Synthesis and Biological Evaluation of Diphenyl Ether‐Linked Quinolone Derivatives as Antibacterial Agents

Author:

Ghouse Shaik Mahammad1ORCID,Akhir Abdul2,Sinha Kareena1,Pawar Gaurav1,Saxena Deepanshi2,Akunuri Ravikumar1,Malik Pradip2,Roy Arnab3,Parida Kishan Kumar3,Dasgupta Arunava24,Kalia Nitin Pal3ORCID,Yaddanapudi Venkata Madhavi1,Chopra Sidharth24,Nanduri Srinivas1ORCID

Affiliation:

1. Department of Chemical Sciences National Institute of Pharmaceutical Education and Research (NIPER) Hyderabad 500 037 India

2. Division of Molecular Microbiology and Immunology CSIR-Central Drug Research Institute Sitapur Road, Sector 10, Janakipuram Extension Lucknow 226031 Uttar Pradesh India

3. Department of Biological Sciences National Institute of Pharmaceutical Education and Research (NIPER), Balanagar Hyderabad 500037 Telangana India

4. AcSIR: Academy of Scientific and Innovative Research (AcSIR) Ghaziabad 201002 India

Abstract

AbstractThe increase in the prevalence of multi‐drug‐resistant bacteria poses a significant healthcare challenge. The urgent need to combat the resistant microbes necessitates discovering new antibacterial agents capable of circumventing the existing resistance mechanisms. Targeting DNA gyrase by suitably modifying the fluoroquinolones can lead to antibiotics with better activity and lower incidence of resistance. The substituted diphenyl ethers like triclosan are known to have potent antibacterial activity. In the current study, the hybridisation of diphenyl ether moiety with fluoroquinolones led to the design and synthesis of new compounds with potent inhibitory activity against staphylococcus aureus with MIC 0.5–64 μg/mL and moderately active against mycobacteria with MIC 2–64 μg/mL. The compounds are non‐toxic to Vero cells with a selectivity index >10 to 200. The compounds also inhibited the resistant strains of S. aureus with a MIC ranging from 0.5–64 μg/mL. The synthesised compounds also exhibited potent anti‐biofilm activity against S. aureus. Furthermore, the DNA supercoiling assay revealed the compounds 7 i, 7 o, 7 p and 7 q showed concentration‐dependant DNA‐Gyrase inhibition at 1 μg/mL.

Publisher

Wiley

Subject

General Chemistry

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