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Principles and Recent Advances in Biosensors for Pathogens Detection

机译:病原体检测生物传感器的原理和最新进展

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Foodborne and waterborne diseases caused by pathogens pose a serious threat to human life, and the detection of such pathogens in food, water, and beverages has gained para- mount importance in view of the increasing number of pathogenic diseases in recent times. Standard and traditional analytical techniques employed for the recognition of deadly pathogens, including polymerase chain reaction-based techni- ques, immunology-based assays, culture and colony counting techniques, require several hours or perhaps even a few days for the results. All these techniques, despite being quite sensitive, are time-intensive. Therefore, several researchers are focusing on the development of rapid pathogen detection techniques. Although the most advanced biosensing technolo- gies exhibit potential approaches, significant research and testing is an urgent need to design innovative biosensors. Novel bioanalytical approaches for the recognition and quanti- fication of target pathogens are being designed and developed to enhance the characteristics of biosensors, including rapid response, selectivity, and sensitivity. In this context, we not only provide an overview of the types of biorecognition elements employed for the detection of pathogens, but also discuss in detail the traditional approaches, biomolecular techniques, the latest advances in the detection and quantifica- tion of foodborne and waterborne pathogens, with particular emphasis on biosensors.
机译:由于病原体引起的食物出生和水传播疾病对人类的生命构成了严重威胁,并且鉴于近期病原体疾病的数量越来越多,食物,水和饮料中这种病原体的检测变得越来越重要。用于识别致命病原体的标准和传统分析技术,包括基于聚合酶链反应的技术,基于免疫学的测定,培养和菌落计数技术,需要几个小时甚至几天才能获得结果。尽管非常敏感,但所有这些技术都是耗时的。因此,一些研究人员着重于快速病原体检测技术的发展。尽管最先进的生物传感技术表现出潜在的方法,但重大的研究和测试迫切需要设计创新的生物传感器。正在设计和开发用于识别和定量的新型生物分析方法,以增强生物传感器的特征,包括快速响应,选择性和敏感性。在这种情况下,我们不仅概述了用于检测病原体的生物识别元素的类型,而且还详细讨论了传统方法,生物分子技术,最新进步和量化食品的检测和量化。 ,特别强调生物传感器。

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