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Cyclooxygenase 1 contributes to inflammatory responses in rats and mice: implications for gastrointestinal toxicity
J L Wallace1, A Bak, W McKnight
1Department of Pharmacology and Therapeutics, University of Calgary, Alberta, Canada. wallacej@ucalgary.ca
Background & Aims:
Selective inhibitors of cyclooxygenase (COX)-2 are being developed as gastrointestinal-sparing anti-inflammatory drugs based on the premise that this isoform is solely responsible for prostaglandin synthesis at sites of inflammation, whereas COX-1 produces prostaglandins important for maintenance of mucosal integrity. We investigated the relationship between suppression of inflammation by COX-2 inhibitors (NS-398, nimesulide, DuP697, and etodolac) and their effects on gastric prostaglandin synthesis.
Methods:
Effects of pretreatment of rats with drugs with a range of in vitro selectivity for COX-2 vs. COX-1 on carrageenan-induced paw inflammation were assessed, along with extent of suppression of COX-1 and COX-2. The role of COX-1 in inflammation was also assessed in COX-2-deficient mice.
Results:
Significant anti-inflammatory effects were only observed at doses of the drugs that inhibited COX-1. At these doses, the drugs also significantly suppressed gastric prostaglandin synthesis and elicited gastric mucosal erosions. The degree of suppression of prostaglandin synthesis at the site of inflammation correlated significantly with inhibition of COX-1 but not COX-2.
Conclusions:
COX-1 makes an important contribution to inflammatory responses. To achieve desirable anti-inflammatory effects, COX-2 inhibitors needed to be given at doses in which selectivity was lost, leading to suppression of gastric prostaglandin synthesis and to mucosal injury.
Insights
Selective COX-2 inhibitors require COX-1 inhibition for anti-inflammatory effects, leading to gastric issues. These drugs suppress inflammation by inhibiting cyclooxygenase-1 (COX-1), not just cyclooxygenase-2 (COX-2), causing gastrointestinal side effects.
Area of Science:
- Pharmacology
- Inflammation Research
- Gastroenterology
Background:
- Selective cyclooxygenase (COX)-2 inhibitors were developed as gastrointestinal-sparing anti-inflammatory agents.
- The premise was that COX-2 solely mediates inflammation, while COX-1 maintains mucosal integrity.
Purpose of the Study:
- To investigate the relationship between COX-2 inhibitor-induced inflammation suppression and gastric prostaglandin synthesis.
- To assess the role of COX-1 and COX-2 in inflammatory responses.
Main Methods:
- Rats were pretreated with COX-2 inhibitors (NS-398, nimesulide, DuP697, etodolac) with varying selectivity.
- Carrageenan-induced paw inflammation and prostaglandin synthesis were assessed.
- COX-1's role was studied in COX-2-deficient mice.
Main Results:
- Significant anti-inflammatory effects were observed only at doses inhibiting COX-1.
- These doses suppressed gastric prostaglandin synthesis and caused gastric erosions.
- Inflammation suppression correlated with COX-1 inhibition, not COX-2.
Conclusions:
- COX-1 plays a crucial role in inflammatory responses.
- Achieving anti-inflammatory effects with COX-2 inhibitors requires doses that also inhibit COX-1.
- This non-selective inhibition leads to suppressed gastric prostaglandin synthesis and mucosal injury.
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