Issue 12, 2020

Rational design, synthesis and testing of novel tricyclic topoisomerase inhibitors for the treatment of bacterial infections part 1

Abstract

The alarming reduction in drug effectiveness against bacterial infections has created an urgent need for the development of new antibacterial agents that circumvent bacterial resistance mechanisms. We report here a series of DNA gyrase and topoisomerase IV inhibitors that demonstrate potent activity against a range of Gram-positive and selected Gram-negative organisms, including clinically-relevant and drug-resistant strains. In part 1, we present a detailed structure activity relationship (SAR) analysis that led to the discovery of our previously disclosed compound, REDX05931, which has a minimum inhibitory concentration (MIC) of 0.06 μg mL−1 against fluoroquinolone-resistant Staphylococcus aureus. Although in vitro hERG and CYP inhibition precluded further development, it validates a rational design approach to address this urgent unmet medical need and provides a scaffold for further optimisation, which is presented in part 2.

Graphical abstract: Rational design, synthesis and testing of novel tricyclic topoisomerase inhibitors for the treatment of bacterial infections part 1

Supplementary files

Article information

Article type
Research Article
Submitted
25 May 2020
Accepted
07 Aug 2020
First published
18 Sep 2020

RSC Med. Chem., 2020,11, 1366-1378

Rational design, synthesis and testing of novel tricyclic topoisomerase inhibitors for the treatment of bacterial infections part 1

R. Kirk, A. Ratcliffe, G. Noonan, M. Uosis-Martin, D. Lyth, O. Bardell-Cox, J. Massam, P. Schofield, S. Hindley, D. R. Jones, J. Maclean, A. Smith, V. Savage, S. Mohmed, C. Charrier, A-M. Salisbury, E. Moyo, R. Metzger, N. Chalam-Judge, J. Cheung, N. R. Stokes, S. Best, M. Craighead, R. Armer and A. Huxley, RSC Med. Chem., 2020, 11, 1366 DOI: 10.1039/D0MD00174K

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