4.6 Article

Synthesis and Antimicrobial Activity of New Heteroaryl(aryl) Thiazole Derivatives Molecular Docking Studies

Journal

ANTIBIOTICS-BASEL
Volume 11, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/antibiotics11101337

Keywords

antimicrobial; antibacterial; antifungal; heteroaryl (aryl) thiazole derivatives; docking

Funding

  1. Ministry of Science and Higher Education of the Russian Federation [FENW-2020-0031]
  2. Fundamental Scientific Research of the State Academies of Sciences for 2014-2021 [0710-2019-0044]
  3. Serbian Ministry of Education, Science and Technological Development [451-03-68/2020-14/200007]

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In this study, the design, synthesis, and antimicrobial activity of new heteroaryl (aryl) thiazole derivatives were reported. The compounds demonstrated moderate antibacterial activity and better antifungal activity. Compound 3 showed the highest activity among the tested compounds.
Herein, we report the design, synthesis, and evaluation of the antimicrobial activity of new heteroaryl (aryl) thiazole derivatives. The design was based on a molecular hybridization approach. The in vitro evaluation revealed that these compounds demonstrated moderate antibacterial activity. The best activity was achieved for compound 3, with MIC and MBC in the range of 0.23-0.7 and 0.47-0.94 mg/mL, respectively. Three compounds (2, 3, and 4) were tested against three resistant strains, namely methicillin resistant Staphylococcus aureus, P. aeruginosa, and E. coli, which showed higher potential than the reference drug ampicillin. Antifungal activity of the compounds was better with MIC and MFC in the range of 0.06-0.47 and 0.11-0.94 mg/mL, respectively. The best activity was observed for compound 9, with MIC at 0.06-0.23 mg/mL and MFC at 0.11-0.47 mg/mL. According to docking studies, the predicted inhibition of the E. coli MurB enzyme is a putative mechanism of the antibacterial activity of the compounds, while inhibition of 14a-lanosterol demethylase is probably the mechanism of their antifungal activity.

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