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2000
Volume 18, Issue 1
  • ISSN: 1573-4080
  • E-ISSN: 1875-6662

Abstract

Background: Cyclooxygenase is a well-known oxidoreductase that catalyzes the uptake of two moles of O by arachidonic acid (AA), producing the hydroperoxide Prostaglandin G (PGG), then reduced to the prostaglandin precursor Prostaglandin H (PGH). O consumption during such reactions is a measure of cyclooxygenase activity. O involved is generally measured by indirect methods, accomplished in the presence of the substrate AA and/or inhibitors. Methods: We developed a new simplified and easy to be carried out protocol for O consumption measurement by using disrupted HEK293-derived adherent cells, stably transfected either with COX-1 or COX-2 genes, as a source of the COX enzymes. The Clark electrode is used to measure the O concentration variation during the enzyme-catalyzed reactions. Results and Discussion: The novel assay was validated by determining the IC values of the known inhibitors such as indomethacin, ibuprofen, SC560, and celecoxib. Indomethacin and ibuprofen are two traditional non-steroidal anti-inflammatory drugs (tNSAIDs). SC560 is a commercially available reference compound used for COX-1 inhibition investigations. Celecoxib is a clinically used COXIBs. The assay was also applied to measure the kinetics and IC of mofezolac and P6. Mofezolac is the most potent selective COX-1 inhibitor, and active principle ingredient of Disopain® used to treat rheumatoid arthritis in Japan. P6, uncovered by us, is used together with mofezolac as a reference in in vitro and in vivo COX inhibition investigations and as a scaffold for structure-inhibition activity relationship studies. Conclusion: The obtained results showed the suitability of the newly developed assay to measure COXs activity in the presence of inhibitors as well as the kinetics of the inhibition (i.e., V and K).

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/content/journals/cei/10.2174/1573408018666220204104612
2022-03-01
2025-03-15
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