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Cholinergic Agonists: Muscarinic, Nicotinic and Anticholinesterase Drugs

Cholinergic Agonists: Muscarinic, Nicotinic and Anticholinesterase Drugs

Cholinomimetics reproduce acetylcholine (ACh) effects either by directly stimulating muscarinic/nicotinic receptors or by inhibiting acetylcholinesterase (AChE). They are powerful but unforgiving medicines: the same mechanism that restores bladder tone or neuromuscular transmission can cause bronchospasm, bradycardia, diarrhoea, seizures or cholinergic crisis. Doses below are common adult teaching ranges; prescribe only after checking the current product, indication, patient factors and local protocol.

Learning outcomes

  • Differentiate direct muscarinic agonists, nicotine-receptor agonists and indirect AChE inhibitors.
  • Predict organ effects using M1, M2, M3, NN and NM receptors.
  • Give drug-by-drug indications, doses, adverse effects, contraindications and interactions.
  • Recognise cholinergic crisis and organophosphate poisoning as emergencies.

1. Receptor map

Receptor Where it matters Stimulation effect Clinical consequence
M2 SA/AV node Slows rate and conduction. Bradycardia and AV block in toxicity.
M3 Glands, bronchi, gut, bladder, eye Secretions, bronchoconstriction, gut/bladder contraction, miosis. Useful for dry mouth/glaucoma/bladder atony; dangerous in asthma/obstruction.
NM Neuromuscular junction Skeletal muscle depolarisation. Improves MG with AChE inhibitors; excess causes fasciculation then weakness.
NN Autonomic ganglia/CNS Autonomic stimulation and CNS reward pathways. Nicotine dependence, variable BP/HR effects.

Cholinergic toxidrome: recognise it early

  • Muscarinic: salivation, lacrimation, urination, diarrhoea, GI cramp, emesis, miosis, sweating, bronchorrhoea, bronchospasm and bradycardia.
  • Nicotinic: fasciculation, weakness, hypertension/tachycardia early, then paralysis.
  • CNS: anxiety, confusion, seizures and coma may occur with agents that enter the brain or organophosphates.
  • Emergency action: PPE/decontamination where needed, ABC support, suction/oxygen/ventilation and protocol-directed atropine plus oxime therapy for organophosphate poisoning.

2. Classification

Direct muscarinic agonists

  • Choline esters: bethanechol, carbachol.
  • Alkaloids/analogues: pilocarpine, cevimeline.

Nicotinic agonists

  • Nicotine replacement products.
  • Varenicline: partial α4β2 nicotinic agonist.

Indirect agonists: AChE inhibitors

  • Neostigmine, pyridostigmine (peripheral).
  • Physostigmine (crosses CNS).
  • Irreversible organophosphates: toxicology, not routine treatment.

3. Individual drug cards

Bethanechol

Mechanism and receptor profile

  • Synthetic choline ester that directly stimulates muscarinic receptors; it has negligible nicotinic action.
  • Increases detrusor contraction and GI smooth-muscle tone; it is resistant to AChE relative to acetylcholine.

Formulation and common adult teaching dose

  • Oral tablets; common teaching dose 10–50 mg orally three or four times daily, using the lowest effective dose.
  • Give on an empty stomach if possible: nausea/vomiting may be more troublesome near meals. Check local product guidance.

Indications

  • Acute postoperative/postpartum non-obstructive urinary retention.
  • Selected neurogenic bladder atony with retention after mechanical obstruction has been excluded.

Common side effects

  • Abdominal cramps and diarrhoea: M3 stimulation increases gut tone/motility.
  • Salivation, sweating and flushing: glandular and autonomic stimulation.
  • Urinary urgency: detrusor stimulation may be excessive.
  • Headache/dizziness: can accompany BP or autonomic changes.

Serious adverse effects

  • Bronchospasm/bronchorrhoea: potentially severe in asthma or COPD.
  • Bradycardia/hypotension: muscarinic cardiac and vascular effects can compromise perfusion.
  • Bladder rupture risk: do not stimulate a bladder against an unrecognised obstruction.

Contraindications and cautions

  • Contraindicated/cautioned in mechanical urinary or GI obstruction, peptic ulcer disease, asthma, marked bradycardia/hypotension, coronary disease, epilepsy and Parkinsonism.
  • Confirm that retention is functional, not due to enlarged prostate, stone, clot, stricture or pelvic pathology.

Interactions

  • Other cholinergic drugs and AChE inhibitors increase muscarinic toxicity.
  • Antimuscarinics oppose the desired effect; beta blockers can worsen clinically important bradycardia.

Monitoring and counselling

  • Assess voiding, post-void residual where available, abdominal pain, BP, pulse, wheeze and diarrhoea.
  • Seek urgent review for severe colic, inability to pass urine, fainting, wheeze or profuse secretions.

Pilocarpine

Mechanism and receptor profile

  • Direct muscarinic agonist that stimulates exocrine secretion and contracts the iris sphincter/ciliary muscle.
  • In the eye it causes miosis and ciliary muscle contraction, increasing trabecular outflow; orally it increases salivation.

Formulations and common adult teaching doses

  • Oral: commonly 5 mg three times daily for radiation-related xerostomia; Sjögren syndrome regimens may use 5 mg four times daily, subject to product guidance.
  • Ophthalmic: concentration and frequency depend on glaucoma indication and ophthalmology protocol; do not copy an oral dose into eye-drop prescribing.

Indications

  • Dry mouth from salivary-gland hypofunction after head/neck radiotherapy or in Sjögren syndrome.
  • Selected glaucoma/ocular uses under ophthalmology care.

Common side effects

  • Sweating: a dose-limiting consequence of glandular M3 stimulation.
  • Salivation, nausea, diarrhoea and urinary frequency: general muscarinic effects.
  • Blurred vision/headache: miosis and accommodation spasm alter visual function, particularly in dim light.

Serious adverse effects

  • Bronchospasm or increased bronchial secretions: dangerous in uncontrolled airway disease.
  • Bradyarrhythmia/hypotension: risk is greater in important cardiovascular disease.
  • Retinal detachment risk: rare ocular concern in susceptible patients; new flashes/floaters require urgent eye review.

Contraindications and cautions

  • Avoid where miosis is undesirable, such as narrow-angle glaucoma unless specialist-directed; use caution in asthma, peptic ulcer and cardiovascular disease.
  • Patients with night-driving duties need counselling about impaired dark adaptation/blurred vision.

Interactions

  • Antimuscarinics reduce efficacy; other cholinergic medicines increase toxicity.
  • BP/rate-lowering medicines may magnify symptomatic hypotension or bradycardia.

Monitoring and counselling

  • Assess salivary response, hydration, sweating, wheeze, GI tolerance and ocular symptoms.
  • For drops, teach exact instillation and punctal occlusion; avoid driving in poor light until vision effects are understood.

Cevimeline

Mechanism and receptor profile

  • Direct muscarinic agonist with relative M1/M3 activity; promotes salivary secretion.
  • It is a practical alternative to pilocarpine where available, but shares cholinergic systemic hazards.

Formulation and common adult teaching dose

  • Oral capsules; a common adult regimen for Sjögren-related xerostomia is 30 mg three times daily.
  • Use the product-specific hepatic/renal advice and do not treat dose as interchangeable with pilocarpine.

Indications

  • Symptomatic dry mouth in Sjögren syndrome where licensed/available.

Common side effects

  • Excess sweating: often the most limiting adverse effect.
  • Nausea, diarrhoea and abdominal discomfort: increased GI smooth-muscle activity/secretions.
  • Rhinitis and urinary frequency: mucosal/bladder muscarinic stimulation.

Serious adverse effects

  • Bronchospasm: can worsen asthma or chronic obstructive disease.
  • Cardiac rhythm/BP effects: susceptible patients may not tolerate autonomic haemodynamic changes.
  • Visual disturbance: may impair driving or machine operation.

Contraindications and cautions

  • Contraindicated in uncontrolled asthma and where miosis is undesirable, including narrow-angle glaucoma without specialist direction.
  • Use caution with cardiovascular disease, active peptic ulcer and airway disease.

Interactions

  • Antimuscarinics oppose benefit; other cholinomimetics/AChE inhibitors add toxicity.
  • Review medicines that lower pulse/BP before starting.

Monitoring and counselling

  • Monitor symptom relief, fluid loss from sweating, GI effects, wheeze and visual symptoms.
  • Maintain hydration and report breathlessness, severe diarrhoea or troublesome blurred vision.

Carbachol

Mechanism and receptor profile

  • Direct cholinergic agonist with muscarinic and nicotinic activity; resistant to AChE.
  • Its major clinical use is topical/intraocular, not routine systemic prescribing.

Formulation and common adult teaching dose

  • Intraocular solution used by ophthalmology to produce miosis during eye surgery; concentration/volume are product- and procedure-specific.
  • Do not prescribe systemic carbachol as a routine substitute for bethanechol or pilocarpine.

Indications

  • Induction of miosis during ophthalmic surgery and selected ophthalmology protocols.

Common side effects

  • Ocular irritation/blurred vision: local application and pupil constriction affect vision.
  • Brow ache/headache: ciliary muscle contraction may cause discomfort.

Serious adverse effects

  • Systemic cholinergic effects: bradycardia, bronchospasm or sweating are possible after absorption.
  • Marked ocular inflammation/pressure changes: require ophthalmic assessment rather than repeated self-treatment.

Contraindications and cautions

  • Use only under ophthalmology supervision, with special caution in asthma, cardiovascular disease and retinal disease.

Interactions

  • Other cholinergic medicines add systemic effects; antimuscarinics oppose miosis.

Monitoring and counselling

  • Monitor ocular response and systemic pulse/respiratory symptoms when clinically indicated.
  • Advise prompt review for severe eye pain, vision loss, wheeze or fainting.

Nicotine replacement therapy (NRT)

Mechanism and receptor profile

  • Agonist at neuronal nicotinic receptors, including reward-pathway receptors; reduces withdrawal by replacing nicotine without tobacco combustion products.
  • It is not harmless nicotine, but it is much safer than continued smoking for most people when used correctly.

Formulations and common adult teaching doses

  • Patch, gum, lozenge, inhalator/spray vary by market. A common patch course begins at 21 mg/24 h daily for heavier smokers, then tapers.
  • Gum/lozenges are commonly 2 mg or 4 mg, used to a maximum specified by the product. Combine long-acting patch with short-acting rescue NRT when appropriate.

Indications

  • Tobacco-dependence treatment alongside behavioural support and a quit plan.

Common side effects

  • Local irritation: skin reactions with patches; mouth/throat irritation or hiccups with oral products.
  • Nausea and dyspepsia: often indicate swallowing nicotine-containing saliva or excessive dose.
  • Insomnia/vivid dreams: may occur with 24-hour patches.
  • Palpitations: nicotine stimulates autonomic ganglia/adrenal pathways.

Serious adverse effects

  • Nicotine toxicity: vomiting, sweating, tremor, tachycardia, confusion or seizures after excessive exposure/accidental ingestion.
  • Acute cardiovascular symptoms: chest pain or significant arrhythmia needs assessment, not simply a dose increase.

Contraindications and cautions

  • Use a tailored plan in pregnancy, adolescents and recent acute cardiovascular illness; stopping smoking remains a priority and needs clinician support.
  • Keep all nicotine products away from children and pets.

Interactions

  • Smoking cessation—not nicotine itself—changes CYP1A2 induction and may increase concentrations of drugs such as clozapine, olanzapine and theophylline; arrange medication review.
  • Avoid continued smoking while using high-dose NRT because nicotine excess can occur.

Monitoring and counselling

  • Set a quit date, document cigarettes/day and review cravings, withdrawal and adverse effects.
  • Use gum with a “chew and park” technique; rotate patch sites and remove patches before MRI if the product contains metal.

Varenicline

Mechanism and receptor profile

  • Partial agonist at α4β2 neuronal nicotinic receptors: reduces withdrawal/craving while blocking much of the reward from smoked nicotine.
  • It is not a full muscarinic agonist and does not treat cholinergic bladder/eye disease.

Formulation and common adult teaching dose

  • Oral treatment commonly starts 0.5 mg once daily, then 0.5 mg twice daily, then 1 mg twice daily from day 8; renal adjustment is essential.
  • Start before the planned quit date according to the programme/product schedule.

Indications

  • Smoking cessation with behavioural support.

Common side effects

  • Nausea: common and often improved by taking after food with water.
  • Insomnia/vivid dreams: sleep effects are frequently reported.
  • Headache and constipation: may affect adherence.

Serious adverse effects

  • Neuropsychiatric change: new agitation, depressed mood, suicidal thoughts or unusual behaviour requires urgent assessment; distinguish drug effects from nicotine withdrawal but act on safety.
  • Seizures or severe skin reaction: rare but require immediate discontinuation and urgent care.

Contraindications and cautions

  • Check renal function and adjust dose; review seizure history and significant mental-health history with a support plan.
  • Use pregnancy-specific cessation guidance rather than routine adult assumptions.

Interactions

  • Few major pharmacokinetic interactions, but alcohol tolerance/behaviour can change in some patients.
  • As with NRT, stopping smoking may change levels of CYP1A2-substrate medicines.

Monitoring and counselling

  • Review quit progress, mood, sleep, nausea and adherence within the first weeks.
  • Take after food with water; seek urgent help for severe mood change, self-harm thoughts, seizure or serious rash.

Neostigmine

Mechanism and receptor profile

  • Reversible carbamate AChE inhibitor that increases ACh at muscarinic sites and the neuromuscular junction; it does not cross the blood–brain barrier.
  • Also has some direct nicotinic action at the NMJ, improving transmission in myasthenia gravis.

Formulations and common adult teaching doses

  • Oral and injectable forms exist. For reversal of non-depolarising neuromuscular block, a common monitored range is 0.03–0.07 mg/kg IV with an antimuscarinic such as glycopyrrolate/atropine, guided by train-of-four monitoring.
  • MG and ileus/urinary-retention regimens are product- and specialist-specific; do not use an anaesthetic reversal dose as a ward prescription.

Indications

  • Reversal of residual non-depolarising neuromuscular blockade by trained anaesthesia providers.
  • Myasthenia gravis and selected postoperative ileus/urinary retention protocols.

Common side effects

  • Abdominal cramps, diarrhoea and salivation: excess muscarinic ACh.
  • Bradycardia: M2 stimulation is why antimuscarinic co-administration is needed for reversal.
  • Muscle twitching: increased ACh at NMJ can cause fasciculation.

Serious adverse effects

  • Bronchospasm/bronchorrhoea: secretions and smooth-muscle contraction may impair ventilation.
  • Cholinergic crisis: weakness can worsen from depolarisation block, with severe muscarinic toxicity.
  • Severe bradyarrhythmia: may cause hypotension or arrest in susceptible patients.

Contraindications and cautions

  • Avoid in mechanical GI/urinary obstruction and peritonitis; use caution in asthma, bradyarrhythmia, peptic ulcer and coronary disease.
  • Never give reversal blindly: assess residual block with a peripheral nerve stimulator and recovery of ventilation.

Interactions

  • Other cholinergic drugs add toxicity; antimuscarinics oppose muscarinic effects.
  • Aminoglycosides, magnesium and some antiarrhythmics can worsen neuromuscular weakness; check anaesthetic/neuromuscular interactions.

Monitoring and counselling

  • For reversal: continuous ECG, pulse oximetry, ventilation and train-of-four monitoring.
  • For longer treatment: monitor muscle strength, secretions, bowel function, pulse and signs of under- versus over-treatment.

Pyridostigmine

Mechanism and receptor profile

  • Reversible quaternary AChE inhibitor that predominantly acts peripherally and does not meaningfully enter the CNS.
  • Raises ACh at the NMJ, improving fatigable weakness in myasthenia gravis; it also produces muscarinic GI/bladder effects.

Formulations and common adult teaching doses

  • Immediate-release 60-mg tablets, liquid and extended-release products exist.
  • A common starting clinical range is 30–60 mg orally every 4–6 hours while awake, timed to functional need; total daily dose is individualised. Do not crush extended-release tablets.

Indications

  • Symptomatic treatment of myasthenia gravis.
  • Specialist-selected uses such as reversal or autonomic disorders vary by protocol.

Common side effects

  • Diarrhoea, cramps and nausea: muscarinic gut stimulation.
  • Salivation/sweating: increased exocrine secretion.
  • Fasciculation: excess ACh at the NMJ.

Serious adverse effects

  • Cholinergic crisis: excess dose causes worsening weakness plus muscarinic signs; can mimic myasthenic crisis.
  • Bronchial secretions/bronchospasm: may precipitate respiratory failure.
  • Bradycardia/heart block: clinically important, especially with cardiac disease or nodal blockers.

Contraindications and cautions

  • Avoid in mechanical urinary/GI obstruction; use caution in asthma, bradycardia, peptic ulcer and renal impairment.
  • Worsening weakness requires assessment for infection, missed treatment, myasthenic crisis and cholinergic crisis—not unsupervised dose escalation.

Interactions

  • Aminoglycosides, magnesium, quinine/quinidine and some anaesthetics can worsen NMJ transmission.
  • Antimuscarinics may reduce secretions/GI effects but can mask toxicity; coordinate with the prescriber.

Monitoring and counselling

  • Time doses around meals/activities when instructed, and monitor speech, swallowing, respiratory effort and objective strength.
  • Urgent review is needed for increasing weakness, dyspnoea, inability to clear secretions or severe diarrhoea/sweating.

Physostigmine

Mechanism and receptor profile

  • Reversible tertiary AChE inhibitor that crosses the blood–brain barrier, increasing ACh centrally and peripherally.
  • This CNS penetration explains its selective role in severe antimuscarinic delirium and its greater seizure/bradyarrhythmia risk.

Formulation and common adult teaching dose

  • IV injection administered slowly by clinicians experienced in toxicology; a common adult teaching dose is 0.5–2 mg IV slowly, with cautious repeat dosing only under protocol and monitoring.
  • It is not a routine “antidote for any confusion”; toxicology advice and ECG assessment are essential.

Indications

  • Selected severe, confirmed antimuscarinic toxicity with delirium when supportive care and contraindication review permit.

Common side effects

  • Nausea, salivation and sweating: peripheral muscarinic excess.
  • Bradycardia: vagal muscarinic stimulation.
  • Abdominal cramping: increased GI smooth-muscle activity.

Serious adverse effects

  • Seizures: CNS ACh excess or inappropriate use can provoke convulsions.
  • Asystole/severe bradyarrhythmia: potentially fatal without monitoring/resuscitation readiness.
  • Bronchospasm: especially hazardous in underlying airway disease.

Contraindications and cautions

  • Avoid in suspected tricyclic-antidepressant poisoning with conduction delay/QRS widening, significant bradycardia or mechanical obstruction unless a toxicologist directs otherwise.
  • Obtain ECG and assess for seizures, asthma and mixed overdose before considering it.

Interactions

  • Other cholinergic agents add toxicity; drugs that slow conduction increase risk.
  • Antimuscarinics such as atropine are rescue treatment for troublesome muscarinic toxicity, guided by the team.

Monitoring and counselling

  • Continuous ECG, pulse oximetry, BP and seizure readiness are mandatory.
  • Use only in a monitored resuscitation-capable setting with toxicology/critical-care support.

4. Organophosphate poisoning: immediate clinical framework

Recognition

  • Exposure history plus miosis, secretions, wheeze, diarrhoea, fasciculation, weakness or altered consciousness should trigger suspicion.
  • A “dry patient” does not exclude poisoning: assess airway secretions, respiratory effort and perfusion repeatedly.

First actions

  • Protect staff: PPE and decontamination prevent secondary exposure.
  • Resuscitate: ABC, suction, oxygen, ventilation, cardiac monitoring and glucose.
  • Antidotes: atropine is titrated to drying of bronchial secretions/adequate ventilation; pralidoxime use and dose follow local toxicology protocol.
  • Escalate: urgent emergency/critical-care and poison-centre support; seizures need protocol-directed treatment.

5. OSCE safety checklist

Before giving a cholinomimetic At review Red flags
  • Confirm direct versus indirect mechanism and indication.
  • Exclude mechanical obstruction before bladder/GI stimulation.
  • Ask about asthma, ulcer, bradycardia, coronary disease, glaucoma and interacting drugs.
  • Check BP, pulse, wheeze, secretions, bowel/bladder response and muscle strength.
  • For MG: review swallowing, speech, respiratory effort and timing of weakness.
  • Breathlessness, bronchorrhoea, severe bradycardia or syncope.
  • New marked weakness/fasciculation, seizures or confusion.
  • Profuse secretions with pesticide exposure: treat as an emergency.

Knowledge check

  1. Why must bethanechol not be used until obstruction has been excluded?
  2. What makes pilocarpine useful for xerostomia but troublesome for night driving?
  3. Why is neostigmine paired with an antimuscarinic when reversing a non-depolarising block?
  4. How can cholinergic crisis be distinguished from undertreated myasthenia gravis?
  5. Why can physostigmine help antimuscarinic delirium when neostigmine cannot?

Further study

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