Peritin

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Peritin

Medically reviewed

Laura Arias

Last updated on 22/12/2025

This page provides general, reference-level information compiled from official medical sources. It is not a substitute for professional medical advice, diagnosis, or treatment. For decisions about your health, please consult a qualified healthcare professional.

Overview of Peritin

Property Description
Active ingredient Dipyridamole
Form Tablet, Film-coated tablet
Pharmacological class Platelet aggregation inhibitor, Coronary vasodilator
Common purpose Anti-thrombotic and circulatory support
Origin Synthetic, Pyrimidopyrimidine derivative

What Type of Medicine is Peritin (Dipyridamole)?

Peritin is a prescription-only medicine whose active ingredient is Dipyridamole, a compound clinically recognized for its antiplatelet properties. Its pharmacological classification places it within the group of platelet aggregation inhibitors and coronary vasodilators. This dual-action drug is commonly used in contexts requiring long-term management of blood flow dynamics.

Composition, Form, and Origin of Peritin

The active substance, Dipyridamole, is a synthetic drug developed from the pyrimidopyrimidine compound chemical family. Peritin is intended for oral administration, typically supplied as a solid oral dosage form such as a tablet or film-coated tablet. The formulation provides Dipyridamole as a standalone therapy, distinguishing it from combination products. The drug's action involves both platelet inhibition and vasodilation, a unique characteristic of its functionality.

General Purpose and Function of Peritin

The general purpose of Peritin is to support cardiovascular health by reducing the tendency of platelets to stick together and by promoting circulation. This functionality is essential for mitigating risks associated with potential clotting and is a typical approach in the care of individuals requiring assisted blood flow. Its use is generally confined to contexts where maintaining unobstructed blood movement throughout the vascular system is a therapeutic goal.

What side effects are possible with Peritin?

Possible Side Effects and Safety Information

The official safety information for Peritin (Dipyridamole) organizes potential adverse effects into categories based on how frequently they are documented in clinical use and post-marketing surveillance.

Adverse Reaction Frequencies

Side effects that are classified as Very Common (ge 1/10), meaning they affect more than 1 in 10 patients, typically involve the nervous and gastrointestinal systems, including headache, dizziness, diarrhea, and nausea.

Effects classified as Common (ge 1/100 to <1/10) include vomiting, rash, muscle pain (myalgia), and the exacerbation of angina pectoris.

System-Organ Classes and Serious Reactions

The adverse reactions are grouped into System-Organ Classes such as Nervous System Disorders, Gastrointestinal Disorders, and Cardiac Disorders. The drug's antiplatelet action introduces a risk of hemorrhage (bleeding), and rare but serious reactions documented in official regulatory sources include hepatic failure and severe cardiovascular events, such as myocardial infarction and cardiac death.

Safety Patterns and Constraints

Safety notes specify that certain adverse effects, particularly headaches, may be more noticeable at the start of treatment but often become less frequent with continued long-term use. Population-specific cautions include the need for care in patients with pre-existing hypotension and hepatic insufficiency. Furthermore, the safety and effectiveness of Dipyridamole have not been established for use in pediatric patients under the age of 12.

Overdose and Emergency Response

Overdose and When to Seek Help

The information in this section outlines the official symptoms and mandated emergency actions for an overdose of Peritin (Dipyridamole), as documented in government regulatory sources.

Category Official Regulatory Documentation
Documented overdose presentations Flushes, feeling warm, sweating, restlessness, general weakness, dizziness, hypotension (low blood pressure), tachycardia (fast heart rate), anginal complaints.
Physiological systems affected Cardiovascular system, Systemic vascular system.
Emergency-response statements Symptomatic therapy is recommended; Gastric lavage should be considered; ECG monitoring is advised; Xanthine derivatives may reverse hemodynamic effects.
When immediate medical help is required Seek immediate medical attention; Contact a Poison Control Center immediately.

Overdose Classifications (High-Level)

Category Regulatory Statement/Classification
Severity classification Associated with signs of severe hemodynamic instability (hypotension) requiring specific intervention.
Overdose-context constraints Dialysis is not likely to be of benefit for enhanced removal due to high protein binding.

Official Overdose Statements:

  • Overdose may present with signs of severe vasodilation, including significant drops in blood pressure and an accelerated heart rate.
  • Treatment procedures officially described include the use of symptomatic and supportive therapy and the consideration of gastric lavage.
  • Xanthine derivatives may be administered to reverse the documented hemodynamic effects associated with overdosage.

Connection to the overall overdose profile (2–4 sentences): The official regulatory documents define the Dipyridamole overdose profile by focusing on the acute presentation of pronounced vasoactive and cardiovascular symptoms. This official definition of risk directly triggers the need for immediate, mandated help-seeking actions. The profile details specific emergency management procedures, including the use of a reversal agent and monitoring requirements, exactly as prescribed by official health authorities.

Therapeutic Uses of Peritin

What Peritin Treats: Main Uses and Benefits

Peritin (Dipyridamole) is commonly used to help manage complex issues related to the body's clotting ability and circulatory health. This medication is used across therapeutic domains where additional symptomatic support is needed to address the heightened risk of vascular blockage, contributing to easing the overall symptom load associated with serious cardiovascular conditions.

The primary therapeutic areas include secondary protection against ischemic stroke following an initial transient ischemic attack (TIA), prophylaxis against thromboembolism for patients with mechanical prosthetic heart valves, and its use as an adjunctive tool in cardiovascular diagnostics (pharmacological stress testing). The overall therapeutic role assists with maintaining functional stability by managing symptoms related to potential acute blockage.

“The treatment supports patients during difficult episodes by easing distress and assists with maintaining functional stability.”


Quick Fact: Management of Vascular Blockage Risk Dipyridamole is commonly used to support long-term management of high-risk clotting scenarios, assisting with symptomatic management where systemic support for blood flow dynamics is crucial.

Eligibility and Restrictions for Use

Who Can and Cannot Use Peritin?

The population eligibility for Peritin (Dipyridamole) is strictly defined by regulatory documents, distinguishing between groups for whom use is permitted, restricted, or prohibited.

Absolute Exclusion (Contraindication)

The medicine is contraindicated for any individual with a known hypersensitivity or allergy to Dipyridamole or any component of the formulation.

Age-Based Restrictions

Safety and effectiveness have not been established for the paediatric population below the age of 12 years. Its use in younger children is generally not recommended. For older adults, no specific dosage adjustment is typically required for the prolonged-release formulation.

Conditional Use and Caution

Explicit caution is required for patients with certain pre-existing conditions, including severe coronary artery disease (such as unstable angina or recent myocardial infarction), hypotension, and hepatic insufficiency. Use is conditional on monitoring for patients with conditions like Myasthenia Gravis.

Physiological Status Limitations

Due to inadequate evidence of safety, the medicine is generally not recommended during pregnancy and lactation, unless the benefit is considered essential. Additionally, patients scheduled for pharmacological stress testing must interrupt oral medication 48 hours prior to the procedure.

What should I know about interactions with other medicines?

Interactions with other medicines and products

The officially documented interaction profile for Peritin (Dipyridamole) details specific prohibitions and warnings primarily related to shared physiological effects and drug transport mechanisms.

Contraindicated and Restricted Combinations

Co-administration with Riociguat is formally contraindicated due to the risk of severe additive hypotension. Use with Abrocitinib is also prohibited during the initial three months of treatment, as regulatory data indicates an increased risk of hemorrhage.

Pharmacodynamic and Transporter Effects

Co-administration with other Anticoagulants (e.g., Warfarin) and Antiplatelet agents (e.g., Aspirin, NSAIDs) results in an additive pharmacodynamic effect, raising the risk of bleeding. Dipyridamole also increases the plasma levels and cardiovascular effects of adenosinergic agents (e.g., Adenosine).

Peritin is a documented inhibitor of the intestinal efflux transporters P-glycoprotein (P-gp) and BCRP. This action may lead to increased systemic exposure of co-administered medicines that are substrates for these transporters. Furthermore, the drug may counteract the effect of Cholinesterase Inhibitors, which is noted for potentially aggravating myasthenia gravis.

Timing Constraints for Diagnostic Procedures

Mandatory timing rules apply when Dipyridamole is used in conjunction with certain diagnostic tests. Oral Dipyridamole must be interrupted for 48 hours prior to pharmacological stress testing. Additionally, Xanthine Derivatives (e.g., Caffeine) must be discontinued for 24 hours before Dipyridamole thallium-201 stress testing.

Mechanism of Action

Histamine H1 Receptor Inverse Agonism

Peritin's primary action involves stabilizing the inactive state of the Histamine H1 receptor ( H1 R) via inverse agonism, thereby preventing the binding and action of the endogenous amine, histamine. This molecular interaction occurs primarily on peripheral tissues, modulating early signaling steps that shape systemic physiological outcomes. The H1 R blockade influences processes of vascular permeability and vasodilation, contributing to the regulation of signaling patterns associated with excessive mediator activity.

Central Nervous System Engagement

As a first-generation agent, Peritin also possesses the structural characteristic necessary for interaction with central nervous system (CNS) H1 receptors and, secondarily, muscarinic acetylcholine receptors ( mAChRs). This engagement with central pathways involves the modulation of neuronal activity within the wakefulness and arousal systems. This resulting modification of central histamine and cholinergic signaling contributes to a change in the overall physiological state.

Dosage and Administration Information

Peritin, which contains the active substance Dipyridamole, is administered via two approved routes: oral for long-term therapeutic use and intravenous (IV) for specific diagnostic procedures.

The medication's administration schedule depends entirely on the formulation. Immediate-release tablets are typically administered four times daily (Q.I.D.), with individual doses ranging from 75 mg to 100 mg. To maintain consistent drug levels, these tablets are generally taken at least one hour before or two hours after meals with water, although they may be taken with food to limit gastrointestinal upset.

The prolonged-release capsule is administered twice daily (B.I.D.) at a 200 mg strength of Dipyridamole per dose. These capsules must be swallowed whole and cannot be crushed or chewed, and should be taken **with or immediately following a meal.

For diagnostic purposes, the IV solution is administered as a single infusion with a total dose calculated at 0.57 mg/kg of body weight. This procedure requires the IV solution to be diluted in an appropriate solution prior to administration. A key procedural rule is that all oral dipyridamole products must be withheld for 24 to 48 hours before receiving the intravenous solution to ensure the integrity of the diagnostic test. Dosing has been established for pediatric patients 12 years and older, while no dosage adjustment is typically required for older adults receiving the prolonged-release formulation.

Recent Clinical Evidence

Research Evidence / Overview of Studies for Peritin

Evidence for Secondary Prevention of Stroke and TIA

The research for Peritin in the secondary stroke or TIA research context primarily focuses on the potential role of the medicine as an additional treatment alongside aspirin. Researchers have utilized large-scale Randomized Controlled Trials (RCTs) and comprehensive meta-analyses to examine how the combination of the extended-release formulation of dipyridamole with aspirin was studied in relation to measured patient outcomes. These studies monitored the occurrence of fatal and non-fatal stroke events over several years of observation.

Findings from key trials described measurements of recurrent vascular event frequencies in the combination therapy group over several years of observation. However, research that looked at immediate-release dipyridamole used alone, without aspirin, has generally reported variable or inconsistent measured changes in the rates of stroke recurrence. What remains less clear is the independent role of the standard formulation of dipyridamole when not used alongside aspirin; evidence exploring this specific regimen is limited.

Evidence for Preventing Clotting in Mechanical Heart Valves

Studies for Peritin in this context explore its potential role as an adjunct to standard treatment (like warfarin) to study the risk of blood clots after a patient has received a mechanical prosthetic heart valve. The research base consists mainly of Randomized Controlled Trials (RCTs) and systematic reviews that monitored the frequency of thromboembolic events (clots) and overall fatal outcomes. The research also closely examined the rates of adverse bleeding events as part of understanding the measured outcomes in this specific population.

Some analyses of these studies reported differences in the measured frequency of embolic events when dipyridamole was added to standard therapy compared to standard therapy alone. However, regulatory summaries note that the findings regarding the overall balance between the frequency of observed clotting events and the possibility of increased bleeding risks were complex and sometimes difficult to interpret definitively. The precise research findings comparing adding dipyridamole versus simply adjusting the dose of the standard anticoagulant are not fully established in recent clinical data.

Research Gaps and Areas of Uncertainty

The research highlights several areas where evidence remains limited or uncertain. Key limitations include the fact that the most persuasive data supporting secondary stroke research applies only to the extended-release formulation in combination with aspirin, leaving the stand-alone use less characterized. There is limited comparative evidence exploring whether the measured outcomes for this medicine differ from those observed with some of the newest treatment options. Additionally, data for certain patient groups, such as pediatric populations, are limited.

Frequently Asked Questions (FAQ)

Common questions about Peritin (FAQ)


Q: What are the official administration instructions if I miss a dose of Peritin?

Official product information generally states that if a dose is missed, patients may take it as soon as they remember. If it is nearly time for the next scheduled dose, however, the missed dose is typically skipped. Patients are advised not to double the dose to compensate for a missed one.


Q: Can I stop taking Peritin on my own if I feel better?

Regulatory guidance typically states that Dipyridamole should not be stopped without consulting a healthcare professional. This medication is often used for long-term management, and patients are cautioned that stopping treatment suddenly may increase the risk of serious vascular events.


Q: Can I drink alcohol while taking Peritin?

According to official product information, alcohol consumption is generally permitted while taking Dipyridamole, but caution is advised. Both the medication and alcohol may lower blood pressure, which could potentially lead to side effects like dizziness or lightheadedness when combined.


Q: What are the signs of an allergic reaction to Dipyridamole?

The official safety information documents that signs of a serious allergic reaction, or hypersensitivity, may include difficulty breathing (bronchospasm) or swelling of the face, lips, tongue, or throat. Other signs can include skin reactions such as rash or hives (urticaria). If these symptoms are experienced, patients should seek immediate medical help.


Q: What is the brand name of the extended-release combination product that contains Dipyridamole and Aspirin?

Studies and regulatory summaries that discuss the extended-release combination product containing both Dipyridamole and Aspirin refer to it by the brand name Aggrenox.


Q: Is Peritin used for heart valve clotting prevention and what is the evidence?

Regulatory information indicates that Dipyridamole has an approved use as an add-on treatment (adjunct) to standard anticoagulant therapy, such as Warfarin. This use is specifically for the prevention of blood clots (thromboembolic events) after a patient has undergone mechanical prosthetic heart valve replacement surgery.


Q: Can I take Peritin if I have Myasthenia Gravis?

Official product information notes that Dipyridamole may counteract the effect of certain medications called cholinesterase inhibitors, which are used to treat Myasthenia Gravis (MG). This action is noted for potentially aggravating the symptoms of MG. For patients with this condition, use of the drug is noted as requiring caution.


Q: What is the maximum duration I can take Peritin?

Official patient information indicates that Dipyridamole is frequently prescribed for long-term use in managing chronic conditions. The appropriate continuation of treatment should be determined by the prescribing healthcare professional.

How should Peritin be stored and disposed of?

Storage and Protection Requirements

Peritin (Dipyridamole) must be stored at a Controlled Room Temperature, defined by regulatory standards as 20 C to 25 C (68 F to 77 F). The product must be kept from freezing to maintain its stability.

To prevent degradation, the tablets must remain in the original container and be kept tightly closed to protect them from excess moisture and heat. All medication must be stored securely out of the sight and reach of children and pets as a mandatory safety requirement.

Disposal Instructions

Official disposal protocols recommend utilizing a medicine take-back program or an authorized collection site as the best option for unused or expired Peritin. If a take-back program is unavailable, the medication can be discarded in the household trash by mixing the tablets with an undesirable substance, placing the mixture in a sealed container, and then disposing of it with regular waste, in accordance with local requirements.

Attention! Always consult to a doctor or pharmacist before using pills or medicines.

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