Aptamers-Based Gold-Micro-Array for High-Selective Detection of Bacteria Using Fluorescence Microscopy

M. Salami, M. Abadi, Kh. Nejad Shahrokh Abadi, M. Sawan
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Abstract

The monitoring of Escherichia coli (E. coli) bacteria in food and water is an effective preventive measure in controlling the outbreaks of serious food-related diseases. Moreover, the accurate detection of its early stage of the bacteria can ensure the public health and safety. In this study, a target-selective aptamer-based platform is proposed as a reliable procedure for the detection of the E. coli in Phosphate-buffered saline (PBS) using fluorescent microscopy. The results show that the aptamer sequences, immobilized on an array of Au-micro-squares, are very high selective towards the target bacteria cells. This platform, presented for the first time, can be potentially used to detect different kinds of cells simultaneously. Also, an important cell-counting application, based on Neubauer Lam high accuracy method, is proposed and implemented and validated by experimental results.
基于适体体的金微阵列用于高选择性荧光显微镜细菌检测
对食品和水中的大肠杆菌进行监测是控制严重食源性疾病暴发的有效预防措施。而且,对其早期细菌的准确检测可以保证公众的健康和安全。在本研究中,提出了一种基于靶标选择性适配体的平台,作为使用荧光显微镜检测磷酸盐缓冲盐水(PBS)中大肠杆菌的可靠方法。结果表明,固定在au微方阵上的适体序列对目标细菌细胞具有很高的选择性。这是首次提出的平台,可以潜在地用于同时检测不同种类的细胞。提出了一种重要的基于Neubauer Lam高精度方法的细胞计数应用,并通过实验结果进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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