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原子力显微镜研究抗生素对百日咳博德特氏菌机械性能的影响。

Effect of antibiotics on mechanical properties of Bordetella pertussis examined by atomic force microscopy.

机构信息

Laboratory of Biological Electron Microscopy (LBEM), Institute of Physics (IPHYS), Faculty of Basic Sciences (SB), Swiss Federal Institute of Technology (EPFL), and Dept. of Fundamental Biology, Faculty of Biology and Medicine, University of Lausanne (UNIL), CH-1015 Lausanne, Switzerland; Centro de Investigación y Desarrollo en Fermentaciones Industriales (CINDEFI), Facultad de Ciencias Exactas, Universidad Nacional de La Plata - CONICET, 1900 La Plata, Argentina.

Laboratory of Biological Electron Microscopy (LBEM), Institute of Physics (IPHYS), Faculty of Basic Sciences (SB), Swiss Federal Institute of Technology (EPFL), and Dept. of Fundamental Biology, Faculty of Biology and Medicine, University of Lausanne (UNIL), CH-1015 Lausanne, Switzerland.

出版信息

Micron. 2022 Apr;155:103229. doi: 10.1016/j.micron.2022.103229. Epub 2022 Jan 31.

Abstract

In recent years, the coevolution of microorganisms with current antibiotics has increased the mechanisms of bacterial resistance, generating a major health problem worldwide. Bordetella pertussis is a bacterium that causes whooping cough and is capable of adopting different states of virulence, i.e. virulent or avirulent states. In this study, we explored the nanomechanical properties of both virulent and avirulent B. pertussis as exposed to various antibiotics. The nanomechanical studies highlighted that only virulent B. pertussis cells undergo a decrease in their cell elastic modulus and height upon antimicrobial exposure, whereas their avirulent counterparts remain unaffected. This study also permitted to highlight different mechanical properties of individual cells as compared to those growing in close contact with other individuals. In addition, we analyzed the presence on the bacterial cell wall of Filamentous hemagglutinin adhesin (FHA), the major attachment factor produced by virulent Bordetella spp., under different virulence conditions by Force Spectroscopy.

摘要

近年来,微生物与现有抗生素的共同进化增加了细菌耐药性的机制,在全球范围内造成了一个主要的健康问题。百日咳博德特氏菌是一种引起百日咳的细菌,能够采用不同的毒力状态,即毒力状态或非毒力状态。在这项研究中,我们研究了暴露于各种抗生素时,毒力和非毒力百日咳博德特氏菌的纳米力学特性。纳米力学研究表明,只有毒力百日咳博德特氏菌细胞在抗菌药物暴露时其细胞弹性模量和高度会降低,而其非毒力细胞则不受影响。这项研究还允许突出比较单个细胞与那些与其他个体紧密接触的细胞的不同机械特性。此外,我们通过力谱法分析了在不同毒力条件下,主要由毒力博德特氏菌产生的丝状血凝素黏附素(FHA)在细菌细胞壁上的存在情况。

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