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Opportunities and Challenges for Biosensors and Nanoscale Analytical Tools for Pandemics: COVID-19

机译:生物传感器和纳米级分析工具的机遇和挑战:Covid-19

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Biosensors and nanoscale analytical tools have shown huge growth in literature in the past 20 years, with a large number of reports on the topic of `ultrasensitive', 'cost-effective', and 'early detection' tools with a potential of 'massproduction' cited on the web of science. Yet none of these tools are commercially available in the market or practically viable for mass production and use in pandemic diseases such as coronavirus disease 2019 (COVID-19). In this context, we review the technological challenges and opportunities of current bio/chemical sensors and analytical tools by critically analyzing the bottlenecks which have hindered the implementation of advanced sensing technologies in pandemic diseases. We also describe in brief COVID-19 by comparing it with other pandemic strains such as that of severe acute respiratory syndrome (SARS) and Middle East respiratory syndrome (MERS) for the identification of features that enable biosensing. Moreover, we discuss visualization and characterization tools that can potentially be used not only for sensing applications but also to assist in speeding up the drug discovery and vaccine development process. Furthermore, we discuss the emerging monitoring mechanism, namely wastewater-based epidemiology, for early warning of the outbreak, focusing on sensors for rapid and on-site analysis of SARS-CoV2 in sewage. To conclude, we provide holistic insights into challenges associated with the quick translation of sensing technologies, policies, ethical issues, technology adoption, and an overall outlook of the role of the sensing technologies in pandemics.
机译:生物传感器和纳米级分析工具在过去的20年里显示了文学的巨大增长,有大量关于“超敏”,“成本效益”的主题的报告,并“早期检测”工具具有“大规模生产”引用科学网络。然而,这些工具都不是在市场上商业上可获得的或在大规模生产中可行,并且在番荔枝病如冠状病毒疾病(Covid-19)中的大规模生产和使用。在这种情况下,我们通过批判性地分析了阻碍了大流行疾病实施先进传感技术的瓶颈,审查了当前生物/化学传感器和分析工具的技术挑战和机遇。我们还通过将其与其他大流行菌株进行比较,如严重急性呼吸综合征(SARS)和中东呼吸综合征(MERS)的其他大流行菌株进行了描述,以确定能够生物传感的特征。此外,我们讨论可视化和表征工具,可能不仅可以用于传感应用,而且还可以帮助加快药物发现和疫苗开发过程。此外,我们讨论了新兴的监测机制,即废水的流行病学,用于爆发的早期预警,专注于污水中SARS-COV2快速和现场分析的传感器。为了得出结论,与快速翻译传感技术,政策,道德问题,技术采用的快速翻译,以及传感技术在流行中的作用的总体观察,提供全面的洞察力。

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