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用于定量检测水源性病原体的兼容免疫 NASBA LOC 设备:设计与验证。

Compatible immuno-NASBA LOC device for quantitative detection of waterborne pathogens: design and validation.

机构信息

Department of Micro and Nano Systems Technology, Faculty of Engineering and Marine Sciences, Vestfold University College, Tønsberg, Box 2243, N-3103, Norway.

出版信息

Lab Chip. 2012 Feb 7;12(3):602-12. doi: 10.1039/c1lc20836e. Epub 2011 Dec 7.

Abstract

Waterborne pathogens usually pose a global threat to animals and human beings. There has been a growing demand for convenient and sensitive tools to detect the potential emerging pathogens in water. In this study, a lab-on-a-chip (LOC) device based on the real-time immuno-NASBA (immuno-nucleic acid sequence-based amplification) assay was designed, fabricated and verified. The disposable immuno-NASBA chip is modelled on a 96-well ELISA microplate, which contains 43 reaction chambers inside the bionic channel networks. All valves are designed outside the chip and are reusable. The sample and reagent solutions were pushed into each chamber in turn, which was controlled by the valve system. Notably, the immuno-NASBA chip is completely compatible with common microplate readers in a biological laboratory, and can distinguish multiple waterborne pathogens in water samples quantitatively and simultaneously. The performance of the LOC device was demonstrated by detecting the presence of a synthetic peptide, ACTH (adrenocorticotropic hormone) and two common waterborne pathogens, Escherichia coli (E. coli) and rotavirus, in artificial samples. The results indicated that the LOC device has the potential to quantify traces of waterborne pathogens at femtomolar levels with high specificity, although the detection process was still subject to some factors, such as ribonuclease (RNase) contamination and non-specific adsorption. As an ultra-sensitive tool to quantify waterborne pathogens, the LOC device can be used to monitor water quality in the drinking water system. Furthermore, a series of compatible high-throughput LOC devices for monitoring waterborne pathogens could be derived from this prototype with the same design idea, which may render the complicated immuno-NASBA assays convenient to common users without special training.

摘要

水中病原体通常对动物和人类构成全球性威胁。人们越来越需要方便、灵敏的工具来检测水中潜在的新兴病原体。本研究设计、制作并验证了一种基于实时免疫 NASBA(免疫核酸序列扩增)检测法的芯片实验室(LOC)装置。这种一次性使用的免疫 NASBA 芯片是以 96 孔 ELISA 微孔板为模型,在仿生通道网络内包含 43 个反应室。所有阀门均设计在芯片外部,可重复使用。通过阀门系统依次将样品和试剂溶液推入各个反应室。值得注意的是,该免疫 NASBA 芯片与生物实验室中常见的微孔板读数器完全兼容,可以定量且同时区分水样中的多种水中病原体。通过在人工样本中检测合成肽、促肾上腺皮质激素(ACTH)以及两种常见的水中病原体大肠杆菌(E. coli)和轮状病毒,证明了 LOC 装置的性能。结果表明,尽管检测过程仍受到一些因素的影响,如核糖核酸酶(RNase)污染和非特异性吸附,但 LOC 装置具有以皮摩尔级别的高特异性定量痕量水中病原体的潜力。作为一种超灵敏的水中病原体定量工具,LOC 装置可用于监测饮用水系统中的水质。此外,基于相同的设计理念,还可以从该原型衍生出一系列兼容的高通量 LOC 装置来监测水中病原体,从而使复杂的免疫 NASBA 检测法无需特殊培训即可为普通用户所用。

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