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用于现场检测食源性病原体的高度自动化荧光检测仪器系统的设计与初步评估

Design and Elementary Evaluation of a Highly-Automated Fluorescence-Based Instrument System for On-Site Detection of Food-Borne Pathogens.

机构信息

College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou 310058, China.

Department of Biological and Agricultural Engineering, University of Arkansas, Fayetteville, AR 72701, USA.

出版信息

Sensors (Basel). 2017 Feb 23;17(3):442. doi: 10.3390/s17030442.

Abstract

A simple, highly-automated instrument system used for on-site detection of foodborne pathogens based on fluorescence was designed, fabricated, and preliminarily tested in this paper. A corresponding method has been proved effective in our previous studies. This system utilizes a light-emitting diode (LED) to excite fluorescent labels and a spectrometer to record the fluorescence signal from samples. A rotation stage for positioning and switching samples was innovatively designed for high-throughput detection, ten at most in one single run. We also developed software based on LabVIEW for data receiving, processing, and the control of the whole system. In the test of using a pure quantum dot (QD) solution as a standard sample, detection results from this home-made system were highly-relevant with that from a well-commercialized product and even slightly better reproducibility was found. And in the test of three typical kinds of food-borne pathogens, fluorescence signals recorded by this system are highly proportional to the variation of the sample concentration, with a satisfied limit of detection (LOD) (nearly 10²-10³ CFU·mL in food samples). Additionally, this instrument system is low-cost and easy-to-use, showing a promising potential for on-site rapid detection of food-borne pathogens.

摘要

本文设计、制造并初步测试了一种基于荧光的用于现场检测食源性致病菌的简单、高度自动化仪器系统。在我们之前的研究中,已经证明了相应的方法是有效的。该系统利用发光二极管(LED)激发荧光标记物,并用光谱仪记录来自样品的荧光信号。为了实现高通量检测,我们创新性地设计了一个旋转台用于定位和切换样品,一次最多可以检测十个样品。我们还基于 LabVIEW 开发了软件,用于数据接收、处理和整个系统的控制。在使用纯量子点(QD)溶液作为标准样品的测试中,该自制系统的检测结果与商业化产品高度相关,甚至发现其重现性更好。在三种典型食源性致病菌的测试中,该系统记录的荧光信号与样品浓度的变化高度相关,具有令人满意的检测限(LOD)(在食品样本中为近 10²-10³ CFU·mL)。此外,该仪器系统成本低,易于使用,在现场快速检测食源性致病菌方面具有广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1652/5375728/aef050424713/sensors-17-00442-g001.jpg

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