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微生物隔离装置:一个无需样品制备即可全面分析微生物代谢的平台。

Microbial containment device: A platform for comprehensive analysis of microbial metabolism without sample preparation.

作者信息

Mohammadi Mehdi, Bishop Stephanie L, Aburashed Raied, Luqman Saad, Groves Ryan A, Bihan Dominique G, Rydzak Thomas, Lewis Ian A

机构信息

Department of Biological Sciences, University of Calgary, Calgary, AB, Canada.

Department of Biomedical Engineering, University of Calgary, Calgary, AB, Canada.

出版信息

Front Microbiol. 2022 Sep 13;13:958785. doi: 10.3389/fmicb.2022.958785. eCollection 2022.

Abstract

Metabolomics is a mainstream strategy for investigating microbial metabolism. One emerging application of metabolomics is the systematic quantification of metabolic boundary fluxes - the rates at which metabolites flow into and out of cultured cells. Metabolic boundary fluxes can capture complex metabolic phenotypes in a rapid assay, allow computational models to be built that predict the behavior of cultured organisms, and are an emerging strategy for clinical diagnostics. One advantage of quantifying metabolic boundary fluxes rather than intracellular metabolite levels is that it requires minimal sample processing. Whereas traditional intracellular analyses require a multi-step process involving extraction, centrifugation, and solvent exchange, boundary fluxes can be measured by simply analyzing the soluble components of the culture medium. To further simplify boundary flux analyses, we developed a custom 96-well sampling system-the Microbial Containment Device (MCD)-that allows water-soluble metabolites to diffuse from a microbial culture well into a bacteria-free analytical well via a semi-permeable membrane. The MCD was designed to be compatible with the autosamplers present in commercial liquid chromatography-mass spectrometry systems, allowing metabolic fluxes to be analyzed with minimal sample handling. Herein, we describe the design, evaluation, and performance testing of the MCD relative to traditional culture methods. We illustrate the utility of this platform, by quantifying the unique boundary fluxes of four bacterial species and demonstrate antibiotic-induced perturbations in their metabolic activity. We propose the use of the MCD for enabling single-step metabolomics sample preparation for microbial identification, antimicrobial susceptibility testing, and other metabolic boundary flux applications where traditional sample preparation methods are impractical.

摘要

代谢组学是研究微生物代谢的主流策略。代谢组学的一个新兴应用是对代谢边界通量进行系统定量——代谢物流入和流出培养细胞的速率。代谢边界通量能够在快速检测中捕捉复杂的代谢表型,有助于构建预测培养生物体行为的计算模型,并且是一种新兴的临床诊断策略。定量代谢边界通量而非细胞内代谢物水平的一个优势在于,它所需的样品处理极少。传统的细胞内分析需要经过多步过程,包括提取、离心和溶剂交换,而边界通量只需通过简单分析培养基的可溶性成分即可测量。为了进一步简化边界通量分析,我们开发了一种定制的96孔采样系统——微生物隔离装置(MCD),该装置可使水溶性代谢物通过半透膜从微生物培养孔扩散到无菌分析孔中。MCD的设计与商业液相色谱 - 质谱系统中的自动进样器兼容,从而能够以最少的样品处理来分析代谢通量。在此,我们描述了MCD相对于传统培养方法的设计、评估和性能测试。我们通过量化四种细菌的独特边界通量并展示抗生素对其代谢活性的扰动,来说明该平台的实用性。我们建议使用MCD实现用于微生物鉴定、抗菌药敏试验以及其他传统样品制备方法不实用的代谢边界通量应用的单步代谢组学样品制备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f63c/9513318/d9e28b57c006/fmicb-13-958785-g001.jpg

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