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A Novel Screening Strategy Reveals ROS-Generating Antimicrobials That Act Synergistically against the Intracellular Veterinary Pathogen Rhodococcus equi

机译:一种新颖的筛选策略揭示了罗斯生成的抗微生物剂,其对细胞内兽医病原体rhodoCoccus equi协同作用

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摘要

Rhodococcus equi is a facultative intracellular pathogen that causes infections in foals and many other animals such as pigs, cattle, sheep, and goats. Antibiotic resistance is rapidly rising in horse farms, which makes ineffective current antibiotic treatments based on a combination of macrolides and rifampicin. Therefore, new therapeutic strategies are urgently needed to treat R. equi infections caused by antimicrobial resistant strains. Here, we employed a R. equi mycoredoxin-null mutant strain highly susceptible to oxidative stress to screen for novel ROS-generating antibiotics. Then, we used the well-characterized Mrx1-roGFP2 biosensor to confirm the redox stress generated by the most promising antimicrobial agents identified in our screening. Our results suggest that different combinations of antibacterial compounds that elicit oxidative stress are promising anti-infective strategies against R. equi. In particular, the combination of macrolides with ROS-generating antimicrobial compounds such as norfloxacin act synergistically to produce a potent antibacterial effect against R. equi. Therefore, our screening approach could be applied to identify novel ROS-inspired therapeutic strategies against intracellular pathogens.
机译:rhodococcus equi是一种兼性细胞内病原体,导致小鼠和许多其他动物(如猪,牛,绵羊和山羊)感染。抗生素抗性在马场中迅速上升,这使得目前基于大环内酯和利福平的组合的抗生素治疗。因此,迫切需要新的治疗策略来治疗抗微生物抗菌菌株引起的r. equi感染。在这里,我们使用了R. Equi Mycoredoxin-null突变菌株,其高易受氧化胁迫的氧化胁迫,以筛选新型ROS发电抗生素。然后,我们使用良好的MRX1-Rogfp2生物传感器来确认通过我们筛选中鉴定的最有前途的抗微生物剂产生的氧化还原应激。我们的研究结果表明,引发氧化胁迫的抗菌化合物的不同组合是对R. Equi的抗感染性策略。特别地,具有ROS产生抗微生物化合物如NORFLOXACIN的大环内酯的组合协同作用,以产生对R. EQUI的有效抗菌作用。因此,我们的筛查方法可以应用于识别针对细胞内病原体的新型ROS启发治疗策略。

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