Evolution of Nonsteroidal Anti-Inflammatory Drugs (NSAIDs): Cyclooxygenase (COX) Inhibition and Beyond

Эволюция нестероидных противовоспалительных препаратов (НПВП): ингибирование циклооксигеназы (COX) и дальнейшие направления
Edward E. Knaus, Praveen P. N. Rao
2008-09-20

NO-NSAIDs (nitric oxide donor NSAIDs)cyclooxygenase (COX) inhibitionnonsteroidal anti-inflammatory drugs (NSAIDs)prostaglandin biosynthesisselective COX-2 inhibitors
PURPOSE: NSAIDs constitute an important class of drugs with therapeutic applications that have spanned several centuries. Treatment of inflammatory conditions such as rheumatoid arthritis (RA) and osteoarthritis (OA) starting from the classic drug aspirin to the recent rise and fall of selective COX-2 inhibitors has provided an enthralling evolution. Efforts to discover an ultimate magic bullet to treat inflammation continues to be an important drug design challenge. This review traces the origins of NSAIDs, their mechanism of action at the molecular level such as cyclooxygenase (COX) inhibition, development of selective COX-2 inhibitors, their adverse cardiovascular effects, and some recent developments targeted to the design of effective anti-inflammatory agents with reduced side effects. METHODS: Literature data is presented describing important discoveries pertaining to the sequential development of classical NSAIDs and then selective COX-2 inhibitors, their mechanism of action, the structural basis for COX inhibition, and recent discoveries. RESULTS: A brief history of the development of NSAIDs and the market withdrawal of selective COX-2 inhibitors is explained, followed by the description of prostaglandin biosynthesis, COX isoforms, structure and function. The structural basis for COX-1 and COX-2 inhibition is described along with methods used to evaluate COX-1/COX-2 inhibition. This is followed by a section that encompasses the major chemical classes of selective COX-2 inhibitors. The final section describes briefly some of the recent advances toward developing effective anti-inflammatory agents such as nitric oxide donor NO-NSAIDs, dual COX/LOX inhibitors and anti-TNF therapy. CONCLUSIONS: A great deal of progress has been made toward developing novel anti-inflammatory agents. In spite of the tremendous advances in the last decade, the design and development of a safe, effective and economical therapy for treating inflammatory conditions still presents a major challenge.
1
Despite significant advances, designing a safe, effective, and economical anti-inflammatory therapy remains an unsolved major challenge.
2
NSAIDs have evolved from aspirin to selective COX-2 inhibitors, illustrating major therapeutic and drug-design developments over centuries.
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Primary molecular mechanism of NSAIDs is cyclooxygenase (COX) inhibition, with distinct structural bases for COX-1 versus COX-2 inhibition described.
4
Recent anti-inflammatory strategies include nitric oxide-donor NSAIDs (NO-NSAIDs), dual COX/LOX inhibitors, and anti-TNF therapies as attempts to reduce side effects.
5
Selective COX-2 inhibitors were developed but experienced market withdrawal due to adverse cardiovascular effects.

Nonsteroidal anti-inflammatory drugs (NSAIDs) and their selective COX-2 inhibitors

Mechanisms of action centered on cyclooxygenase (COX) inhibition, structural basis of COX-1/COX-2 selectivity, development history, safety (adverse cardiovascular effects), and recent strategies to design effective anti-inflammatory agents with reduced side effects

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2008-09-20
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Edward E. Knaus
Praveen P. N. Rao
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