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Chromogenic enzyme substrates based on [2-(nitroaryl)ethenyl]pyridinium and quinolinium derivatives for the detection of nitroreductase activity in clinically important microorganisms†
Marie Cellier-Rastit,Valérie Chalansonnet,Arthur L. James,Annette Johnston,Sylvain Orenga,John D. Perry,Celine Roger-Dalbert,Vindhya L. Salwatura,Stephen P. Stanforth,Hannah E. Sykes,Viet T. Truong,Graeme Turnbull
Journal of Materials Chemistry B Pub Date : 06/07/2023 00:00:00 , DOI:10.1039/D3TB00715D
Abstract

A series of [2-(nitroaryl)ethenyl]pyridinium and quinolinium derivatives have been synthesised as potential indicators of microbial nitroreductase activity. When assessed against a selection of 20 clinically important pathogenic microorganisms, microbial colonies of various colours (yellow, green, red, brown, black) were produced and attributed to nitroreductase activity. Most substrates elicited colour responses with Gram-negative microorganisms. In contrast, the growth of several species of Gram-positive microorganisms and yeasts was often inhibited by the substrates and hence coloured responses were not seen.

Graphical abstract: Chromogenic enzyme substrates based on [2-(nitroaryl)ethenyl]pyridinium and quinolinium derivatives for the detection of nitroreductase activity in clinically important microorganisms
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