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The role of reactive oxygen species in the antimicrobial activity of pyochelin

机译:活性氧类物质在巨球菌素抗菌活性中的作用

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The increase in prevalence of antimicrobial-resistant bacteria (ARB) is currently a serious threat, thus there is a need for new antimicrobial compounds to combat infections caused by these ARB. An antimicrobial-producing bacterium, Burkholderia paludis was recently isolated and was able to produce a type of siderophore with antimicrobial properties, later identified as pyochelin. The chelating ability of pyochelin has been well-characterized but not for its antimicrobial characteristics. It was found that pyochelin had MIC values (MBC values) of 3.13@?g/mL (6.26@?g/mL) and 6.26@?g/mL (25.00@?g/mL) against three Enterococcus strains and four Staphylococcus strains. Pyochelin was able to inhibit E. faecalis ATCC 700802 (a vancomycin-resistant strain) in a time and dose dependent manner via killing kinetics assay. It was demonstrated that pyochelin enhanced the production of intracellular reactive oxygen species (ROS) over time, which subsequently caused a significant increase in malondialdehyde (MDA) production (a marker for lipid peroxidation) and ultimately led to cell death by disrupting the integrity of the bacterial membrane (validated via BacLight assay). This study has revealed the mechanism of action of pyochelin as an antimicrobial agent for the first time and has shown that pyochelin might be able to combat infections caused by E. faecalis in the future.
机译:目前,抗药性细菌(ARB)的患病率上升是一个严重的威胁,因此需要新的抗微生物化合物来对抗由这些ARB引起的感染。最近分离出一种产抗菌素的细菌,伯克霍尔德氏菌,能够产生一种具有抗菌特性的铁载体,后来被鉴定为pychelelin。秋水仙素的螯合能力已被很好地表征,但是其抗菌特性却不高。结果发现,针对3种肠球菌和4种葡萄球菌,pyochelin的MIC值(MBC值)分别为3.13?g / mL(6.26@?g/mL)和6.26@?g/mL(25.00@?g/mL)。 。通过杀死动力学测定法,Pyochelin能够以时间和剂量依赖性方式抑制粪肠球菌ATCC 700802(耐万古霉素的菌株)。事实证明,随着时间的推移,pyyochelin增强了细胞内活性氧(ROS)的产生,随后引起丙二醛(MDA)产生(脂质过氧化的标志物)的显着增加,并最终通过破坏其完整性来导致细胞死亡。细菌膜(通过BacLight分析验证)。这项研究首次揭示了泛霉素作为抗菌剂的作用机理,并表明,未来,泛霉素可能能够抵抗屎肠球菌引起的感染。

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