Molecular Diagnostic Platforms for Specific Detection of Escherichia coli

Rehan Deshmukh, U. Roy
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Abstract

Developing countries due to socio-economic conditions are more prone to frequent pathogenic outbreaks; inadequate sanitation and water quality monitoring are also responsible for such conditions. Therefore, it is of paramount importance to provide microbiologically safe food/water in order to protect public health. Several flaws in traditional culturing methods have sparked a surge in interest in molecular techniques as a means of improving the efficiency and sensitivity of microbiological food/water quality monitoring. Molecular identification of water contaminants, mainly Escherichia coli, has been extensively used. Several of the molecular-based techniques are based on amplification and detection of nucleic acids. The advantages offered by these PCR-based methods over culture-based techniques are a higher level of specificity, sensitivity, and rapidity. Of late, the development of a biosensor device that is easy to perform, highly sensitive, and selective has the potential to become indispensable in detecting low CFU of pathogenic E. coli in environmental samples. This review seeks to provide a vista of the progress made in the detection of E. coli using nucleic acid-based approaches as part of the microbiological food/water quality monitoring.
大肠杆菌特异性检测的分子诊断平台
由于社会经济条件的原因,发展中国家更容易频繁爆发病原性疾病;卫生设施和水质监测不足也是造成这种情况的原因。因此,提供微生物安全的食品/水以保护公众健康至关重要。传统培养方法的一些缺陷引发了人们对分子技术作为一种提高微生物食品/水质监测效率和灵敏度的手段的兴趣激增。水污染物(主要是大肠杆菌)的分子鉴定已得到广泛应用。一些基于分子的技术是基于核酸的扩增和检测。与基于培养的技术相比,这些基于pcr的方法提供的优势是更高水平的特异性、灵敏度和快速。最近,一种易于操作、高灵敏度和选择性的生物传感器装置的开发,有可能成为检测环境样品中致病性大肠杆菌低CFU的不可或缺的手段。本文综述了利用基于核酸的方法检测大肠杆菌作为食品/水质微生物监测的一部分所取得的进展。
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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