New Benzothiazole-based Thiazolidinones as Potent Antimicrobial Agents. Design, synthesis and Biological Evaluation

Author:

Haroun Michelyne1,Tratrat Christophe1,Kositzi Katerina2,Tsolaki Evangelia2,Petrou Anthi2,Aldhubiab Bandar1,Attimarad Mahesh1,Harsha Sree1,Geronikaki Athina2,Venugopala Katharigatta N.1,Elsewedy Heba S.1,Sokovic Marina3,Glamoclija Jasna3,Ciric Ana3

Affiliation:

1. Department of Pharmaceutical Sciences, College of Clinical Pharmacy, King Faisal University, Al-Ahsa 31982, Saudi Arabia

2. Aristotle University, School of Pharmacy, Thessaloniki, 54124, Greece

3. Mycological Laboratory, Department of Plant Physiology, Institute for Biological Research, Sinisa Stankovic, University of Belgrade, Bulevar DespotaStefana 142, 11000, Belgrade, Serbia

Abstract

Background: Thiazole and benzothiazole derivatives, as well as thiazolidinones are very important scaffolds in medicinal chemistry. Literature has revealed that they possess a wide spectrum of biological activities including antimicrobial activity. Objective: The goal of this paper is the designing of new benzothiazole based thiazolidinones and the evaluation of their biological activities. Methods: The designed compounds were synthesized using classical organic synthesis methods. The antimicrobial activity was evaluated using the method of microdilution. Results: The twelve newly synthesized compounds showed antimicrobial properties. All compounds appeared to be more active than ampicillin in most studied strains and in some cases, more active than streptomycin. Antifungal activity, in most cases was also better than the reference drugs ketoconazole and bifonazole. The prediction of cytotoxicity revealed that the synthesized compounds were not toxic (LD50 350-1000 mg/kg of body weight). Docking studies on the antibacterial activity confirmed the biological results. Conclusion: The twelve new compounds were synthesized and studied for their antimicrobial activity. The compounds appeared to be promising antimicrobial agents and could be the lead compounds for new, more potent drugs. According to the docking prediction, the compounds could be MurB inhibitors.

Publisher

Bentham Science Publishers Ltd.

Subject

Drug Discovery,General Medicine

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