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Cyclooxygenase (COX), formally known as prostaglandin-endoperoxide synthase (PTGS), is a bifunctional enzyme that plays a critical role in the biosynthesis of prostanoids, including prostaglandins, prostacyclin, and thromboxane [1][2]. It catalyzes the conversion of arachidonic acid into prostaglandin H2 (PGH2) through two distinct steps: a cyclooxygenase reaction and a peroxidase reaction [3]. In humans, the enzyme exists in two main isoforms: COX-1, which is constitutively expressed in most tissues to maintain physiological functions like gastric mucosal integrity and platelet aggregation, and COX-2, which is primarily induced by inflammatory stimuli [1][4]. Because prostanoids are key mediators of pain, fever, and inflammation, COX enzymes are the primary therapeutic targets for nonsteroidal anti-inflammatory drugs (NSAIDs) [1]. Non-selective NSAIDs like ibuprofen and naproxen inhibit both isoforms, whereas selective inhibitors like celecoxib target COX-2 to minimize gastrointestinal side effects associated with COX-1 inhibition [5]. However, modulation of these enzymes requires careful management due to potential risks, including gastrointestinal bleeding and adverse cardiovascular events such as myocardial infarction or stroke [1][5]. Beyond its role in acute inflammation, COX activity is also implicated in the progression of certain cancers, particularly colorectal cancer, and neurodegenerative diseases [2][4]. The "unspecified isoform" designation typically refers to pharmacological contexts where a drug's activity across COX-1 and COX-2 is either combined or not specifically distinguished [1].
Inhibition of the cyclooxygenase activity of the enzyme, preventing the conversion of arachidonic acid to prostaglandin G2 and subsequently prostaglandin H2, which serves as the precursor for various inflammatory mediators.
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