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利用冷冻飞行时间二次离子质谱法对天然状态生物膜中的环丙沙星进行无标记亚微米 3D 成像。

Label-free sub-micrometer 3D imaging of ciprofloxacin in native-state biofilms with cryo-time-of-flight secondary ion mass spectrometry.

机构信息

Physikalisches Institut and Center for Soft Nanoscience, University of Münster, Wilhelm-Klemm-Straße 10, 48149, Münster, Germany.

Department of Chemistry, Center for Nanointegration Duisburg-Essen (CENIDE) and Centre for Water and Environmental Research (ZWU), University of Duisburg-Essen, Universitätsstrasse 5, 45141, Essen, Germany.

出版信息

Anal Bioanal Chem. 2023 Feb;415(5):991-999. doi: 10.1007/s00216-022-04496-4. Epub 2023 Jan 10.

Abstract

High spatial resolution mass spectrometry imaging has been identified as a key technology needed to improve understanding of the chemical components that influence antibiotic resistance within biofilms, which are communities of micro-organisms that grow attached to a surface. Time-of-flight secondary ion mass spectrometry (ToF-SIMS) offers the unique ability for label-free 3D imaging of organic molecules with sub-micrometer spatial resolution and high sensitivity. Several studies of biofilms have been done with the help of ToF-SIMS, but none of those studies have shown 3D imaging of antibiotics in native-state hydrated biofilms with cell-level resolution. Because ToF-SIMS measurements must be performed in a high-vacuum environment, cryogenic preparation and analysis are necessary to preserve the native biofilm structure and antibiotic spatial distribution during ToF-SIMS measurements. In this study, we have investigated the penetration of the antibiotic ciprofloxacin into Bacillus subtilis biofilms using sub-micrometer resolution 3D imaging cryo-ToF-SIMS. B. subtilis biofilms were exposed to physiologically relevant levels of ciprofloxacin. The treated biofilms were then plunge-frozen in liquid propane and analyzed with ToF-SIMS under cryogenic conditions. Multivariate analysis techniques, including multivariate curve resolution (MCR) and inverse maximum signal factor (iMSF) denoising, were used to aid analysis of the data and facilitate high spatial resolution 3D imaging of the biofilm, providing individually resolved cells and spatially resolved ciprofloxacin intensity at "real world" concentrations.

摘要

高空间分辨率质谱成像已被确定为提高对抗生素耐药性生物膜内影响因素的化学组成理解的关键技术,生物膜是附着在表面生长的微生物群落。飞行时间二次离子质谱(ToF-SIMS)具有独特的能力,可以对有机分子进行无标记的 3D 成像,空间分辨率达到亚微米级,灵敏度高。已有多项关于生物膜的研究借助 ToF-SIMS 进行,但这些研究均未显示出以细胞级分辨率对天然状态水合生物膜中抗生素的 3D 成像。由于 ToF-SIMS 测量必须在高真空环境中进行,因此必须进行低温制备和分析,以在 ToF-SIMS 测量过程中保持天然生物膜结构和抗生素空间分布。在本研究中,我们使用亚微米分辨率的 3D 成像冷冻 ToF-SIMS 研究了抗生素环丙沙星在枯草芽孢杆菌生物膜中的渗透。将枯草芽孢杆菌生物膜暴露于生理相关水平的环丙沙星中。然后将处理过的生物膜在液态丙烷中骤冷,并在低温条件下用 ToF-SIMS 进行分析。使用多元分析技术,包括多元曲线分辨(MCR)和逆最大信号因子(iMSF)去噪,辅助数据分析并促进生物膜的高空间分辨率 3D 成像,以“真实世界”浓度提供单独分辨的细胞和空间分辨的环丙沙星强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8dce/9883301/9b6927508c69/216_2022_4496_Fig1_HTML.jpg

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