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利用表面增强荧光测量不同金黄色葡萄球菌菌株在金表面的停留时间依赖性细胞壁变形。

Residence-time dependent cell wall deformation of different Staphylococcus aureus strains on gold measured using surface-enhanced-fluorescence.

作者信息

Li Jiuyi, Busscher Henk J, Swartjes Jan J T M, Chen Yun, Harapanahalli Akshay K, Norde Willem, van der Mei Henny C, Sjollema Jelmer

机构信息

University of Groningen and University Medical Center Groningen, Department of Biomedical Engineering, 9713 AV Groningen, The Netherlands.

出版信息

Soft Matter. 2014 Oct 14;10(38):7638-46. doi: 10.1039/c4sm00584h. Epub 2014 Aug 18.

Abstract

Bacterial adhesion to surfaces is accompanied by cell wall deformation that may extend to the lipid membrane with an impact on the antimicrobial susceptibility of the organisms. Nanoscale cell wall deformation upon adhesion is difficult to measure, except for Δpbp4 mutants, deficient in peptidoglycan cross-linking. This work explores surface enhanced fluorescence to measure the cell wall deformation of Staphylococci adhering on gold surfaces. Adhesion-related fluorescence enhancement depends on the distance of the bacteria from the surface and the residence-time of the adhering bacteria. A model is forwarded based on the adhesion-related fluorescence enhancement of green-fluorescent microspheres, through which the distance to the surface and cell wall deformation of adhering bacteria can be calculated from their residence-time dependent adhesion-related fluorescence enhancement. The distances between adhering bacteria and a surface, including compression of their extracellular polymeric substance (EPS)-layer, decrease up to 60 min after adhesion, followed by cell wall deformation. Cell wall deformation is independent of the integrity of the EPS-layer and proceeds fastest for a Δpbp4 strain.

摘要

细菌对表面的粘附伴随着细胞壁变形,这种变形可能会延伸至脂质膜,从而影响微生物对抗菌药物的敏感性。除了缺乏肽聚糖交联的Δpbp4突变体外,粘附时纳米级的细胞壁变形很难测量。本研究探索利用表面增强荧光来测量金黄色葡萄球菌粘附在金表面时的细胞壁变形。与粘附相关的荧光增强取决于细菌与表面的距离以及粘附细菌的停留时间。基于绿色荧光微球与粘附相关的荧光增强建立了一个模型,通过该模型,可根据粘附细菌与停留时间相关的荧光增强来计算其与表面的距离以及细胞壁变形情况。粘附细菌与表面之间的距离,包括其细胞外聚合物(EPS)层的压缩,在粘附后60分钟内会减小,随后发生细胞壁变形。细胞壁变形与EPS层的完整性无关,并且对于Δpbp4菌株来说进行得最快。

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