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Home > Active Pharmaceutical Ingredients > Antipyretic Analgesics (Find 170 items)

Antipyretic Analgesics

Ampiroxicam

(99464-64-9)
Prodrug of Piroxicam. Anti-inflammatory.

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Neochlorogenic acid

(906-33-2)
Neochlorogenic acid is a natural polyphenolic compound found in dried fruits and other plants. Neochlorogenic acid inhibits the production of TNF-α and IL-1β. Neochlorogenic acid suppresses iNOS and COX-2 protein expression. Neochlorogenic acid also inhibits phosphorylated NF-κB p65 and p38 MAPK activation.

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Phenylbutazone sodium

(129-18-0)
Antipyretic analgesics, used to treat rheumatic and rheumatoid arthritis and gout

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2-(Aminomethyl)phenol

(932-30-9)
A potent γ-ketoaldehyde scavenger that has been shown to protects cardiac sodium channel (NaV1.5) from oxidant-induced inactivation

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Fenbufen

(36330-85-5)
muscle relaxant (smooth)

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Feprazone

(30748-29-9)
Feprazone is a anti-inflammatory agent used in the management of inflammatory or degenerative joint diseases.

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Antipyretic Analgesics refer to drugs that can restore the body temperature of fever patients to normal, but have no effect on the body temperature of normal people. Such drugs also have moderate analgesic effects, but their strength is not as strong as morphine and its synthetic substitutes. Commonly used Antipyretic Analgesics can be divided into salicylic acid, aniline and pyrazolone according to their chemical structure. The "ECHEMI Antipyretic Analgesics" list mainly supplies APIs for such drugs.

Frequently Asked Questions

What are Antipyretic Analgesics and how do they work?

Antipyretic analgesics are medications that reduce fever (antipyretic effect) and relieve pain (analgesic effect). Common examples include acetaminophen (paracetamol), ibuprofen, and aspirin. These drugs primarily work by inhibiting the production of prostaglandins—chemicals in the body that promote inflammation, pain, and fever—through the suppression of cyclooxygenase (COX) enzymes. Understanding their mechanism helps in selecting the right medication based on patient needs and safety profiles.

What is the difference between antipyretic analgesics and NSAIDs?

While all NSAIDs (Non-Steroidal Anti-Inflammatory Drugs) like ibuprofen and naproxen are antipyretic analgesics, not all antipyretic analgesics are NSAIDs. For example, acetaminophen reduces fever and pain but has minimal anti-inflammatory effects and does not significantly inhibit COX-1 or COX-2 in peripheral tissues. In contrast, NSAIDs provide strong anti-inflammatory action along with antipyretic and analgesic effects. This distinction is crucial when choosing treatment for conditions involving inflammation versus simple pain or fever.

Are there safety concerns when using antipyretic analgesics?

Yes, antipyretic analgesics can pose safety risks if misused. Acetaminophen overdose may cause severe liver damage, while long-term or high-dose use of NSAIDs like ibuprofen can lead to gastrointestinal bleeding, kidney issues, or cardiovascular complications. It’s essential to follow recommended dosages, avoid combining multiple products containing the same active ingredient, and consult a healthcare provider—especially for patients with pre-existing conditions such as liver disease, ulcers, or heart problems.

Which antipyretic analgesic is safest for children?

Acetaminophen (paracetamol) and ibuprofen are generally considered safe for children when used at appropriate doses based on weight and age. Acetaminophen is often preferred for mild fever or pain due to its gentler effect on the stomach, while ibuprofen may be more effective for inflammatory conditions like sore throats or injuries. Aspirin should be avoided in children and teenagers due to the risk of Reye’s syndrome, a rare but serious condition. Always use pediatric formulations and consult a pediatrician before administration.

How are antipyretic analgesics used in pharmaceutical manufacturing?

In pharmaceutical manufacturing, antipyretic analgesics serve as active pharmaceutical ingredients (APIs) in a wide range of over-the-counter (OTC) and prescription medications. They are formulated into tablets, capsules, syrups, and injectables for global distribution. Manufacturers must adhere to strict Good Manufacturing Practices (GMP), ensure raw material quality, and conduct rigorous stability and purity testing. Reliable sourcing of high-purity APIs and intermediates is critical to meet regulatory standards from agencies like the FDA and EMA.

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