实时基因组监测,加强对传染病和抗生素耐药性的控制

Marc J. Struelens, Catherine Ludden, Guido Werner, V. Sintchenko, P. Jokelainen, Margaret Ip
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引用次数: 2

摘要

本文主张在对 SARS-CoV-2 变异体进行大规模基因组测序分析以指导 COVID-19 监测和公共卫生响应所取得的成功基础上,采用 "一个健康 "方法,动员病原体基因组监测来遏制和减轻传染病及抗菌药耐药性 (AMR) 对健康的威胁。应通过促进 (i) 病原体实时全基因组序列(WGS)数据的普及利用,为临床实践、感 染控制、公共卫生政策以及疫苗和抗菌药物的研究与开发提供信息,来提高实验室 监测和流行病警报系统的能力;(ii) 将微生物学诊断数据、无症状个体检测数据、病原体序列数据、临床数据和流 行病学数据纳入监测计划; (iii) 加强医疗保健、公共卫生、动物健康和环境监测之间的跨部门合作,并采用 "一 体健康 "方法开展研究,以了解病原体和 AMR 在生态系统中的生态和传播途径;(iv) 监测网络的国际合作与互联、实验室方法的统一、全球报告监测方法的标准化,包括病原体基因组变异或菌株命名;(v) 根据 FAIR(可查找性、可访问性、互操作性和可重用性)原则,在监测网络、数据库和平台之间进行负责任的数据共享;(vi) 研究基因组监测系统的实施及其在不同环境下针对不同病原体和 AMR 威胁的成本效益。地区和全球 "一个健康 "政策和管理倡议应促进病原体基因组监测的协调发展和有效利用,以保护人类、动物和环境的健康。
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Real-time genomic surveillance for enhanced control of infectious diseases and antimicrobial resistance
This article advocates for mobilizing pathogen genomic surveillance to contain and mitigate health threats from infectious diseases and antimicrobial resistance (AMR), building upon successes achieved by large-scale genome sequencing analysis of SARS-CoV-2 variants in guiding COVID-19 monitoring and public health responses and adopting a One Health approach. Capabilities of laboratory-based surveillance and epidemic alert systems should be enhanced by fostering (i) universal access to real-time whole genome sequence (WGS) data of pathogens to inform clinical practice, infection control, public health policies, and vaccine and antimicrobial drug research and development; (ii) integration of diagnostic microbiology data, data from testing asymptomatic individuals, pathogen sequence data, clinical data, and epidemiological data into surveillance programs; (iii) stronger cross-sectorial collaborations between healthcare, public health, animal health, and environmental surveillance and research using One Health approaches, toward understanding the ecology and transmission pathways of pathogens and AMR across ecosystems; (iv) international collaboration and interconnection of surveillance networks, harmonization of laboratory methods, and standardization of surveillance methods for global reporting, including on pathogen genomic variant or strain nomenclature; (v) responsible data sharing between surveillance networks, databases, and platforms according to FAIR (findability, accessibility, interoperability, and reusability) principles; and (vi) research on genomic surveillance system implementation and its cost-effectiveness for different pathogens and AMR threats across different settings. Regional and global One Health policies and governance initiatives should foster the concerted development and efficient utilization of pathogen genomic surveillance to protect the health of humans, animals, and the environment.
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Frontiers of medicine unveiled: equitable access is an imperative COVID-19: the renaissance of science in the face of adversity Standing the test of COVID-19: charting the new frontiers of medicine Fast-forwarding collaborative surveillance Real-time genomic surveillance for enhanced control of infectious diseases and antimicrobial resistance
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