Clinical application of metagenomic next-generation sequencing in the diagnosis of severe pneumonia pathogens
Raojuan Huang, Ying Zhang, Caitao Dong, Jingdi Chen, Handong Zou, Yang Liu, Mengmeng Guo, Hang Gao, Quan Ke, Wei Wu

TL;DR
Metagenomic next-generation sequencing (mNGS) is more effective than traditional methods in diagnosing severe pneumonia pathogens in ICU patients.
Contribution
This study demonstrates mNGS's superior diagnostic performance over conventional microbial testing for severe pneumonia in a clinical setting.
Findings
mNGS had a significantly higher positivity rate (93.5%) compared to conventional methods (55.7%).
mNGS detected more bacterial, fungal, and viral species than conventional testing.
Mixed infections were identified more frequently with mNGS (62.8%) than with conventional methods (18.3%).
Abstract
Severe pneumonia is a significant cause of mortality among ICU patients. Metagenomic next-generation sequencing (mNGS) is an advanced, comprehensive, unbiased diagnostic tool for pathogen identification in infectious diseases. This study aimed to evaluate the clinical efficacy of mNGS for diagnosing severe pneumonia. This study retrospectively analyzed 323 patients with suspected severe pneumonia admitted to the intensive care unit (ICU) of Wuhan University Renmin Hospital between January 2022 and December 2023. Bronchoalveolar lavage fluid (BALF) samples were collected from all 323 patients, and blood samples were obtained from 80 patients. Both mNGS and conventional microbial testing (CMT) were performed on the collected BALF and blood samples to analyze the pathogen spectrum. The diagnostic performance of mNGS and CMT was systematically evaluated and compared. The overall…
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Taxonomy
TopicsBacterial Identification and Susceptibility Testing · Pneumonia and Respiratory Infections · Pneumocystis jirovecii pneumonia detection and treatment
