AI Article Synopsis

  • CBA-NSAIDs are widely used for their effective pain relief and anti-inflammatory properties, but they can cause adverse events due to their impact on mitochondrial function and oxidative stress.
  • This review highlights the potential damage caused by CBA-NSAIDs, including reactive oxygen species production and cellular damage, and emphasizes the importance of careful dosage and patient consultation to mitigate risks.
  • The article suggests that further research into natural plant extracts may help prevent and treat the metabolic issues associated with CBA-NSAIDs, which could improve their safe use.

Article Abstract

Introduction: Carboxylic acid non-steroidal anti-inflammatory drugs (CBA-NSAIDs) are extensively used worldwide due to their antipyretic, analgesic, and anti-inflammatory effects. CBA-NSAIDs have reasonable margin of safety at therapeutic doses, and in the current climate, do not possess addiction potential like opioid drugs. Studies have revealed that various adverse events of CBA-NSAIDs are related mitochondrial dysfunction and oxidative stress.

Areas Covered: This review article summarizes adverse events induced by CBA-NSAIDs, mechanisms of mitochondrial damage, oxidative stress, and metabolic interactions. Meanwhile, this review discusses the treatment and prevention of CBA-NSAIDs damage by natural plant extracts based on antioxidant effects.

Expert Opinion: CBA-NSAIDs can induce reactive oxygen species (ROS) production, mediate DNA, protein and lipid damage, lead to imbalance of cell antioxidant status, change of mitochondrial membrane potential, activate oxidative stress signal pathway, thus leading to oxidative stress and cell damage. Adverse events caused by CBA-NSAIDs often exhibit dose and time dependence. In order to avoid adverse events caused by CBA-NSAIDs, it is necessary to provide detailed patient consultation and eliminate influencing factors. Moreover, constructive research studies on the organ-specific toxicity and mechanism of natural plant extracts in preventing and treating metabolic abnormalities of CBA-NSAIDs, will provide important value for warning and guidance for use of CBA-NSAIDs.

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Source
http://dx.doi.org/10.1080/17425255.2024.2378885DOI Listing

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