Drug Reference

Atropine

Belladonna alkaloids, tertiary amines

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Fact box

Therapeutic class
Belladonna alkaloids, tertiary amines
Action class
Anticholinergic
Mechanism
Cholinergic Muscarinic Antagonists
Habit forming
No
Availability
Prescription (Rx)

Brand names

AtropenDonnatalDuodoteIsopto AtropineLomotilMotofenPhenohytro

Available as

0.00388 MG/ML · Oral Solution0.0194 MG · Oral Tablet0.0582 MG · Extended Release Oral Tablet0.04 MG · Extended Release Oral Tablet0.54 MG/ML · Injectable Solution0.3 ML0.7 ML10 ML · Prefilled Syringe5 ML · Prefilled Syringe0.005 MG/MG · Ophthalmic Ointment0.005 MG/ML · Oral Solution0.01 MG/MG · Ophthalmic Ointment0.025 MG · Oral Tablet10 MG/ML · Ophthalmic Solution5 MG/ML · Ophthalmic Solution0.4 MG · Oral Tablet5 ML · Injection0.3 MG/ML · Injectable Solution0.31 MG/ML · Ophthalmic Solution0.4 MG/ML · Injectable Solution0.6 MG · Oral Tablet0.6 MG/ML · Injectable Solution0.62 MG/ML · Ophthalmic Solution1 ML · Injection

FDA label sections are from openFDA and may not reflect the most recent labeling — confirm against the current DailyMed label.

Uses
1 INDICATIONS & USAGE Atropine Sulfate Injection, USP, is indicated for temporary blockade of severe or life threatening muscarinic effects, e.g., as an antisialagogue, an antivagal agent, an antidote for organophosphorus or muscarinic mushroom poisoning, and to treat bradyasystolic cardiac arrest.
How it works
12 CLINICAL PHARMACOLOGY 12.1 Mechanism of Action Atropine is an antimuscarinic agent since it antagonizes the muscarine-like actions of acetylcholine and other choline esters. Atropine inhibits the muscarinic actions of acetylcholine on structures innervated by postganglionic cholinergic nerves, and on smooth muscles which respond to endogenous acetylcholine but are not so innervated. As with other antimuscarinic agents, the major action of atropine is a competitive or surmountable antagonism which can be overcome by increasing the concentration of acetylcholine at receptor sites of the effector organ (e.g., by using anticholinesterase agents which inhibit the enzymatic destruction of acetylcholine). The receptors antagonized by atropine are the peripheral structures that are stimulated or inhibited by muscarine (i.e., exocrine glands and smooth and cardiac muscle). Responses to postganglionic cholinergic nerve stimulation also may be inhibited by atropine, but this occurs less readily than with responses to injected (exogenous) choline esters. 12.2 Pharmacodynamics Atropine-induced parasympathetic inhibition may be preceded by a transient phase of stimulation, especially on the heart where small doses first slow the rate before characteristic tachycardia develops due to paralysis of vagal control. Atropine exerts a more potent and prolonged effect on heart, intestine and bronchial muscle than scopolamine, but its action on the iris, ciliary body and certain secretory glands is weaker than that of scopolamine. Unlike the latter, atropine in clinical doses does not depress the central nervous system but may stimulate the medulla and higher cerebral centers. Although mild vagal excitation occurs, the increased respiratory rate and (sometimes) increased depth of respiration produced by atropine are more probably the result of bronchiolar dilatation. Accordingly, atropine is an unreliable respiratory stimulant and large or repeated doses may depress respiration. Adequate doses of atropine abolish various types of reflex vagal cardiac slowing or asystole. The drug also prevents or abolishes bradycardia or asystole produced by injection of choline esters, anticholinesterase agents or other parasympathomimetic drugs, and cardiac arrest produced by stimulation of the vagus. Atropine also may lessen the degree of partial heart block when vagal activity is an etiologic factor. In some patients with complete heart block, the idioventricular rate may be accelerated by atropine; in others, the rate is stabilized. Occasionally a large dose may cause atrioventricular (A-V) block and nodal rhythm. Atropine Sulfate Injection, USP in clinical doses counteracts the peripheral dilatation and abrupt decrease in blood pressure produced by choline esters. However, when given by itself, atropine does not exert a striking or uniform effect on blood vessels or blood pressure. Systemic doses slightly raise systolic and lower diastolic pressures and can produce significant
How to use / dosing
2 DOSAGE & ADMINISTRATION 2.1 General Administration Parenteral drug products should be inspected visually for particulate matter and discoloration prior to administration, whenever solution and container permit. Do not administer unless solution is clear and seal is intact. Each vial is intended for single dose only. Discard unused portion. For Intravenous administration. Titrate based on heart rate, PR interval, blood pressure and symptoms. 2.2 Adult Dosage 2.3 Pediatric Dosage Dosing in pediatric populations has not been well studied. Usual initial dose is 0.01 to 0.03 mg/kg. 2.4 Dosing in Patients with Coronary Artery Disease Limit the total dose of atropine sulfate to 0.03 to 0.04 mg/kg [see WARNINGS AND PRECAUTIONS (5.1 )]. DOSAGE
Side effects
6 ADVERSE REACTIONS The following adverse reactions have been identified during post-approval use of atropine sulfate. Because these reactions are reported voluntarily from a population of uncertain size, it is not always possible to reliably estimate their frequency or establish a causal relationship to drug exposure. Most of the side effects of atropine are directly related to its antimuscarinic action. Dryness of the mouth, blurred vision, photophobia and tachycardia commonly occur. Anhidrosis can produce heat intolerance. Constipation and difficulty in micturition may occur in elderly patients. Occasional hypersensitivity reactions have been observed, especially skin rashes which in some instances progressed to exfoliation.

Safety advice

Conservative summary derived from FDA labeling — defaults to “consult your doctor” unless the label is explicit. Not a substitute for your clinician’s advice.

PregnancyConsult your doctor
8 USE IN SPECIFIC POPULATION 8.1 Pregnancy Pregnancy Risk Summary There are risks to the mother and fetus associated with untreated severe or life-threatening muscarinic events (see Clinical Considerations).…
BreastfeedingConsult your doctor
…8.2 Lactation Risk Summary Trace amounts of atropine have been reported in human milk after oral intake.…
AlcoholNo information
No specific information in the FDA label.
DrivingNo information
No specific information in the FDA label.
KidneyConsult your doctor
…dosing range, reflecting the greater frequency of decreased hepatic, renal, or cardiac function, and of concomitant disease or other drug therapy.…
LiverConsult your doctor
…of the dosing range, reflecting the greater frequency of decreased hepatic, renal, or cardiac function, and of concomitant disease or other drug therapy.…
Warnings & precautions
5 WARNINGS AND PRECAUTIONS 5.1 Tachycardia When the recurrent use of atropine is essential in patients with coronary artery disease, the total dose should be restricted to 2 to 3 mg (maximum 0.03 to 0.04 mg/kg) to avoid the detrimental effects of atropine-induced tachycardia on myocardial oxygen demand. 5.2 Acute Glaucoma Atropine may precipitate acute glaucoma. 5.3 Pyloric Obstruction Atropine may convert partial organic pyloric stenosis into complete obstruction. 5.4 Complete Urinary Retention Atropine may lead to complete urinary retention in patients with prostatic hypertrophy. 5.5 Viscid Plugs Atropine may cause inspissation of bronchial secretions and formation of viscid plugs in patients with chronic lung disease.
Contraindications
4 CONTRAINDICATIONS None.
Interactions (label text — not an interaction checker)
7 DRUG INTERACTIONS 7.1 Mexiletine Atropine Sulfate Injection decreased the rate of mexiletine absorption without altering the relative oral bioavailability; this delay in mexiletine absorption was reversed by the combination of atropine and intravenous metoclopramide during pretreatment for anesthesia.
Overdose
10 OVERDOSAGE Excessive dosing may cause palpitation, dilated pupils, difficulty in swallowing, hot dry skin, thirst, dizziness, restlessness, tremor, fatigue and ataxia. Toxic doses lead to restlessness and excitement, hallucinations, delirium and coma. Depression and circulatory collapse occur only with severe intoxication. In such cases, blood pressure declines and death due to respiratory failure may ensue following paralysis and coma. The fatal adult dose of atropine is not known. In pediatric populations, 10 mg or less may be fatal. In the event of toxic overdosage, a short acting barbiturate or diazepam may be given as needed to control marked excitement and convulsions. Large doses for sedation should be avoided because central depressant action may coincide with the depression occurring late in atropine poisoning. Central stimulants are not recommended. Physostigmine, given as an atropine antidote by slow intravenous injection of 1 to 4 mg (0.5 to 1 mg in pediatric populations), rapidly abolishes delirium and coma caused by large doses of atropine. Since physostigmine is rapidly destroyed, the patient may again lapse into coma after one to two hours, and repeated doses may be required. Artificial respiration with oxygen may be necessary. Ice bags and alcohol sponges help to reduce fever, especially in pediatric populations. Atropine is not removed by dialysis.
Current FDA labels (DailyMed)

51 marketed products on record (RxNorm)

Reference only — not clinical advice. Verify against current FDA labeling and consult a licensed provider. About half of pediatric drug use is off-label and is not reflected in FDA labels; absence of pediatric information does not mean a medicine is unused or unsafe in children.