Ngashangva Lightson, Hemdan Bahaa A, El-Liethy Mohamed Azab, Bachu Vinay, Minteer Shelley D, Goswami Pranab
Transdisciplinary Biology, Rajiv Gandhi Centre for Biotechnology (RGCB), Thiruvanthapuram, Kerala 695014, India.
Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, Guwahati, Assam 781039, India.
Micromachines (Basel). 2022 Jul 8;13(7):1083. doi: 10.3390/mi13071083.
The development of robust bioanalytical devices and biosensors for infectious pathogens is progressing well with the advent of new materials, concepts, and technology. The progress is also stepping towards developing high throughput screening technologies that can quickly identify, differentiate, and determine the concentration of harmful pathogens, facilitating the decision-making process for their elimination and therapeutic interventions in large-scale operations. Recently, much effort has been focused on upgrading these analytical devices to an intelligent technological platform by integrating them with modern communication systems, such as the internet of things (IoT) and machine learning (ML), to expand their application horizon. This review outlines the recent development and applications of bioanalytical devices and biosensors to detect pathogenic microbes in environmental samples. First, the nature of the recent outbreaks of pathogenic microbes such as foodborne, waterborne, and airborne pathogens and microbial toxins are discussed to understand the severity of the problems. Next, the discussion focuses on the detection systems chronologically, starting with the conventional methods, advanced techniques, and emerging technologies, such as biosensors and other portable devices and detection platforms for pathogens. Finally, the progress on multiplex assays, wearable devices, and integration of smartphone technologies to facilitate pathogen detection systems for wider applications are highlighted.
随着新材料、概念和技术的出现,用于检测传染性病原体的强大生物分析设备和生物传感器的研发进展顺利。这一进展也正朝着开发高通量筛选技术迈进,该技术能够快速识别、区分并确定有害病原体的浓度,从而有助于在大规模行动中做出消除病原体和进行治疗干预的决策。最近,人们致力于通过将这些分析设备与现代通信系统(如物联网(IoT)和机器学习(ML))集成,将其升级为智能技术平台,以拓展其应用范围。本综述概述了生物分析设备和生物传感器在检测环境样本中致病微生物方面的最新进展和应用。首先,讨论了食源性病原体、水源性病原体、空气传播病原体和微生物毒素等致病微生物近期爆发的性质,以了解问题的严重性。接下来,按时间顺序重点讨论检测系统,从传统方法、先进技术到新兴技术,如生物传感器以及其他用于病原体检测的便携式设备和检测平台。最后,强调了多重检测、可穿戴设备以及整合智能手机技术以促进病原体检测系统更广泛应用方面的进展。
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