, (3) mammillary bodies as the key pathological site.
2.3 Motivational Interviewing
Why it appears every cycle: MI is now part of standard psychiatry competency frameworks. Examiners see it as testable theory with direct clinical application.
What examiners test:
- MI Spirit (PACE acronym)
- Four processes (Engaging, Focusing, Evoking, Planning)
- OARS (Open questions, Affirmations, Reflective listening, Summaries)
- Change talk: DARN-CAT
- Ambivalence as central concept
- Evidence base (Project MATCH, Cochrane)
Common mistakes:
- Describing MI as "advice giving" (it is explicitly NOT directive advice-giving)
- Confusing MI with Brief Intervention (BI is advice-focused; MI is evocative)
- Not mentioning the Spirit, examiners specifically look for this
Likely question formats:
- "Describe motivational interviewing in the management of substance use disorders" [10 marks]
- "Discuss psychosocial interventions in alcohol dependence" [10 marks, MI expected as main section]
- Short note: "Stages of change and motivational interviewing" [5 marks]
2.4 Stages of Change (Transtheoretical Model)
Why it appears every cycle: Conceptually elegant, well-researched, directly applicable to every clinical encounter with a person who uses substances.
What examiners test:
- 6 stages (PC, C, Prep, Action, Maintenance, Relapse) with definitions
- Stage-matched interventions
- Decisional balance concept
- Spiral model of relapse
- Integration with MI
Likely question formats:
- "Describe the transtheoretical model of behaviour change" [10 marks]
- "Discuss stages of change and their relevance in managing substance use disorders" [10 marks]
- Short note: "Prochaska and DiClemente's model" [5 marks]
2.5 AUDIT and CAGE
Why it appears every cycle: Screening is a core public health and clinical competency. Examiners test both the tool content and the clinical decision-making that follows.
What examiners test:
- CAGE: all 4 questions verbatim (must be written out)
- AUDIT: 3 domains, scoring thresholds (8/15/20)
- AUDIT-C: 3 items, threshold
- Comparison of the two tools
- SBIRT framework (Screening-Brief Intervention-Referral to Treatment)
Likely question formats:
- "Describe screening instruments used in alcohol use disorder" [10 marks]
- "Compare AUDIT and CAGE" [10 marks]
- Short note: "CAGE questionnaire" [5 marks]
SECTION 3: HIGH-FREQUENCY ROTATING TOPICS
3.1 Disulfiram vs Naltrexone vs Acamprosate
Pattern: Appears as either a 10-mark long answer or a 5-mark "compare and contrast."
What to include:
- Mechanism (ALDH inhibition / MOR antagonism / GABA-NMDA modulation)
- Dose for each
- DER features for disulfiram
- Clinical profile (best for whom)
- Contraindications (especially: naltrexone contraindicated in opioid users)
The comparison table format is almost always expected for this question. Draw it in your answer, examiners reward visual organisation.
3.2 Delirium Tremens
Pattern: Either as a standalone question or as part of "complications of alcohol withdrawal."
Must-include:
- Clinical features (5 Ds: Delirium, Diaphoresis, Dysautonomia, Dread, Dreams/hallucinations)
- Timing (48–72 hours)
- Mortality (untreated 15–35%; treated <1%)
- Management (IV diazepam, ICU, thiamine, treat precipitants)
- DTs vs alcoholic hallucinosis differentiation
3.3 Opioid Substitution Therapy
Pattern: Appears regularly as either "discuss OST" or "compare methadone and buprenorphine."
Must-include:
- Rationale (harm reduction framework)
- WHO essential medicines status
- Methadone (full agonist) vs buprenorphine (partial agonist + ceiling effect)
- Induction protocol for buprenorphine (COWS ≥8–12)
- Psychosocial components
- Indian DTC context
3.4 Alcoholic Hallucinosis
Pattern: Frequently tested as a short note or as part of "differentials in psychosis."
Key differentiating features from DTs: Clear consciousness, auditory > visual, no autonomic instability, must be stated explicitly.
SECTION 4: RISING TOPICS: INCREASING EXAM FREQUENCY
4.1 Cannabis and Psychosis
Trend: Significant increase in frequency over last 3–5 years, driven by:
- Public policy debates around cannabis decriminalisation
- High-profile international research (Di Forti, EU-GEI study)
- Rising prevalence of cannabis use among Indian youth
What to master:
- Bradford Hill criteria for causality (especially temporality, dose-response, experiment)
- THC:CBD ratio and psychosis risk
- Cannabis-induced psychosis vs schizophrenia differentiation table
- 25–50% conversion to schizophrenia-spectrum figure
- Management: abstinence + antipsychotic + psychoeducation
The EU-GEI study (Di Forti 2019) found daily high-potency cannabis use associated with OR 4.8 for psychosis. This specific figure is cited in recent exam answers.
4.2 NDPS Act Provisions
Trend: Rising sharply, reflects curriculum updates emphasising law, ethics, and policy in psychiatry.
What to master:
- Section 64-A (immunity for voluntary treatment seeking), most clinically relevant
- Section 71 (government treatment centres)
- Section 76 (probation to treatment)
- Small vs large quantity thresholds for heroin, cocaine, cannabis
- 2014 Amendment (essential medicines access)
Section 64-A is the provision that directly affects your clinical practice, patients seeking treatment voluntarily are protected from prosecution. This is the key point examiners look for.
4.3 Dual Diagnosis
Trend: Increasing, reflects integration of addiction psychiatry with general psychiatry in practice.
What to master:
- Epidemiology (ECA study: 37% AUD with comorbid psychiatric disorder)
- Four pathways (self-medication, substance-induced, common factor, bidirectional)
- Sequential vs parallel vs integrated treatment models
- Integrated treatment as gold standard
- Clozapine in schizophrenia + cannabis use
4.4 Novel Psychoactive Substances
Trend: Included in recent curriculum updates. Examiners testing awareness of emerging substances.
What to master:
- Definition (designed to mimic controlled substances while evading scheduling)
- Categories: synthetic cannabinoids, synthetic cathinones, novel phenethylamines, novel opioids
- Synthetic cannabinoids: full CB1 agonists, more toxic than THC, not detected on standard screens
- Synthetic cathinones ("bath salts"): stimulant + psychosis
- Clinical approach: supportive management, no specific antidotes
4.5 Neonatal Abstinence Syndrome / NOWS
Trend: Rising with increased emphasis on perinatal psychiatry.
What to master:
- Finnegan Scale (categories: CNS, metabolic, GI, respiratory)
- Pharmacological treatment threshold (Finnegan ≥8 on two consecutive assessments)
- First-line treatment: oral morphine
- Buprenorphine-exposed NOWS vs methadone-exposed NOWS (buprenorphine = milder, shorter)
- Non-pharmacological: kangaroo care, breastfeeding, low stimulation
SECTION 5: QUESTION TYPE FREQUENCY BY FORMAT
SECTION 6: TOPIC PRIORITY MATRIX
| Priority | Topic | Marks Available Per Paper | Preparation Time Recommended |
|---|---|---|---|
| MUST KNOW, Tier 1 | Alcohol withdrawal management | 10–20 | 3 hours |
| MUST KNOW, Tier 1 | Wernicke-Korsakoff | 10 | 2 hours |
| MUST KNOW, Tier 1 | Motivational Interviewing | 10 | 2 hours |
| MUST KNOW, Tier 1 | Stages of change | 10 | 1 hour |
| MUST KNOW, Tier 1 | AUDIT / CAGE | 5–10 | 1 hour |
| HIGH, Tier 2 | DTs clinical features + management | 10 | 2 hours |
| HIGH, Tier 2 | Disulfiram vs naltrexone vs acamprosate | 10 | 1.5 hours |
| HIGH, Tier 2 | Opioid substitution therapy | 10 | 2 hours |
| HIGH, Tier 2 | Alcoholic hallucinosis | 5 | 45 min |
| HIGH, Tier 2 | CIWA-Ar | 5 | 30 min |
| RISING, Tier 3 | Cannabis and psychosis | 10 | 1.5 hours |
| RISING, Tier 3 | NDPS Act | 10 | 1 hour |
| RISING, Tier 3 | Dual diagnosis | 10 | 1.5 hours |
| RISING, Tier 3 | NOWS / NAS | 5–10 | 1 hour |
| OCCASIONAL, Tier 4 | FAS / FASD | 5 | 30 min |
| OCCASIONAL, Tier 4 | Cocaine complications | 5 | 30 min |
| OCCASIONAL, Tier 4 | Buprenorphine pharmacology | 5 | 30 min |
Total recommended preparation time for SUD chapter: 24–28 hours. Spread across 3 weeks at 1.5 hours/session = 16–18 sessions. First 4 sessions: Tier 1. Sessions 5–10: Tier 2. Sessions 11–14: Tier 3. Sessions 15–16: Tiers 4–5 rapid review.
SECTION 7: HIGH-YIELD ANSWER-WRITING FRAMEWORK
The "DEMC" Answer Structure for Management Questions
Every management question should follow:
- Define, 2–3 sentences on the condition being managed
- Evaluate, assessment tools, severity grading, examination findings
- Manage, step-by-step pharmacological + non-pharmacological, complications
- Consolidate, relapse prevention, prognosis, follow-up
The "MAPS" Answer Structure for Comparison Questions
- Mechanism, compare mechanisms
- Application, clinical use, dosing, indication
- Problems, contraindications, side effects
- Summary table, always end with or include a comparison table
Writing Tables Under Exam Conditions
- Draw the table first (skeleton: 3 columns × 6–8 rows)
- Fill rows from memory (mechanism, dose, side effects, contraindications)
- Label rows and columns clearly
- Add a pearl box after the table
Under time pressure, a well-drawn table counts as much as 3–4 paragraphs of prose. If you can draw the Methadone vs Buprenorphine table from memory in 3 minutes, you have secured 3–4 marks in a 10-mark answer.
SECTION 8: PREDICTED HIGH-PROBABILITY QUESTIONS: NEXT EXAM CYCLE
Based on topic rotation patterns and recent literature citations in Indian psychiatry curricula:
SECTION 9: EXAMINER CHECKLIST: WHAT EARNS MARKS
Reconstructed from answer key patterns across multiple exam cycles:
Alcohol Withdrawal Management (10 marks)
- [ ] Timeline stated (6-12-24-48-72 framework)
- [ ] CIWA-Ar mentioned with scoring threshold
- [ ] Thiamine before glucose stated explicitly
- [ ] Benzodiazepine named with dose and route
- [ ] DTs differentiated from uncomplicated withdrawal
- [ ] Relapse prevention agents mentioned
- [ ] Psychosocial component mentioned
Motivational Interviewing (10 marks)
- [ ] MI Spirit (PACE) defined
- [ ] Four processes named
- [ ] OARS skills described
- [ ] Change talk (DARN-CAT) mentioned
- [ ] Ambivalence as central concept
- [ ] Evidence base (Project MATCH or Cochrane)
- [ ] Limitation or appropriate context
Wernicke-Korsakoff (10 marks)
- [ ] Thiamine deficiency mechanism explained
- [ ] Wernicke's triad stated
- [ ] "Only 10–16% have full triad" stated
- [ ] Pathological sites: mammillary bodies, dorsomedial thalamus
- [ ] Treatment: IV thiamine before glucose, dose stated
- [ ] Korsakoff's: anterograde amnesia, confabulation, insight absent
- [ ] Prognosis percentages given
Quick Review
Sources: Kaplan & Sadock, Stahl's, Oxford Textbook of Psychiatry, WHO Guidelines, ICD-11, DSM-5-TR All patient names are fictitious. All clinical details are for educational purposes only.
Clinical vignettes test applied knowledge, diagnosis + justification + management in one package. Practice answering the questions before reading the answers. For each vignette: (1) identify the diagnostic clues in the case, (2) apply the relevant classification criteria, (3) structure management using the step framework from D1 and D2.
Vignette 1: The Morning Tremor
Case: Ramesh, a 48-year-old accountant, is brought to the emergency department by his wife at 8 AM. She reports he had his last drink at 10 PM the previous night. He appears sweaty, tremulous, and agitated. His heart rate is 112 bpm, BP 158/96 mmHg, temperature 37.6°C. He is oriented but anxious. He says he has been drinking 12–15 units of alcohol daily for the past 8 years. His CIWA-Ar score is assessed as 14.
Q1. What is the diagnosis? Justify using ICD-11 criteria.
Answer:
Ramesh has Alcohol Withdrawal Syndrome (ICD-11: 6C40.5, Alcohol withdrawal, uncomplicated).
Justification:
- Established pattern of heavy alcohol use (8 years, 12–15 units/day = physiological dependence)
- Recent cessation/reduction (last drink 10 hours ago)
- Classic withdrawal features within the expected 6–12 hour window: tremor, tachycardia (112), hypertension (158/96), diaphoresis, anxiety, agitation
- CIWA-Ar 14 = moderate severity (threshold 8–15)
- Consciousness clear, excludes delirium tremens at this stage
ICD-11 alcohol dependence requires 3 of 7 features including tolerance (likely given 8 years, 12–15 units/day) and withdrawal (now presenting). The ICD-11 code for withdrawal is 6C40.5.
Q2. What is the CIWA-Ar score of 14 telling you, and how does it guide management?
Answer:
CIWA-Ar 14 = moderate withdrawal severity. This score indicates:
- Pharmacological treatment is required (threshold for treatment ≥8)
- Symptom-triggered benzodiazepine protocol appropriate
- Does not yet meet threshold for ICU/HDU (>20)
- Oral route likely adequate if patient can cooperate
Management based on CIWA-Ar 14:
- Oral diazepam 20 mg now → reassess in 1 hour
- If CIWA-Ar still ≥8 at 1 hour → repeat 10–20 mg
- Thiamine 100–200 mg IV/IM before any IV glucose
- Monitor vitals 2-hourly; CIWA-Ar 4-hourly
- Target CIWA-Ar <8 before stepping down
Q3. What are the risk factors in this case for progression to delirium tremens?
Answer:
Risk factors in Ramesh's case:
- Long duration and high quantity of use (8 years, 12–15 units/day): chronic neuroadaptation
- Hypertension already at presentation: suggests significant autonomic activation
- Moderate CIWA-Ar at 10 hours: may worsen over next 24–48 hours
General DTs risk factors to mention in exam: prior DTs/seizures, age >65, concurrent illness, benzodiazepine co-dependence, severe malnutrition, prolonged use.
The most important predictor of DTs is a prior episode of DTs or withdrawal seizures. Always ask about previous withdrawal history. Ramesh's 8-year history without stated prior DTs is partially reassuring, but 48–72 hours is the danger window.
Vignette 2: The Terrifying Insects
Case: Priya, a 52-year-old retired teacher with a 20-year history of alcohol dependence, is admitted on Day 3 after her last drink. She is severely agitated, diaphoretic, and disoriented to time and place. She is screaming that insects are crawling over her body and that small men are trying to harm her. Her temperature is 39.2°C, HR 134 bpm, BP 172/104 mmHg. Her husband reports she had a witnessed seizure at home 12 hours ago before admission.
Q1. Identify the syndrome and list its diagnostic features.
Answer:
Priya has Delirium Tremens (ICD-11: 6C40.6, Alcohol withdrawal with delirium).
Diagnostic features present:
- Delirium: disorientation to time and place, grossly disturbed consciousness
- Visual hallucinations: insects on body (tactile + visual), Lilliputian figures ("small men")
- Severe autonomic instability: temperature 39.2°C (hyperthermia), HR 134 (tachycardia), BP 172/104 (hypertension), diaphoresis
- Timing: 72 hours post-last drink (DTs peak: 48–72 hours)
- Prior seizure: withdrawal seizure preceded DTs (as expected, seizures peak at 24–48h, DTs at 48–72h)
Lilliputian hallucinations (miniature people/animals) are considered pathognomonic of DTs. Tactile + visual hallucinations together are characteristic. Auditory hallucinations are LESS prominent than in alcoholic hallucinosis.
Q2. Outline the immediate management priorities.
Answer:
Q3. What is the prognosis and what determines it?
Answer:
- Untreated DTs mortality: 15–35%
- With treatment: <1%
- Most common cause of death: cardiovascular (arrhythmia, not seizure)
Poor prognostic factors:
- Concurrent infection / sepsis
- Severe hyperthermia >40°C
- Underlying liver failure (hepatic encephalopathy may compound)
- Delayed presentation (>72 hours of untreated DTs)
- Aspiration pneumonia
- Prior DTs (kindling)
Priya's temperature of 39.2°C is a red flag. Hyperthermia in DTs indicates severe autonomic storm, possible concurrent infection, and significantly worsens prognosis. Aggressive cooling and infection workup are not optional.
Vignette 3: The Man Who Hears Voices but Knows It
Case: Suresh, a 41-year-old businessman, presents with his wife at 11 PM, 18 hours after his last drink. He is agitated but answers questions correctly, knows the date and where he is. He says he has been hearing two men's voices for the past 4 hours talking about him, calling him a thief and saying they will hurt him. He is visibly frightened. Vitals: HR 88, BP 130/82, afebrile. He has been drinking 8–10 units daily for the past 6 years.
Q1. What is the diagnosis? Distinguish it from delirium tremens.
Answer:
Suresh has Alcoholic Hallucinosis (ICD-11: 6C40.70, Substance-induced psychotic disorder).
Key diagnostic features:
- Onset 12–24 hours after last drink (hallucinosis window)
- Clear consciousness: oriented, answering correctly, knows date and place
- Auditory hallucinations (voices): threatening, accusatory, characteristic content
- Intact sensorium: no delirium
- Mild/absent autonomic features: HR 88, BP 130/82, afebrile
Distinction from DTs:
| Feature | Suresh (Hallucinosis) | DTs |
|---|---|---|
| Consciousness | Clear | Clouded |
| Hallucinations | Auditory >> visual | Visual > auditory |
| Orientation | Intact | Impaired |
| Autonomic storm | Absent | Severe |
| Timing | 12–24 hours | 48–72 hours |
| Mortality | Very low | Up to 35% untreated |
Q2. What is the treatment and expected course?
Answer:
Treatment:
- Benzodiazepines: for co-occurring withdrawal features (even mild), diazepam 10 mg oral + monitor
- Antipsychotics: haloperidol 5 mg oral/IM → for psychotic symptoms (voices)
- Monitor: CIWA-Ar to detect escalating withdrawal
- Safe environment: low stimulation, orientation cues, family presence
- Thiamine: oral thiamine 100 mg (prophylactic against Wernicke's)
Expected course:
- Most cases resolve within hours to days with abstinence and treatment
- Rare persistence beyond 2 weeks
- If persists >1 month after abstinence → reassess diagnosis → primary psychotic disorder?
Q3. What is the risk of progression to DTs in this patient?
Answer:
Moderate risk:
- He is only 18 hours post-last drink, DTs peak is 48–72 hours, still 30–54 hours away
- Current mild autonomic state is reassuring but can change
- Risk factors present: 6-year heavy use
- Monitor CIWA-Ar every 4 hours over the next 48 hours
- Escalation protocol: if CIWA-Ar rises >15, upgrade to IV route and consider HDU
Vignette 4: The Unconscious Young Man
Case: Vikram, a 24-year-old, is brought by friends to the emergency department unconscious. Friends report he "injected something" 30 minutes ago. On examination: deeply unconscious (GCS 6), respiratory rate 6 breaths/minute, pupils 2 mm bilaterally (pinpoint), cyanotic, HR 52, BP 90/60.
Q1. What is the most likely diagnosis and the diagnostic triad?
Answer:
Opioid overdose (ICD-11: 6C43.10, Opioid intoxication with overdose).
The diagnostic triad of opioid overdose:
- Miosis (pinpoint pupils, 2 mm), pathognomonic when bilateral
- CNS depression (GCS 6, stupor/coma)
- Respiratory depression (RR 6, life-threatening; normal is 12–20)
Additional findings consistent: bradycardia, hypotension, cyanosis (from hypoxia).
Any one of the triad may be absent, but the combination of unconsciousness + slow breathing + pinpoint pupils = opioid overdose until proven otherwise. IV naloxone should not be delayed pending laboratory confirmation.
Q2. Outline immediate emergency management.
Answer:
Naloxone half-life is 30–90 minutes, shorter than most opioids. Re-sedation ("renarcotisation") is a genuine risk, especially with long-acting opioids like methadone (half-life 24–36 hours) or fentanyl. Never discharge after one naloxone dose without extended monitoring.
Q3. Vikram recovers and is willing to talk. What is the next step in management?
Answer:
This is a "teachable moment", the overdose has increased his readiness to engage.
Immediate next steps:
- Motivational interview: brief MI while the experience is fresh; assess stage of change
- Psychoeducation on overdose risk: tolerance reduction after any abstinence period (even hours); risks of resuming at previous dose
- Take-home naloxone: prescribe and train Vikram AND his friends on administration
- Harm reduction: if not ready for abstinence, sterile needles, wound care, BBV testing (HIV, HBsAg, HCV)
- OST referral: offer buprenorphine/naloxone induction, if COWS ≥8–12, can begin same day
- Social assessment: housing, support, NDPS legal status
Vignette 5: The Student Who Stopped Making Sense
Case: Kaveri, a 19-year-old engineering student, is brought by her parents after a 3-week history of increasingly disorganised behaviour, social withdrawal, and talking about "being monitored by satellites." Her parents report she began smoking cannabis regularly 8 months ago and was using it daily for the last 3 months. Urine drug screen: THC positive. She denies alcohol or other drug use. Family history: paternal uncle has schizophrenia.
Q1. What are the two differential diagnoses and how would you approach them?
Answer:
The two primary differential diagnoses:
- Cannabis-induced psychotic disorder (ICD-11: 6C41.70)
- Schizophrenia, first episode (ICD-11: 6A20.0)
Diagnostic approach:
ICD-11 requires symptoms to "develop during or within 1 month after substance use" AND "resolve within 1 month of abstinence" for a substance-induced disorder diagnosis. If psychosis persists beyond 1 month of confirmed abstinence → reassess for schizophrenia.
Q2. What features increase the probability of conversion to a primary psychotic disorder?
Answer:
High-risk features for conversion to schizophrenia-spectrum disorder:
Kaveri has 3–4 identified risk factors → conversion probability elevated (~40–50% at 5 years).
Q3. What is the initial pharmacological and psychosocial management?
Answer:
Pharmacological:
- Antipsychotic: low-dose risperidone 1–2 mg/day or olanzapine 5 mg/day
- Duration: minimum 3–6 months; reassess at 6 months with confirmed abstinence
- If psychosis persists beyond 6 months of abstinence: long-term antipsychotic per first-episode schizophrenia guidelines
Psychosocial:
- Psychoeducation: cannabis-psychosis link, evidence-based, non-blaming communication to Kaveri and family
- Motivational Interviewing: she is likely in contemplation or preparation stage (the episode has created ambivalence)
- CBT-p: cognitive behavioural therapy for psychosis, addresses both residual symptoms and cannabis use
- Family education: high expressed emotion management; avoid blame; support abstinence without coercion
Telling a young patient "cannabis definitely caused your psychosis" is both scientifically imprecise and therapeutically counterproductive. Better MI-aligned framing: "Cannabis significantly increases the risk, and the evidence suggests your brain is particularly sensitive to it. What do you make of that?"
Vignette 6: The Executive on Benzodiazepines
Case: Meena, a 44-year-old corporate executive, presents requesting a refill of clonazepam 2 mg at night, which she has been prescribed by her GP for insomnia for the past 4 years. She reports that if she misses even one dose, she gets "unbearable anxiety, heart racing, and can't sleep at all." She has tried stopping twice and once had a brief convulsion. She denies alcohol use. She wants to stop but says she "can't function without it."
Q1. What is the diagnosis? Apply ICD-11 criteria.
Answer:
Benzodiazepine dependence (ICD-11: 6C44.2, Dependence on sedative, hypnotic, or anxiolytic, clonazepam).
ICD-11 criteria met (3 of 7 required):
- Impaired control: has tried to stop twice unsuccessfully ("can't function without it")
- Salience: dependence on clonazepam for sleep and anxiety management
- Tolerance: likely, 4 years of regular use; may need dose increases over time
- Withdrawal: definite, anxiety, tachycardia, insomnia on missing dose; convulsion on previous cessation (severe withdrawal)
- Continued use despite harm: psychological and likely occupational impairment
Benzodiazepine dependence can develop at therapeutic doses within 4–6 weeks of regular use. This is iatrogenic dependence, the prescriber bears responsibility. Short-acting BZDs (alprazolam, lorazepam, triazolam) carry higher dependence risk than long-acting agents (clonazepam is intermediate; diazepam is long-acting).
Q2. Outline a safe detoxification plan.
Answer:
Clonazepam 2 mg/night = approximately diazepam 20 mg equivalent (clonazepam 0.5 mg ≈ diazepam 5 mg).
Step 1, Switch to diazepam equivalent:
- Convert to diazepam 20 mg nocte (or split 10 mg AM / 10 mg PM for comfort)
- Diazepam: long-acting, smooth plasma levels, fewer interdose symptoms
Step 2, Slow taper:
- Reduce by 10% every 1–2 weeks
- At 10 mg diazepam: slow to 5% per week
- Total duration: 6–12 months (this is NOT a 10-day alcohol detox equivalent)
Step 3, Monitor closely:
- Weekly review initially; fortnightly when stable
- CIWA-B (benzodiazepine withdrawal scale) or symptom diary
- Educate on withdrawal seizure risk, do NOT miss doses; do NOT abrupt stop
Step 4, Address underlying anxiety/insomnia:
- SSRI/SNRI for anxiety disorder (start during taper)
- Cognitive Behavioural Therapy for Insomnia (CBT-I)
- Sleep hygiene
Step 5, Given prior seizure:
- Slower taper rate; consider neurological consultation
- Seizure precautions during taper (no driving, no heights, supervision)
Q3. What psychosocial interventions support BZD discontinuation?
Answer:
- CBT: addresses the anxiety and catastrophic thinking that drives BZD use; most evidence-based
- CBT-I (specifically for insomnia): stimulus control, sleep restriction, relaxation, as effective as BZD for insomnia long-term
- Psychoeducation: explain physiological dependence = addiction; reduce shame; explain the taper rationale
- Motivational Interviewing: Meena is in preparation stage (she WANTS to stop but feels she can't), appropriate for planning intervention
- Mindfulness-based stress reduction (MBSR): supports anxiety management without medication
Vignette 7: The Truck Driver
Case: Raju, a 35-year-old long-distance truck driver, is referred by occupational health after a routine health check. His AUDIT score is 18. He drinks every evening and on long trips uses 1–2 units during driving "to stay calm." He has never attempted to stop. He becomes defensive when the occupational health nurse mentions his drinking. His wife has complained about his drinking but he says "she's overreacting."
Q1. What stage of change is Raju in, and what intervention is appropriate?
Answer:
Raju is in Precontemplation (possibly early Contemplation).
Evidence for precontemplation:
- Denies problem ("she's overreacting")
- Never attempted to stop
- Defensive when drinking mentioned
- No expressed desire to change
However, his AUDIT of 18 (probable dependence range), occupational health referral, and wife's complaints suggest he is receiving multiple external signals, he may be early Contemplation.
Appropriate intervention: Brief Motivational Interviewing (not advice-giving; not confronting denial)
MI strategy for precontemplation:
- Avoid argument: rolling with resistance, "It sounds like this is an area where you and your wife see things differently."
- Raise doubt gently: "I'm wondering if it's okay to share with you what I'm noticing in your health results?"
- Decisional balance: "What are the good things about drinking for you? What are the not-so-good things?"
- Importance ruler: "On a scale of 0–10, how important is it to you right now to make a change? ... What would need to happen for that number to go up?"
- Affirm: "It takes something to come in and have this conversation."
The worst response to a precontemplator is confrontation ("You have a serious drinking problem and need to stop NOW"). Research consistently shows confrontation increases resistance, not motivation. MI is the evidence-based alternative.
Q2. Raju's AUDIT score is 18. What does this indicate and what screening + intervention pathway should follow?
Answer:
AUDIT 18 = Probable alcohol dependence (threshold ≥16 suggests probable dependence; ≥20 definite).
SBIRT pathway:
- Screening: done (AUDIT 18) → positive
- Brief Intervention: 5–15 minute structured session; FRAMES components; offered today
- Referral to Treatment: AUDIT >15 = referral to specialist (addiction psychiatrist / de-addiction centre) recommended; offer actively today
Occupational context, additional concerns:
- Driving under influence (1–2 units while driving): legal and safety issue
- Fitness to drive: occupational health must formally assess
- Mandatory notification: occupational physician may have duty to notify licensing authority depending on jurisdiction
- NDPS Act: alcohol not under NDPS but road safety law applies
Q3. What brief intervention content is most appropriate for Raju?
Answer:
FRAMES-structured brief intervention (15 minutes):
Vignette 8: The New Mother on Methadone
Case: Ananya, a 29-year-old, presents at 14 weeks of pregnancy. She discloses she has been using heroin IV daily for 3 years and is currently using 0.5 g/day. She is also HIV negative. She is frightened about what her drug use means for her baby. She asks if she should stop immediately to protect the foetus.
Q1. What is the appropriate response to her question about stopping?
Answer:
Ananya should NOT be advised to stop abruptly or rapidly. This is a critical clinical error.
Rationale:
- Abrupt opioid cessation in pregnancy → fetal withdrawal → fetal distress, preterm labour, spontaneous abortion risk (especially in first and second trimester)
- The foetus has developed opioid dependence in utero; abrupt withdrawal is hazardous to the foetus
- Maternal abstinence syndrome → maternal relapse → illicit opioid use → uncontrolled dosing, contaminants, needle sharing, all far more dangerous
- OST (methadone or buprenorphine) is the standard of care in pregnancy
The right answer: "The safest thing for your baby is to start opioid substitution therapy (methadone or buprenorphine) now. Abrupt stopping is actually more dangerous. Your baby will be monitored for neonatal abstinence syndrome after delivery, which is manageable."
Q2. Which OST agent is preferred in pregnancy and why?
Answer:
| Factor | Methadone | Buprenorphine |
|---|---|---|
| Evidence in pregnancy | Decades; gold standard | Increasing; MOTHER trial evidence |
| NOWS severity | Prolonged, moderate-severe | Shorter, milder (advantage) |
| Regulatory status | Standard of care | Increasingly accepted |
| Supervised consumption | Required | More flexible |
| Preferred in India | Most programmes offer methadone | Buprenorphine available at some DTCs |
Both are acceptable. Methadone historically preferred; buprenorphine increasingly supported based on MOTHER trial (Jones 2010): buprenorphine-exposed neonates had significantly shorter NOWS duration and needed less morphine.
The MOTHER trial (2010) is the landmark RCT comparing methadone vs buprenorphine in pregnancy. Key finding: buprenorphine = significantly milder NOWS. This trial is frequently cited in exam answers on perinatal opioid use.
Q3. Ananya is started on buprenorphine. Her baby is born at 38 weeks. The neonatologist calls you asking about neonatal management. What are the key points?
Answer:
Key neonatal management points:
- Expected NOWS: buprenorphine-exposed neonates, onset 12–48 hours, typically milder than methadone
- Assessment: Finnegan Neonatal Abstinence Scoring System (FNASS) every 4 hours
- Pharmacological threshold: Finnegan ≥8 on two consecutive assessments → pharmacological treatment
- First-line treatment: Oral morphine (0.03–0.1 mg/kg/dose every 3–4 hours, titrated to Finnegan <8)
- Non-pharmacological: Skin-to-skin, breastfeeding (Ananya is HIV negative, on stable OST, no other drug use → breastfeeding encouraged), low stimulation, swaddling
- Breastfeeding: strongly encouraged, buprenorphine passes into breast milk in minimal amounts; breastfeeding significantly reduces NOWS severity and duration
- Discharge planning: ensure Ananya has robust social support; postnatal depression screening; continued OST; community health worker link
Vignette 9: The Reluctant Abstainer
Case: Mohan, a 58-year-old retired civil servant, has completed alcohol detoxification 2 weeks ago. He is now in the relapse prevention phase. He is abstinent but does not feel well, he is anxious, not sleeping, and reports persistent low-grade craving. He says "I feel worse sober than I ever did drunk." He is asking for something to help.
Q1. What syndrome is he experiencing and what is its mechanism?
Answer:
Mohan is experiencing Protracted Alcohol Withdrawal Syndrome (also: Post-Acute Withdrawal Syndrome, PAWS).
Features consistent:
- Persistent anxiety, insomnia, and craving beyond the acute 5–7 day withdrawal window
- Anhedonia/dysphoria ("feel worse sober")
- Onset 2 weeks post-detox, consistent with protracted course
Mechanism: Allostatic dysregulation (Koob model)
- Chronic alcohol → GABA-A downregulation + NMDA upregulation → homeostatic set point shifted
- Even after acute withdrawal resolves, the glutamate-GABA balance takes weeks to months to normalise
- Protracted low-level CNS excitability → anxiety, sleep disruption, craving
- Mesolimbic dysphoria: chronic alcohol → blunted dopaminergic reward → everything feels flat without alcohol
Protracted withdrawal is the primary mechanism by which acamprosate works. It modulates the GABA-glutamate imbalance, reducing the low-level dysphoria and craving of protracted withdrawal, precisely Mohan's presentation.
Q2. Which relapse prevention pharmacotherapy is best suited to Mohan, and why?
Answer:
Acamprosate is the optimal choice for Mohan.
Rationale:
Dose: 666 mg TID (check renal function first, CrCl >30 required).
Additional adjuncts:
- Low-dose SSRI (sertraline 50 mg) if anxiety is prominent
- Sleep hygiene counselling + melatonin for insomnia
- Ongoing MI/CBT sessions
- Mutual aid (AA) referral
Q3. Mohan asks if he will always feel this way. What do you tell him?
Answer:
Evidence-based, hopeful, honest counselling:
- Protracted withdrawal symptoms typically improve over 3–12 months with sustained abstinence
- Brain neuroplasticity allows recovery of GABA-glutamate balance and dopaminergic reward systems
- Mood, sleep, and cognitive function generally improve, but recovery is not linear
- Acamprosate helps reduce the internal discomfort during this recovery phase
- Abstinence itself is the most powerful "medication", each day sober supports neurobiological recovery
- Some cognitive impairment (attention, memory) may persist longer, typically 12–24 months to maximum recovery
- Realistic optimism: "Most people who stay abstinent at 3 months report significant improvement by 6–12 months."
The "I feel worse sober" statement is one of the most common barriers to sustained abstinence, and one of the most important to address with psychoeducation. Patients who understand protracted withdrawal as a time-limited neurobiological process are more likely to continue through it.
Vignette 10: The Teenager with Strange Behaviour
Case: Arun, a 16-year-old schoolboy, is brought by his parents. He was found unconscious in his room with an aerosol can and a plastic bag. He regained consciousness within 20 minutes. His parents note this has happened before. He appears disoriented and has mild nystagmus on examination. No other substances on urine drug screen. Neurological examination: mild cerebellar signs.
Q1. What is the substance involved and what are the clinical features of its misuse?
Answer:
Arun is misusing inhalants (specifically aerosol, likely toluene-containing product, e.g., deodorant, solvent, paint thinner).
Inhalant use disorder (ICD-11: 6C4B, Disorders due to volatile inhalants).
Clinical features:
- Acute intoxication: euphoria, dizziness, disorientation, nystagmus, slurred speech, ataxia; brief (minutes to hours), consistent with Arun's episode
- Mechanism: toluene and similar volatile compounds → CNS depression (GABA-A + NMDA effects; general anaesthetic-like)
- "Sudden sniffing death": sensitisation of myocardium to catecholamines → ventricular fibrillation; risk highest with fluorocarbons (aerosols, refrigerants)
- Chronic complications: cerebellar atrophy (explains Arun's cerebellar signs), white matter demyelination, cognitive decline, tubular nephropathy, hepatotoxicity
- Pattern: adolescents; socioeconomically vulnerable populations; cheap and accessible
"Sudden sniffing death" is the most important acute complication of inhalant use, occurs with first or subsequent use, often without warning, due to cardiac arrhythmia. Adrenaline/epinephrine should be avoided in treatment as it can precipitate VF in sensitised myocardium.
Q2. How prevalent is inhalant misuse in India and what are the common substances?
Answer:
India-specific context:
- Fevicol (white glue), Dendrite, petrol, nail polish remover, correction fluid, aerosol sprays, whitener
- Particularly prevalent among street children and adolescents in urban areas
- Often the first substance tried (accessible, cheap, no legal barrier for purchase)
- Maharashtra, Delhi, Bangalore: significant street child populations with inhalant use
- No reliable national prevalence data; estimated 2–5% of substance use presentations in adolescent psychiatry
Q3. What is the management approach?
Answer:
No approved pharmacotherapy for inhalant use disorder. Management is psychosocial.
Acute:
- Supportive, oxygen, monitor cardiac rhythm (defibrillator available)
- Avoid adrenaline (VF risk)
- Treat any hypoxia or arrhythmia
Longer-term:
- Individual CBT: coping skills, trigger identification
- Family therapy: especially with adolescents, family engagement crucial
- Motivational Interviewing: adapted for adolescent developmental stage
- School re-engagement: often dropout precedes inhalant use
- Social work: address poverty, homelessness, family violence (root causes)
- Residential rehabilitation: for severe, homeless cases
- Neuropsychological assessment: if cerebellar signs present (Arun), document baseline, monitor for progression
Vignette 11: The Man Who Changed After Drinking
Case: Laxman, a 50-year-old, is brought by police following an assault. His wife reports he had 2 units of alcohol (a single peg of whisky and half a beer) approximately 30 minutes before the assault. She says he is a completely different person when he drinks, aggressive, paranoid, violent, and then has no memory of the episode. He is calm and cooperative now. His baseline is mild-mannered. BAC at time of arrest was 30 mg/dL (well below legal limit of 80 mg/dL in most Indian states).
Q1. What is the diagnosis and what are its features?
Answer:
Pathological intoxication (Alcohol-Induced Persisting Amnestic Disorder / Alcohol Idiosyncratic Intoxication, ICD-10 term; absorbed into "Other specified alcohol-related disorder" in DSM-5 and ICD-11).
Features:
- Extreme, disproportionate behavioural change (violence, aggression) after a small amount of alcohol
- Amount consumed grossly disproportionate to the behavioural response (2 units → assault vs no effect in most people)
- BAC low (30 mg/dL), not consistent with typical intoxication aggression at this level
- Complete or near-complete amnesia for the episode
- Behaviour out of character with baseline personality
Proposed mechanism:
- Temporal lobe disinhibition / epileptic equivalent in susceptible individuals
- Possibly relates to alcohol-induced paradoxical disinhibition
- Uncommon and diagnostically controversial, must exclude: hypoglycaemia, head injury, co-ingested substances, factitious/malingering
Pathological intoxication is a medico-legal diagnosis, courts may consider it in assault cases. Psychiatrists may be asked to provide expert opinions. Documentation of: (a) amount consumed, (b) BAC, (c) amnesia, (d) character change, (e) prior similar episodes, is essential.
Q2. What investigations would clarify the diagnosis?
Answer:
Q3. What advice do you give regarding future alcohol use?
Answer:
Clear, unambiguous advice:
- Total abstinence from alcohol, the only safe recommendation
- Even small amounts are dangerous in this individual
- If he continues drinking, future episodes are highly likely
- Medico-legal implications: if charged with assault in future under similar circumstances, history of pathological intoxication may affect culpability but does not excuse behaviour
- If epileptic mechanism confirmed: anticonvulsants (carbamazepine) may reduce episodes but do NOT permit drinking
- Family education: wife must know to prevent access to alcohol and to call emergency services if early signs appear
Vignette 12: The Dual Diagnosis Dilemma
Case: Shalini, a 32-year-old woman with a 5-year history of bipolar disorder type I (currently on lithium 900 mg/day, stable), presents with a 2-month history of increasing cannabis use (daily, 3–4 times/day) following a stressful job loss. She reports that cannabis "calms her down" and prevents mood episodes. Her most recent YMRS is 8 (subclinical hypomania). She has started skipping lithium doses.
Q1. Identify the clinical and diagnostic issues.
Answer:
Multiple overlapping issues:
Q2. How does cannabis affect bipolar disorder course?
Answer:
Established adverse effects of cannabis in bipolar disorder:
- More frequent mood episodes: both manic and depressive
- Greater severity of episodes: particularly mania
- Worse functional outcomes: employment, relationships
- Reduced medication adherence: cannabis users less likely to take mood stabilisers consistently (as in Shalini's case)
- Mania switching risk: THC is psychotomimetic and can precipitate manic or mixed states
- Reduced lithium efficacy: some evidence that cannabis undermines pharmacological stabilisation
- Suicidality: cannabis use associated with increased suicidal ideation in bipolar disorder
The self-medication hypothesis is common, patients genuinely believe cannabis helps their mood. The data says the opposite: cannabis destabilises bipolar disorder over time, even if acute relief is experienced. This psychoeducation point is clinically and examinably important.
Q3. Outline an integrated treatment plan for Shalini.
Answer:
Integrated dual diagnosis treatment (not sequential):
Pharmacological:
- Reinstate lithium adherence, psychoeducation + pill organiser + support
- Consider lithium level check (low level may be contributing to subclinical hypomania)
- Consider valproate add-on if cannabis-induced instability difficult to control (better evidence for mixed states)
- No approved pharmacotherapy for cannabis use disorder; no agent to add
Psychosocial:
- Integrated CBT: addresses both bipolar cognitions AND cannabis use, same therapist, same framework
- Motivational Interviewing: ambivalence is clear (she believes cannabis helps; evidence says it harms), decisional balance + personalised feedback on bipolar-cannabis interaction
- Psychoeducation (bipolar + cannabis): the "calming" effect is short-term, tolerance-developing; over time cannabis worsens her condition
- Relapse prevention: identify triggers for both mood episodes and cannabis use; overlapping coping strategy development
- Sleep hygiene: cannabis disrupts sleep architecture (reduces REM); poor sleep = major bipolar trigger
- Social support: job loss addressed; vocational rehabilitation; family education
Monitoring:
- Mood diary + cannabis diary simultaneously
- YMRS monthly
- Lithium levels every 3 months
- Target: cannabis reduction → abstinence → mood stability → functional recovery
The hierarchy in dual diagnosis management: safety first (lithium adherence), then engagement, then substance reduction, then abstinence. Do NOT make abstinence a precondition for treating the bipolar disorder, this sequencing fails patients.