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Thiazole derivatives as inhibitors of cyclooxygenases in vitro and in vivo

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dc.contributor.author El-Achkar, Ghewa A.
dc.contributor.author Jouni, Mariam
dc.contributor.author Mrad, May F.
dc.contributor.author Hirz, Taghreed
dc.contributor.author El Hachem, Nehme
dc.contributor.author Khalaf, Ali Ali
dc.contributor.author Hammoud, Soukaina
dc.contributor.author Fayyad-kazan, Hussein
dc.contributor.author Eid, Assaad A.
dc.contributor.author Badran, Bassam M.
dc.contributor.author Abou-Merhi, Raghida
dc.contributor.author Hachem, Ali
dc.contributor.author Hamade, Eva
dc.contributor.author Habib, Aida A.
dc.date.accessioned 2025-01-24T11:37:47Z
dc.date.available 2025-01-24T11:37:47Z
dc.date.issued 2015
dc.identifier.uri http://hdl.handle.net/10938/28870
dc.description.abstract Cyclooxygenases (COXs) are important membrane-bound heme containing enzymes important in platelet activation and inflammation. COX-1 is constitutively expressed in most cells whereas COX-2 is an inducible isoform highly expressed in inflammatory conditions. Studies have been carried out to evaluate thiazole derivatives as anti-inflammatory molecules. In this study, we investigated the in vitro and in vivo effects of two novel thiazole derivatives compound 1 (N-[4-(4-hydroxy-3-methoxyphenyl)-1,3-thiazol-2-yl] acetamide) and compound 2 (4-(2-amino-1,3-thiazol-4-yl)-2-methoxyphenol) on prostaglandin E2 (PGE2) production and COX activity in inflammatory settings. Our results reveal a potent inhibition of both compound 1 (IC50 9.01±0.01 μM) and 2 (IC50 11.65±6.20 μM) (Mean±S.E.M.) on COX-2-dependent PGE2 production. We also determined whether COX-1 activity was inhibited. Using cells stably over-expressing COX-1 and human blood platelets, we showed that compound 1 is a specific inhibitor of COX-1 with IC50 (5.56×10-8±2.26×10-8 μM), whereas compound 2 did not affect COX-1. Both compounds exhibit anti-inflammatory effect in the dorsal air pouch model of inflammation as shows by inhibition of PGE2 secretion. Modeling analysis of docking in the catalytic site of COX-1 or COX-2 further confirmed the difference in the effect of these two compounds. In conclusion, this study contributes to the design of new anti-inflammatory agents and to the understanding of cyclooxygenase inhibition by thiazole. © 2015 Elsevier B.V. All rights reserved.
dc.language.iso en
dc.publisher Elsevier
dc.relation.ispartof European Journal of Pharmacology
dc.source Scopus
dc.subject Air pouch model of inflammation
dc.subject Cyclooxygenase
dc.subject Nsaids
dc.subject Platelet aggregation
dc.subject Prostaglandin
dc.subject Thiazole derivatives
dc.subject Animals
dc.subject Cyclooxygenase 1
dc.subject Cyclooxygenase 2
dc.subject Cyclooxygenase inhibitors
dc.subject Dinoprostone
dc.subject Hek293 cells
dc.subject Humans
dc.subject Mice
dc.subject Molecular docking simulation
dc.subject Protein conformation
dc.subject Raw 264.7 cells
dc.subject Thiazoles
dc.subject 1 [n [4 [4 hydroxy 3 methoxyphenyl] 1,3 thiazol 2 yl]acetamide]
dc.subject 2 [4 [2 amino 1,3 thiazol 4-yl] 2 methoxyphenol]
dc.subject Celecoxib
dc.subject Ibuprofen
dc.subject Prostaglandin synthase
dc.subject Thiazole derivative
dc.subject Unclassified drug
dc.subject Prostaglandin e2
dc.subject Prostaglandin synthase inhibitor
dc.subject Animal cell
dc.subject Animal model
dc.subject Antiinflammatory activity
dc.subject Article
dc.subject Catalysis
dc.subject Cell viability
dc.subject Controlled study
dc.subject Drug structure
dc.subject Drug synthesis
dc.subject Enzyme active site
dc.subject Enzyme activity
dc.subject Enzyme inhibition
dc.subject Female
dc.subject Human
dc.subject Human cell
dc.subject Hydrogen bond
dc.subject In vitro study
dc.subject In vivo study
dc.subject Inflammation
dc.subject Macrophage
dc.subject Molecular docking
dc.subject Mouse
dc.subject Nonhuman
dc.subject Prostaglandin release
dc.subject Protein expression
dc.subject Thrombocyte aggregation
dc.subject Animal
dc.subject Biosynthesis
dc.subject Cell line raw 264.7
dc.subject Chemistry
dc.subject Drug effects
dc.subject Genetics
dc.subject Hek293 cell line
dc.subject Metabolism
dc.subject Secretion (process)
dc.title Thiazole derivatives as inhibitors of cyclooxygenases in vitro and in vivo
dc.type Article
dc.contributor.department Biochemistry and Molecular Genetics
dc.contributor.department Anatomy, Cell Biology, and Physiological Sciences
dc.contributor.faculty Faculty of Medicine (FM)
dc.contributor.institution American University of Beirut
dc.identifier.doi https://doi.org/10.1016/j.ejphar.2015.01.008
dc.identifier.pmid 25617797
dc.identifier.eid 2-s2.0-84922694566


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