Polymyxin B Activity Rescue by (−)-Camphene-Based Thiosemicarbazide Against Carbapenem-Resistant Enterobacterales

Due to the significant shortage of therapeutic options for carbapenem-resistant Enterobacterales (CRE) infections, new drugs or therapeutic combinations are urgently required. We show in this study that (−)-camphene-based thiosemicarbazide (TSC) may act synergistically with polymyxin B (PMB) against...

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Veröffentlicht in:Microbial drug resistance (Larchmont, N.Y.) N.Y.), 2022-10, Vol.28 (10), p.962-971
Hauptverfasser: Silva, Bruna Renata, Queiroz, Paula Assis, Amaral, Pedro Henrique Rodrigues do, Freitas, Beatriz Cardoso de, Stocco, Alison Fernando, Sampiron, Eloisa Gibin, Vandresen, Fábio, Tognim, Maria Cristina Bronharo, Caleffi-Ferracioli, Katiany Rizzieri, Scodro, Regiane Bertin de Lima, Cardoso, Rosilene Fressatti, La Porta, Felipe de Almeida, Siqueira, Vera Lucia Dias
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Sprache:eng
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Zusammenfassung:Due to the significant shortage of therapeutic options for carbapenem-resistant Enterobacterales (CRE) infections, new drugs or therapeutic combinations are urgently required. We show in this study that (−)-camphene-based thiosemicarbazide (TSC) may act synergistically with polymyxin B (PMB) against CRE, rescuing the activity of this antimicrobial. With the specific aim of a better molecular understanding of this effect caused by the presence of TSC, theoretical calculations were also performed in this study. Based on these findings, it is concluded that the presence of TSC moieties contributes to significant changes in the hydrogen atom charge of PMB structure, which trend more positives for the PMB/TSC system studied. This could lead to the formation of stronger hydrogen bonds in the Enterobacterales active site and, thus contribute to a molecular understanding of the PMB rescue of activity promoted by the presence of TSC moiety. As such, the clinical potential of these drug combinations requires further evaluation.
ISSN:1076-6294
1931-8448
DOI:10.1089/mdr.2021.0334