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多功能样品制备试剂盒和芯片上定量基于核酸序列的扩增检测用于微生物检测。

Multifunctional sample preparation kit and on-chip quantitative nucleic acid sequence-based amplification tests for microbial detection.

机构信息

(IMST) Department of Micro and Nano Systems Technology, Faculty of Engineering and Marine Sciences, (HiVE) Vestfold University College, Norway.

出版信息

Anal Chem. 2012 Oct 16;84(20):8541-8. doi: 10.1021/ac3020609. Epub 2012 Sep 28.

DOI:10.1021/ac3020609
PMID:22985130
Abstract

This study reports a quantitative nucleic acid sequence-based amplification (Q-NASBA) microfluidic platform composed of a membrane-based sampling module, a sample preparation cassette, and a 24-channel Q-NASBA chip for environmental investigations on aquatic microorganisms. This low-cost and highly efficient sampling module, having seamless connection with the subsequent steps of sample preparation and quantitative detection, is designed for the collection of microbial communities from aquatic environments. Eight kinds of commercial membrane filters are relevantly analyzed using Saccharomyces cerevisiae, Escherichia coli, and Staphylococcus aureus as model microorganisms. After the microorganisms are concentrated on the membrane filters, the retentate can be easily conserved in a transport medium (TM) buffer and sent to a remote laboratory. A Q-NASBA-oriented sample preparation cassette is originally designed to extract DNA/RNA molecules directly from the captured cells on the membranes. Sequentially, the extract is analyzed within Q-NASBA chips that are compatible with common microplate readers in laboratories. Particularly, a novel analytical algorithmic method is developed for simple but robust on-chip Q-NASBA assays. The reported multifunctional microfluidic system could detect a few microorganisms quantitatively and simultaneously. Further research should be conducted to simplify and standardize ecological investigations on aquatic environments.

摘要

本研究报告了一种基于核酸序列的定量扩增 (Q-NASBA) 微流控平台,该平台由基于膜的采样模块、样品制备盒和 24 通道 Q-NASBA 芯片组成,用于环境中水生微生物的研究。这个低成本、高效率的采样模块与样品制备和定量检测的后续步骤无缝连接,专为从水生环境中收集微生物群落而设计。使用酿酒酵母、大肠杆菌和金黄色葡萄球菌作为模型微生物,对 8 种商业膜滤器进行了相关分析。微生物在膜滤器上浓缩后,截留物可轻松保存在运输培养基 (TM) 缓冲液中,并送往远程实验室。最初设计了一种面向 Q-NASBA 的样品制备盒,可直接从膜上捕获的细胞中提取 DNA/RNA 分子。然后,将提取物在与实验室常见微孔板读数器兼容的 Q-NASBA 芯片中进行分析。特别是,开发了一种新颖的分析算法方法,用于简单但稳健的片上 Q-NASBA 测定。该多功能微流控系统可以定量和同时检测少量微生物。应进一步研究以简化和规范水生环境的生态研究。

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