现代生物监测方法:浅谈核酸方法的有效应用。

Rand health quarterly Pub Date : 2024-12-10 eCollection Date: 2024-12-01
Sara Duhachek Muggy, Mary Avriette, Derek Roberts, Kristin J Leuschner
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引用次数: 0

摘要

2019年冠状病毒病(COVID-19)大流行的破坏性影响促使各国政府、卫生保健机构和研究人员更加重视开发改进的手段,以发现、控制和管理未来可能爆发的疫情。作为这些努力的一部分,决策者和其他非技术人员需要了解现有的生物监测技术。在这项研究中,作者总结了当前和新兴的核酸生物监测技术是如何工作的,描述了它们的能力和局限性,并讨论了新兴技术的前景。生物监测系统用于检测、监测和描述人类和动物种群、食物、废水和环境中的健康威胁或病原体。核酸检测评估包括脱氧核糖核酸(DNA)和核糖核酸(RNA)的核酸,以确定临床样品(即医学实验室从有症状的人身上收集的样品)或环境样品(例如废水)中存在的生物制剂。这组作者描述了一种测试废水中病原体的方案,该方案在一个全面的、不知道病原体的生物监测系统中使用检测技术。废水检测提供了一种收集样本的方法,而不需要有症状的个体到诊所就诊。因此,这种检测可以在出现症状之前提供数据,并从那些获得临床护理机会较少的人那里获得数据。该案例研究展示了开发一种真正的病原体不可知、具有成本效益的废水生物监测系统所需的进步。这组作者的结论是,对建立生物监测项目感兴趣的决策者应该仔细评估他们的具体研究问题和他们的资源限制,以确定哪种技术最适合他们的需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modern Biosurveillance Methods: A Lay Introduction to Effective Use of Nucleic Acid Methods.

The devastating impact of the coronavirus disease 2019 (COVID-19) pandemic has led governments, health care institutions, and researchers to intensify their focus on developing improved means to detect, contain, and manage potential future outbreaks. As part of these efforts, policymakers and other nontechnical personnel need to understand available biosurveillance technologies. In this study, the authors summarize how current and emerging nucleic acid biosurveillance techniques work, describe their capabilities and limitations, and discuss the promise of emerging technologies. Biosurveillance systems are used to detect, monitor, and characterize health threats, or pathogens, in human and animal populations, food, wastewater, and the environment. Nucleic acid testing assesses nucleic acids, comprising deoxyribonucleic acid (DNA) and ribonucleic acid (RNA), to determine the biologic agents present in clinical samples (i.e., a sample collected by a medical laboratory from a symptomatic human) or environmental samples (e.g., wastewater). The authors describe a scenario of testing for pathogens in wastewater that uses detection technology within a comprehensive and pathogen-agnostic biosurveillance system. Wastewater testing offers a method for collecting samples without needing symptomatic individuals to present at clinics for care. Such testing can, therefore, offer data prior to symptoms and from those who have less access to clinical care. The case study demonstrates the advancements needed to develop a truly pathogen-agnostic, cost-effective wastewater biosurveillance system. The authors conclude that policymakers interested in establishing a biosurveillance program should carefully evaluate their specific research questions and their resource limitations to determine which technology is best suited to their needs.

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