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Bioorg Med Chem ; 17(10): 3665-70, 2009 May 15.
Article in English | MEDLINE | ID: mdl-19398345

ABSTRACT

The discovery of the inducible isoform of cyclooxygenase enzyme (COX-2) spurred the search for anti-inflammatory agents devoid of the undesirable effects associated with classical NSAIDs. New chlorzoxazone ester prodrugs (6-8) of some acidic NSAIDs (1-3) were designed, synthesized and evaluated as mutual prodrugs with the aim of improving the therapeutic potency and retard the adverse effects of gastrointestinal origin. The structure of the synthesized mutual ester prodrugs (6-8) were confirmed by IR, (1)H NMR, mass spectroscopy (MS) and their purity was ascertained by TLC and elemental analyses. In vitro chemical stability revealed that the synthesized ester prodrugs (6-8) are chemically stable in hydrochloric acid buffer pH 1.2 as a non-enzymatic simulated gastric fluid (SGF) and in phosphate buffer pH 7.4 as non-enzymatic simulated intestinal fluid (SIF). In 80% human plasma, the mutual prodrugs were found to be susceptible to enzymatic hydrolysis at relatively faster rate (t(1/2) approximately 37 and 34 min for prodrugs 6 and 7, respectively). Mutual ester prodrugs (6-8) were evaluated for their anti-inflammatory and muscle relaxation activities. Scanning electromicrographs of the stomach showed that the ester prodrugs induced very little irritancy in the gastric mucosa of rats after oral administration for 4days. In addition, docking of the mutual ester prodrugs (6-8) into COX-2 active site was conducted in order to predict the affinity and orientation of these prodrugs at the enzyme active site.


Subject(s)
Anti-Inflammatory Agents, Non-Steroidal/pharmacology , Carboxylic Acids/chemistry , Chlorzoxazone/analogs & derivatives , Chlorzoxazone/pharmacology , Prodrugs/pharmacology , Administration, Oral , Animals , Anti-Inflammatory Agents, Non-Steroidal/chemical synthesis , Anti-Inflammatory Agents, Non-Steroidal/chemistry , Carboxylic Acids/chemical synthesis , Catalytic Domain , Chlorzoxazone/chemical synthesis , Chlorzoxazone/chemistry , Computer Simulation , Cyclooxygenase 2/chemistry , Cyclooxygenase 2/metabolism , Drug Design , Drug Stability , Esters/chemical synthesis , Esters/chemistry , Esters/pharmacology , Male , Prodrugs/chemical synthesis , Prodrugs/chemistry , Rats , Rats, Wistar , Structure-Activity Relationship
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