Metagenomic next‐generation sequencing of cerebrospinal fluid reveals etiological and microbiological features in patients with various central nervous system infections

Author:

Wang Xiaojuan1,Xu Huan2,Qin Lingzhi1,Wang Huimin3,Jiang Yushu1,Liu Huiqin1,Zhang Milan1,Pang Rui1,Wu Wencai2,Li Wei1ORCID

Affiliation:

1. Department of Neurology People's Hospital of Zhengzhou University, Henan Provincial People's Hospital, Henan University Zhengzhou China

2. Vision Medicals Center for Infection Diseases Guangzhou China

3. Special Ward Xinxiang Central Hospital Xinxiang China

Abstract

AbstractThe application of metagenomic next‐generation sequencing (mNGS) in pathogens detection of cerebrospinal fluid (CSF) is limited because clinical, microbiological, and biological information are not well connected. We analyzed the 428 enrolled patients' clinical features, pathogens diagnostic efficiency of mNGS in CSF, microbial community structure and composition in CSF, and correlation of microbial and clinical biomarkers in CSF. General characteristics were unspecific but helpful in formulating a differential diagnosis. CSF mNGS has a higher detection rate (34.6%) compared to traditional methods (5.4%). mNGS detection rate was higher when the time from onset to CSF collection was ≤20 days, the CSF leukocytes count was >200 × 106/L, the CSF protein concentration was >1.3 g/L, or CSF glucose concentration was ≤2.5 mmol/L in non‐postoperative bacterial CNS infections (CNSi). CSF was not strictly a sterile environment, and the potential pathogens may contribute to the dysbiosis of CSF microbiome. Furthermore, clinical biomarkers were significantly relevant to CNS pathogens. Clinical data are helpful in choosing a proper opportunity to obtain an accurate result of mNGS, and can speculate whether the mNGS results are correct or not. Our study is a pioneering study exploring the CSF microbiome in different CNSIs.

Funder

Health Commission of Henan Province

Publisher

Wiley

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