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密切相关的沙门氏菌菌株的差异生物物理行为

Differential Biophysical Behaviors of Closely Related Strains of Salmonella.

作者信息

Liu Yameng, Hayes Mark A

机构信息

School of Molecular Sciences, Arizona State University, Tempe, AZ, United States.

出版信息

Front Microbiol. 2020 Feb 25;11:302. doi: 10.3389/fmicb.2020.00302. eCollection 2020.

Abstract

is an important pathogen and is a world-wide threat to food safety and public health. Surveillance of serotypes and fundamental biological and biochemical studies are supported by a wide variety of established and emerging bioanalytical techniques. These include classic serotyping based on the nomenclature and the emerging whole genome sequencing strategy. Another emerging strategy is native whole cell biophysical characterization which has yet to be applied to . However, this technique has been shown to provide high resolution differentiation of serotypes with several other paired strains of other microbes and pathogens. To demonstrate that biophysical characterization might be useful for Salmonella serotyping, the closely related strains sv. and sv. were chosen for study. These two serovars were subjected to biophysical measurements on a dielectrophoresis-based microfluidic device that generated full differentiation of the unlabeled and native cells. They were differentiated by the ratio of electrophoretic (EP) to dielectrophoretic (DEP) mobilities. This differentiation factor is 2.7 ± 0.3 × 10 V/m for sv. , versus 2.2 ± 0.3 × 10 V/m for sv. . This work shows for the first time the differentiation, concentration, and characterization of the serotypes by exploiting their biophysical properties. It may lead to a less expensive and more decentralized new tool and method for microbiologists, complimenting and working in parallel with other characterization methods.

摘要

是一种重要的病原体,对食品安全和公众健康构成全球威胁。血清型监测以及基础生物学和生物化学研究得到了各种成熟和新兴的生物分析技术的支持。这些技术包括基于命名法的经典血清分型和新兴的全基因组测序策略。另一种新兴策略是天然全细胞生物物理表征,该技术尚未应用于。然而,已证明该技术可对其他几种微生物和病原体的配对菌株进行血清型的高分辨率区分。为了证明生物物理表征可能对沙门氏菌血清分型有用,选择了密切相关的菌株sv. 和sv. 进行研究。在基于介电电泳的微流控装置上对这两个血清型进行生物物理测量,该装置可对未标记的天然细胞进行完全区分。它们通过电泳(EP)迁移率与介电电泳(DEP)迁移率的比值来区分。对于sv. ,该区分因子为2.7±0.3×10 V/m,而对于sv. ,该区分因子为2.2±0.3×10 V/m。这项工作首次展示了通过利用其生物物理特性对血清型进行区分、浓缩和表征。它可能为微生物学家带来一种成本更低、更分散的新工具和方法,与其他表征方法相辅相成并并行使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbd3/7053435/931079e7a8b6/fmicb-11-00302-g001.jpg

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