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Detecting Biothreat Agents: From Current Diagnostics to Developing Sensor Technologies

背景(考古学) 生物战 生物防卫 人口 埃博拉病毒 风险分析(工程) 生物技术 爆发 生物 医学 病毒学 环境卫生 微生物学 毒理 古生物学
作者
Scott A. Walper,Guillermo Lasarte‐Aragonés,Kim E. Sapsford,Carl W. Brown,Clare E. Rowland,Joyce C. Breger,Igor L. Medintz
出处
期刊:ACS Sensors [American Chemical Society]
卷期号:3 (10): 1894-2024 被引量:141
标识
DOI:10.1021/acssensors.8b00420
摘要

Although a fundamental understanding of the pathogenicity of most biothreat agents has been elucidated and available treatments have increased substantially over the past decades, they still represent a significant public health threat in this age of (bio)terrorism, indiscriminate warfare, pollution, climate change, unchecked population growth, and globalization. The key step to almost all prevention, protection, prophylaxis, post-exposure treatment, and mitigation of any bioagent is early detection. Here, we review available methods for detecting bioagents including pathogenic bacteria and viruses along with their toxins. An introduction placing this subject in the historical context of previous naturally occurring outbreaks and efforts to weaponize selected agents is first provided along with definitions and relevant considerations. An overview of the detection technologies that find use in this endeavor along with how they provide data or transduce signal within a sensing configuration follows. Current “gold” standards for biothreat detection/diagnostics along with a listing of relevant FDA approved in vitro diagnostic devices is then discussed to provide an overview of the current state of the art. Given the 2014 outbreak of Ebola virus in Western Africa and the recent 2016 spread of Zika virus in the Americas, discussion of what constitutes a public health emergency and how new in vitro diagnostic devices are authorized for emergency use in the U.S. are also included. The majority of the Review is then subdivided around the sensing of bacterial, viral, and toxin biothreats with each including an overview of the major agents in that class, a detailed cross-section of different sensing methods in development based on assay format or analytical technique, and some discussion of related microfluidic lab-on-a-chip/point-of-care devices. Finally, an outlook is given on how this field will develop from the perspective of the biosensing technology itself and the new emerging threats they may face.

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