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[用于传染病诊断的高通量测序:中枢神经系统感染中鸟枪法宏基因组学实例]

[High-throughput sequencing for infectious disease diagnoses: Example of shotgun metagenomics in central nervous system infections].

作者信息

Marchand S, Rodriguez C, Woerther P-L

机构信息

Département de microbiologie, hôpital Henri Mondor, AP-HP, Créteil, France; Plateforme de génomique, hôpital Henri Mondor, AP-HP, Créteil, France.

Département de microbiologie, hôpital Henri Mondor, AP-HP, Créteil, France; Plateforme de génomique, hôpital Henri Mondor, AP-HP, Créteil, France; Inserm U955, université Paris-Est Créteil, Créteil, France.

出版信息

Rev Med Interne. 2024 Mar;45(3):166-173. doi: 10.1016/j.revmed.2023.05.002. Epub 2023 May 23.

Abstract

The advent of high-throughput sequencing in clinical microbiology is opening the way to new diagnostic and prognostic approaches in infectious diseases. Detection, identification and characterisation of pathogenic microorganisms are essential steps in diagnosis and implementation of appropriate antimicrobial therapy. However, standard methods of microbiological diagnosis are failing in some cases. In addition, the emergence of new infections, facilitated by international travel and global warming, requires the implementation of innovative diagnostic methods. Among the different strategies used in clinical microbiology and reviewed in this article, shotgun metagenomics is the only technique that allows today a panpathogenic and unbiased detection of all microorganisms potentially responsible for an infectious disease, including those still unknown. The aims of this article are to present the different possible strategies of high-throughput sequencing used in the microbiological diagnosis of infectious diseases and to highlight the diagnostic contribution of shotgun metagenomics in the field of central nervous system infections.

摘要

临床微生物学中高通量测序技术的出现,为传染病的新诊断和预后方法开辟了道路。病原微生物的检测、鉴定和特征描述是诊断和实施适当抗菌治疗的关键步骤。然而,标准的微生物诊断方法在某些情况下并不适用。此外,国际旅行和全球变暖促使新感染的出现,这就需要采用创新的诊断方法。在本文所综述的临床微生物学中使用的不同策略中,鸟枪法宏基因组学是目前唯一能够对所有可能导致传染病的微生物进行泛病原体和无偏检测的技术,包括那些尚不为人知的微生物。本文的目的是介绍在传染病微生物诊断中使用的高通量测序的不同可能策略,并强调鸟枪法宏基因组学在中枢神经系统感染领域的诊断贡献。

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