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Novel N-methylsulfonyl-indole derivatives: biological activity and COX-2/5-LOX inhibitory effect with improved gastro protective profile and reduced cardio vascular risks.


ABSTRACT: Three novel series of N-methylsulfonylindole derivatives 3a&b, 4a-e, and 5a-e were synthesised. Different biological activities of the synthesised compounds were studied. Antimicrobial activity showed that, compounds 4b, 4e and 5d had selective antibacterial activity against the Gram-negative bacteria, Salmonella enterica and/or E. coli. The anti-oxidant activity of the synthesised compounds was evaluated by DPPH radical scavenging activity. In vitro anti-inflammatory activity was estimated. Compounds 4d, 4e, 5b, and 5d showed the highest anti-inflammatory activity. The COX-1, COX-2 and 5-LOX inhibitory activities were measured using enzyme immune assay (EIA) kits. Due to the dual COX-2/5-LOX inhibitory activity of compound 5d, its cardiovascular profile was determined by measuring cardiac biomarkers (LDH, CK-MB, and Tn-I). Besides, the histopathological study of the heart muscle and stomach were examined for the most active COX-2 inhibitors 4e and 5d. Finally, a molecular modelling study and pharmacokinetic properties were obtained using different computational methods.

SUBMITTER: Philoppes JN 

PROVIDER: S-EPMC9721424 | biostudies-literature | 2023 Dec

REPOSITORIES: biostudies-literature

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Novel <i>N</i>-methylsulfonyl-indole derivatives: biological activity and COX-2/5-LOX inhibitory effect with improved gastro protective profile and reduced cardio vascular risks.

Philoppes John N JN   Abdelgawad Mohamed A MA   Abourehab Mohammed A S MAS   Sebak Mohamed M   A Darwish Mostafa M   Lamie Phoebe F PF  

Journal of enzyme inhibition and medicinal chemistry 20231201 1


Three novel series of <i>N</i>-methylsulfonylindole derivatives <b>3a&b</b>, <b>4a-e,</b> and <b>5a-e</b> were synthesised. Different biological activities of the synthesised compounds were studied. Antimicrobial activity showed that, compounds <b>4b</b>, <b>4e</b> and <b>5d</b> had selective antibacterial activity against the Gram-negative bacteria, <i>Salmonella enterica and/or E. coli</i>. The anti-oxidant activity of the synthesised compounds was evaluated by DPPH radical scavenging activity  ...[more]

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