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Identification of Trichomonas vaginalis 5-Nitroimidazole Resistance Targets.


ABSTRACT: Trichomonas vaginalis is the most common non-viral sexually transmitted infection. 5-nitroimidazoles are the only FDA-approved medications for T. vaginalis treatment. However, 5-nitroimidazole resistance has been increasingly recognized and may occur in up to 10% of infections. We aimed to delineate mechanisms of T. vaginalis resistance using transcriptome profiling of metronidazole (MTZ)-resistant and sensitive T. vaginalis clinical isolates. In vitro, 5-nitroimidazole susceptibility testing was performed to determine minimum lethal concentrations (MLCs) for T. vaginalis isolates obtained from women who had failed treatment (n = 4) or were successfully cured (n = 4). RNA sequencing, bioinformatics, and biostatistical analyses were performed to identify differentially expressed genes (DEGs) in the MTZ-resistant vs. sensitive T. vaginalis isolates. RNA sequencing identified 304 DEGs, 134 upregulated genes and 170 downregulated genes in the resistant isolates. Future studies with more T. vaginalis isolates with a broad range of MLCs are needed to determine which genes may represent the best alternative targets in drug-resistant strains.

SUBMITTER: Graves KJ 

PROVIDER: S-EPMC10223654 | biostudies-literature | 2023 May

REPOSITORIES: biostudies-literature

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Identification of <i>Trichomonas vaginalis</i> 5-Nitroimidazole Resistance Targets.

Graves Keonte J KJ   Reily Colin C   Tiwari Hemant K HK   Srinivasasainagendra Vinodh V   Secor William Evan WE   Novak Jan J   Muzny Christina A CA  

Pathogens (Basel, Switzerland) 20230510 5


<i>Trichomonas vaginalis</i> is the most common non-viral sexually transmitted infection. 5-nitroimidazoles are the only FDA-approved medications for <i>T. vaginalis</i> treatment. However, 5-nitroimidazole resistance has been increasingly recognized and may occur in up to 10% of infections. We aimed to delineate mechanisms of <i>T. vaginalis</i> resistance using transcriptome profiling of metronidazole (MTZ)-resistant and sensitive <i>T. vaginalis</i> clinical isolates. In vitro, 5-nitroimidazo  ...[more]

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