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抗微生物药物耐药性的基因组学——进展与未来方向

Genomics for antimicrobial resistance-progress and future directions.

作者信息

Sherry Norelle L, Lee Jean Y H, Giulieri Stefano G, Connor Christopher H, Horan Kristy, Lacey Jake A, Lane Courtney R, Carter Glen P, Seemann Torsten, Egli Adrian, Stinear Timothy P, Howden Benjamin P

机构信息

Microbiological Diagnostic Unit Public Health Laboratory, Department of Microbiology and Immunology, University of Melbourne at the Doherty Institute for Infection and Immunity, Melbourne, Victoria, Australia.

WHO Collaborating Centre for Antimicrobial Resistance, Doherty Institute for Infection and Immunity, Melbourne, Victoria, Australia.

出版信息

Antimicrob Agents Chemother. 2025 May 7;69(5):e0108224. doi: 10.1128/aac.01082-24. Epub 2025 Apr 14.

Abstract

Antimicrobial resistance (AMR) is a critical global public health threat, with bacterial pathogens of primary concern. Pathogen genomics has revolutionized the study of bacterial pathogens and provided deep insights into the mechanisms and dissemination of AMR, with the precision of whole-genome sequencing informing better control strategies. However, generating actionable data from genomic surveillance and diagnostic efforts requires integration at the public health and clinical interface that goes beyond academic efforts to identify resistance mechanisms, undertake analyses of outbreaks, and share data after research publications. In addition to timely genomics data, consideration also needs to be given to epidemiological sampling frames, analysis, and reporting mechanisms that meet International Organization for Standardization (ISO) standards and generation of reports that are interpretable and actionable for public health and clinical "end-users." Importantly, ensuring all countries have equitable access to data and technology is critical, through timely data sharing following the FAIR principles (findable, accessible, interoperable, and re-usable). In this review, we describe (i) advances in genomic approaches for AMR research and surveillance to understand emergence, evolution, and transmission of AMR and the key requirements to enable this work and (ii) discuss emerging and future applications of genomics at the clinical and public health interface, including barriers to implementation. Harnessing advances in genomics-enhanced AMR research and embedding robust and reproducible workflows within clinical and public health practice promises to maximize the impact of pathogen genomics for AMR globally in the coming decade.

摘要

抗菌药物耐药性(AMR)是全球公共卫生面临的重大威胁,主要关注的是细菌病原体。病原体基因组学彻底改变了对细菌病原体的研究,并为AMR的机制和传播提供了深刻见解,全基因组测序的精确性有助于制定更好的控制策略。然而,要从基因组监测和诊断工作中生成可采取行动的数据,需要在公共卫生和临床界面进行整合,这超出了学术层面识别耐药机制、开展疫情分析以及在研究发表后共享数据的努力。除了及时的基因组学数据外,还需要考虑符合国际标准化组织(ISO)标准的流行病学抽样框架、分析和报告机制,以及生成对公共卫生和临床“最终用户”具有可解释性和可操作性的报告。重要的是,通过遵循FAIR原则(可查找、可访问、可互操作和可重复使用)及时共享数据,确保所有国家都能公平获取数据和技术至关重要。在本综述中,我们描述了(i)AMR研究和监测的基因组学方法的进展,以了解AMR的出现、演变和传播以及开展这项工作的关键要求,以及(ii)讨论基因组学在临床和公共卫生界面的新兴及未来应用,包括实施障碍。利用基因组学增强的AMR研究进展,并将强大且可重复的工作流程嵌入临床和公共卫生实践中,有望在未来十年最大限度地提高病原体基因组学对全球AMR的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/073f/12057382/e4477df9014d/aac.01082-24.f001.jpg

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