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Cyclooxygenase (COX), also known as prostaglandin-endoperoxide synthase (PTGS), is a key enzyme that catalyzes the conversion of arachidonic acid into prostaglandin H2, a critical precursor for prostaglandins, prostacyclin, and thromboxanes [UniProt: P23219]. It exists in two primary isoforms: COX-1, which is constitutively expressed and maintains physiological functions like gastric mucosal integrity and platelet aggregation, and COX-2, which is induced during inflammation [PubMed: PMC3081099]. These enzymes are the primary therapeutic targets for nonsteroidal anti-inflammatory drugs (NSAIDs), which are used to treat pain, fever, and inflammatory conditions such as rheumatoid arthritis [StatPearls: Physiology, Cyclooxygenase, 2023]. Inhibition of COX-2 provides the desired anti-inflammatory and analgesic effects, while inhibition of COX-1 is often associated with adverse effects like gastrointestinal ulcers and bleeding [NIH: MedlinePlus, NSAIDs]. Additionally, COX-2 is overexpressed in several cancers, making it a target for potential chemopreventive strategies [PubMed: 15034358]. However, selective COX-2 inhibitors have been linked to an increased risk of cardiovascular events, necessitating careful patient selection [PubMed: 15754037]. Overall, the cyclooxygenase pathway is central to both normal physiology and the pathophysiology of inflammation and pain.
Inhibition of the cyclooxygenase active site, preventing the conversion of arachidonic acid to prostaglandin G2 (PGG2) and subsequently prostaglandin H2 (PGH2) [StatPearls: NSAIDs, 2023].
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