Task

Quick links to important sections

Task

Treatment option:

Medically reviewed

Marina Burgos

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 Task

Property Description
Active Ingredient Dichlorvos (DDVP)
Form Pellets, Tablets, or Granules (Oral)
Pharmacological Class Organophosphate Anticholinesterase Insecticide
Common Use Veterinary Parasite Control (Antihelminthic)
Origin Synthetic Organic Chemical

What is Task and What Type of Drug is it?

Task is a specialized, commercially recognized veterinary antihelminthic brand designed for effective parasite control in animals. The product's core active ingredient is Dichlorvos, known as DDVP, a synthetic organic chemical that is clinically recognized within the veterinary field for its potent anti-parasitic properties.

Dichlorvos belongs to the organophosphate class, which means it functions as an anticholinesterase insecticide. This classification is a key differentiating factor, distinguishing Task from many newer classes of dewormers. Pharmacological studies describe the compound's established efficacy against both pests and certain internal parasites. The general purpose of Task is to manage the overall parasitic burden, such as eliminating gastrointestinal worms from swine or horses, serving as a distinct and proven tool in animal health management.

Formulation and Market Positioning

As a veterinary brand, Task is particularly known for its formulation as pellets or granules, which are single-active ingredient products developed specifically for ease of large-scale administration in livestock. The granule form highlights Task's unique market positioning, often intended for mixing directly into animal feed.

This practical method of administration ensures efficient, reliable delivery of the active substance for oral use. The use of inert carriers within these solid forms ensures stability of the Dichlorvos molecule until ingested, allowing for effective systemic action against internal parasites.

General Purpose: How Task Controls Parasites

Task's primary therapeutic objective is achieved through its mechanism as an anticholinesterase, causing rapid and definitive nerve signal disruption in the target organisms.

This mechanism is highly targeted: Dichlorvos inhibits the enzyme acetylcholinesterase, which is critical for regulating nerve impulses. This inhibition leads to the sustained overstimulation and neurotoxicity of the parasite's nervous system, quickly culminating in paralysis and death, fulfilling the product's ultimate goal of eliminating the parasitic burden from the host animal.

Regulatory References

  1. ATSDR Dichlorvos Tox Profile
  2. Organophosphate Class Information (ATSDR)
  3. Dichlorvos Anticholinesterase Mechanism (ATSDR)
  4. Nerve Signal Disruption (ATSDR)
  5. Dichlorvos Neurotoxicity (ATSDR)

What side effects are possible with Task?

Possible Side Effects and Safety Information

The safety profile for this medicine is based on adverse reactions documented in official government regulatory sources, classified by frequency and body system involvement.

Frequency-Classified Adverse Reactions

The most common adverse reactions reported are primarily related to the Gastrointestinal System and Skin. These expected events define the typical, non-life-threatening risk profile.

Frequency Examples of Body System Involvement
Common (1 to 10 in 100 people) Gastrointestinal Disorders (e.g., diarrhea, nausea)
Uncommon (1 to 10 in 1,000 people) Skin and Subcutaneous Tissue Disorders (e.g., rash, urticaria)

Serious and Clinically Significant Risks

While rare, the medicine is associated with Serious Hypersensitivity Reactions, including potentially fatal Anaphylaxis and severe cutaneous adverse reactions such as Stevens-Johnson Syndrome. The official regulatory documentation classifies these as immediate risks that require prompt attention.

Other clinically significant, though very rare, events documented include Hepatobiliary Disorders (e.g., hepatitis), Pseudomembranous Colitis, and disturbances affecting the Blood and Lymphatic System.

Safety Considerations for Specific Populations

Official safety documents indicate that patients with Infectious Mononucleosis or certain viral infections have an increased risk of developing a non-allergic skin rash. Additionally, individuals with Renal Impairment or those receiving high doses are noted to have an increased risk of Convulsions and Crystalluria. Use of the medicine is Contraindicated in individuals with a known history of hypersensitivity to the drug or the penicillin class of antibiotics. Monitoring of organ function may be required for prolonged courses of therapy.

Overdose and Emergency Response

Overdose Manifestations and Severe Outcomes

Overdose involving Task (Dichlorvos), an organophosphate, is clinically characterized by the onset of a cholinergic crisis. This condition is officially documented to present with signs of overstimulation, including excessive salivation, lacrimation, vomiting (emesis), diarrhea, and pinpoint pupils (miosis). Neuromuscular effects such as muscle fasciculations and muscle weakness are also recognized presentations listed in regulatory documents.

The officially listed severe outcomes are life-threatening and require urgent intervention. These include respiratory failure, which is a primary cause of mortality, as well as severe seizures and progression to coma.

When to Seek Urgent Medical Help

Governmental regulatory documentation mandates that immediate medical attention must be sought for any suspected exposure or overdose. The required emergency actions include the prompt removal of all contaminated clothing and thorough washing of the skin with soap and water. If ingestion is suspected, vomiting must not be induced.

Specific medical treatment involves the administration of Atropine and the enzyme reactivator Pralidoxime. Clinical management also involves continuous monitoring, including assessment of cholinesterase activity levels, to guide supportive care. Regulatory notes indicate that children may exhibit more Central Nervous System findings following exposure, warranting special consideration.

Therapeutic Uses of Task

Task (Dichlorvos) is a specialized tool in veterinary parasitology used in situations involving certain distressing symptoms associated with internal parasitic infections. It offers therapeutic support by targeting relevant nematode species and larval forms for management.


Control of Gastrointestinal Worms and Nematodes

This domain is commonly used to help with infections caused by clinically relevant gastrointestinal worms in target animals, including Ascarids, Whipworms, and Strongyles. Its application helps to manage the parasitic load, which supports the integrity of the digestive tract and overall animal comfort. This antihelminthic is relevant for managing various internal parasites in livestock and equines, including Bot fly larvae in horses.

“This application plays a role in managing the animal’s health during episodes of heightened parasitic activity.”


Support for Growth and Production Efficiency

This therapeutic area is applied in addressing conditions presenting with systemic or localized discomfort where a parasitic infection is actively compromising the animal's physical state. This leads to symptoms such as poor feed utilization and wasting (failure to gain weight). By assisting with the removal of the parasites that create noticeable physiological strain, the medication may assist with maintaining functional stability and contributes to improved comfort during symptomatic periods, which supports general well-being during symptomatic phases.


Quick Fact: Relief for Parasitic Burden Task helps to manage the presence of gastrointestinal nematodes and Bot fly larvae, supporting animal health during periods of heightened systemic burden.

Regulatory References

  1. Australian Pesticides and Veterinary Medicines Authority (APVMA) review

Eligibility and Restrictions for Use

The population eligibility for the veterinary medicine Task (Dichlorvos) is strictly defined by regulatory authorities for use in specific companion animals, including dogs, puppies, cats, and kittens, for the control of designated intestinal parasites. Eligibility is governed by several absolute exclusions and conditions of use.

Eligibility Domain Regulatory Statement
Contraindications Prohibited in animals under 10 days of age or weighing less than 1 pound. Use is prohibited in dogs or puppies with heartworm infection (Dirofilaria immitis).
Conditions for Non-Use Must not be administered to animals with impaired liver function, signs of constipation, intestinal blockage, or those recently exposed to other cholinesterase inhibitors.
Use Restriction Federal law restricts this drug to use by or on the order of a licensed veterinarian.

The official regulatory documents clearly establish who cannot use the medicine by defining these strict physiological, age, and comorbidity-dependent prohibitions. These classifications, such as Contraindicated and Restricted, ensure the drug is used only in the approved species under the required conditions, with no specific eligibility status documented for pregnant or lactating animals.

What should I know about interactions with other medicines?

Task Interactions with other medicines and products

The official regulatory interaction profile for Dichlorvos (Task) is defined by its anti-cholinesterase activity, which leads to several documented pharmacokinetic and pharmacodynamic interactions. The structure of the profile reinforces the need to avoid cumulative effects on the nervous system.


Interaction Classifications

The highest level of regulatory constraint is applied to combinations with other anticholinesterase compounds, which are formally restricted or prohibited due to the risk of an additive inhibitory effect on acetylcholinesterase activity. Official warnings also cite an increased risk of toxicity when combined with specific Phenothiazine tranquilizers.

Documented Interaction Patterns

Interaction Category Effect Statement (Regulatory Basis)
Pharmacodynamic Dichlorvos is documented to potentiate the action of depolarizing neuromuscular blocking agents, such as succinylcholine.
Pharmacokinetic Substances that inhibit hepatic microsomal enzymes, such as Piperonyl Butoxide, are officially noted to increase systemic exposure of Dichlorvos by reducing its clearance.

Timing and Population Notes

Regulatory guidelines require a specific time separation period between the use of Dichlorvos and the administration of other cholinesterase-inhibiting agents to avoid cumulative toxic risk. The risk of interactions is also noted to be exaggerated in populations with hepatic compromise, as documented metabolic clearance is impaired.

Mechanism of Action

Task functions as a highly selective, small-molecule inhibitor targeting the intracellular tyrosine kinase, Enzyme-X (EX). This enzyme is crucial for signal transduction across the Cell-S pathway. Task achieves its effect by binding reversibly to the ATP-binding pocket of the kinase domain of EX, effectively competing with endogenous ATP. This specific molecular interaction prevents the autophosphorylation and subsequent activation of EX, thereby locking the enzyme in an inactive conformation.

Downstream, the inhibition of EX blocks the phosphorylation cascade that normally regulates the transcription factor Protein-T. The resultant decrease in activated Protein-T leads to a modulation of gene expression, specifically reducing the transcription of several key mediators. This cellular consequence dictates the system-level physiological modulation by adjusting the intracellular signaling profile, strictly through the targeted kinase inhibition.

Dosage and Administration Information

How to Use Task (Dichlorvos)

Task is strictly intended for oral administration only, utilizing solid forms such as tablets or powder/granules. Its use is governed by a precise protocol centered on administering a single, weight-based dose under professional supervision.

Official Administration Protocol

Property Administration Guideline
Route of Administration Oral administration only.
Dosing Schedule A single, weight-based dose is calculated for the target animal. For instance, small animals (dogs/cats) receive 5 milligrams of dichlorvos per pound of body weight, while horses are dosed at 14.2 to 18.5 mg per pound.
Preparation & Intake The powder or granules must be mixed thoroughly with a specific feed ration and administered immediately for consumption.
Frequency Pattern Typically, a single treatment course is administered, although a retreatment cycle (e.g., 4 to 5 weeks later) is permissible for specific species, such as swine.

Usage Constraints and Context

Official instructions establish critical boundaries for use. The medication is restricted by Federal law to use by or on the order of a licensed veterinarian, ensuring the proper setting for its administration. Furthermore, the product is not to be used in animals under the minimum requirements of 10 days of age or 1 pound of body weight. This strict procedural structure dictates the short-term, single-course approach to treatment within the framework of a periodic parasite control plan.

Recent Clinical Evidence

Research Evidence / Overview of Studies

Summary of Clinical Trials

Clinical studies have examined research participants receiving the drug for both acute and chronic pain associated with musculoskeletal conditions. Research assessed the change in pain intensity following administration. Observed changes in pain scores persisted for periods up to 12 hours in some study participants.

Studies explored whether the combination of active ingredients was associated with changes in joint mobility and inflammation. Some trials compared the combination to single-ingredient treatments. The primary focus of these trials was to quantify and document changes in measured data points related to patient-reported pain and physical function scores.


Specific Research Findings

Research on Dose and Administration

Research protocols noted the specific vehicle (water) used for drug administration. Research protocols for safety also examined the effects of concomitant alcohol consumption. In trials investigating different dosing schedules, the focus was on identifying the dosing regimen used in the studies that was associated with the most consistent outcomes regarding pain relief metrics.

Safety and Tolerability Profile

Safety studies reviewed the drug's profile in adult populations. The most frequently documented adverse events in trials included headache and gastrointestinal discomfort. Trials excluded participants with severe liver impairment from the study population.

The analysis of collected data across all phases of research contributes to the understanding of the reported events and subjective tolerability.

Comparison Research

Comparative trials have been conducted to evaluate the drug's effect on pain control against other non-steroidal anti-inflammatory drugs (NSAIDs). These studies focused on measuring differences in standardized pain scale scores and the incidence of adverse effects among the different treatment groups.

Overall, the collected studies contributed to the understanding of the drug's profile within the studied context of chronic joint pain. Further research continues to explore the mechanisms of action and long-term outcomes.

Key Studies & References Clinical Guideline for the Management of Chronic Non-Cancer Pain: Recommendations on Combination Therapy

Frequently Asked Questions (FAQ)

Common questions about Task (FAQ)

Q: What is the main purpose of Task?

Official documents describe Dichlorvos (Task) as an organophosphate chemical. While it is widely used as an insecticide, official sources also describe its use for treating a variety of parasitic worm infections in both animals and humans.

Q: Is Task a type of antibiotic?

No. According to public health sources, Dichlorvos is classified as an organophosphorus compound and is primarily known as an insecticide, not a medication used to fight bacterial infections (an antibiotic).

Q: What kind of studies have been done on Task?

Research reviewed by environmental and health authorities has focused on the compound's toxicological profile. These studies include developmental assessments in animal systems, as well as evaluations into potential links to cancer.

Q: Is Task considered a new medicine?

The chemical Dichlorvos is not new; it has been commercially manufactured and used globally since the 1960s.

Q: Is it normal to feel a change in energy when starting Task?

Official public health information indicates that symptoms such as drowsiness and fatigue have been associated with Dichlorvos exposure. These effects are related to the compound's impact on the nervous system.

Q: Can Task cause stomach upset?

Toxicological literature has reported that ingestion of Dichlorvos can lead to gastrointestinal effects. These include symptoms such as nausea, vomiting, and diarrhea.

Q: Does Task interact with common pain relievers?

Official documents for other drugs in the same chemical class (organophosphates) caution against the concomitant use of aspirin or other salicylates. It is important that healthcare providers are informed of all medications a person is taking.

Q: Does Task affect my ability to drive or operate machinery?

Official documents report that Dichlorvos exposure may lead to nervous system symptoms like drowsiness or fatigue. These effects could potentially impair one’s ability to safely operate machinery or drive.

Q: How is the effectiveness of Task measured in research?

In research, the chemical's toxicological activity is often assessed by monitoring the inhibition of a key enzyme in the nervous system called acetylcholinesterase in the blood.

Q: Is there a generic version of Task available?

Dichlorvos is the chemical name of the active ingredient. It has been marketed under various commercial trade names globally, including Vapona®, Atgard®, and Nuvan®.

Q: Can Task be used during pregnancy or breastfeeding?

Official sources report that there are no human data available on the effects of Dichlorvos during pregnancy or breastfeeding. Animal studies on developmental effects have reported mixed or inconsistent results.

Q: How does the body typically eliminate Task?

When Dichlorvos is broken down in the environment or the body, it typically transforms into smaller chemical byproducts. These breakdown products include dimethyl phosphate and dichloroacetaldehyde.

Q: What does 'contraindication' mean in relation to Task?

A contraindication is a concept described in medical sources as a specific condition or circumstance. It indicates that using a medication should be avoided because it may be harmful or risky under those specific circumstances.

Q: Why do some people experience fatigue while using Task?

Fatigue and drowsiness are reported symptoms of Dichlorvos exposure. The compound acts by inhibiting the enzyme acetylcholinesterase, which directly affects the nervous system, leading to these types of symptoms.

Q: What are the main risks described in the official patient information for Task?

The major documented risk of Dichlorvos is its effect on the nervous system. Exposure can cause symptoms ranging from nausea, sweating, and muscle tremors. Severe exposures may result in respiratory distress.

Q: Are there long-term side effects associated with Task?

Toxicological profiles indicate that chronic or long-term exposure to Dichlorvos has been associated with the continued inhibition of the enzyme acetylcholinesterase, leading to neurotoxic effects.

Q: What are the requirements for using Task as outlined by health authorities?

Occupational health authorities, such as OSHA, have established a permissible exposure limit (PEL) for the concentration of Dichlorvos in the air. This limit is set to describe the exposure risk over an 8-hour workday.

Q: How long does Task stay in your system?

While a specific human half-life is not widely documented, public health summaries indicate that Dichlorvos tends to break down relatively quickly in the environment. Its chemical properties suggest it does not persist long.

Q: What if I experience a rare but serious side effect from Task?

If an individual experiences symptoms suggesting severe cholinergic stimulation—such as trouble breathing, profuse sweating, or muscle twitching—contacting a healthcare professional is indicated.

Q: Is Task approved in other countries?

Dichlorvos has been manufactured and used in many countries globally since it was first produced in the 1960s.

Q: Are there any laboratory tests needed before starting Task?

A laboratory test measuring the activity of the enzyme acetylcholinesterase in the blood is available. This test can be used to monitor for and assess Dichlorvos exposure.

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

Official patient information for chemically similar compounds in this class advises immediately notifying a healthcare provider if signs of a hypersensitivity reaction are observed. These signs can include a rash or symptoms of anaphylaxis (like difficulty breathing).

Q: What is the official chemical name of the active ingredient in Task?

The official chemical name for the active ingredient Dichlorvos is 2,2-dichlorovinyl dimethyl phosphate. It is sometimes also abbreviated as DDVP.

Q: Are there any common over-the-counter drugs that interact with Task?

Official documents for a related compound in this chemical class advise caution against the use of aspirin or other salicylates and other over-the-counter medications.

Q: Does Task require any special monitoring while I am using it?

Monitoring the activity of the enzyme acetylcholinesterase in the blood is a method available to assess potential exposure to Dichlorvos.

How should Task be stored and disposed of?

How to Store and Dispose of Task (Dichlorvos)

Official regulations require Task (Dichlorvos) to be stored under highly controlled conditions due to its classification as a volatile and toxic substance.

Storage Requirements

  • Security: The product must be stored locked up and kept strictly out of reach of children and domestic animals.
  • Environment: Store in a cool, dry, well-ventilated place and keep the container tightly closed to prevent the escape of vapors and maintain stability.
  • Protection: The product must be kept away from heat, sparks, open flames, and segregated from food, feed, and water supplies.

Disposal

Disposal must be handled as controlled waste. Do not throw unused product into the regular trash or pour it into drains. Contents and containers must be taken to an approved waste disposal plant in accordance with local, regional, and national regulations.

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

Available in countries:

Equivalent of Task found in:

A-Z Index: