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◆ Frontiers in cellular and infection microbiology2026-01-01

Clinical utility of targeted next-generation sequencing for rapid detection, species differentiation, drug resistance profiling, and prognostic evaluation in Mycobacterium tuberculosis: a multi-center retrospective cohort study.

Li Shi, Mingde Ni, Fan Yang, Wei Shi, Xiuwu Liu, Chen Ni, Fang He, Yunhui Huang, Xiaoyun Yang, Yi Pei

一句话结论

tNGS enables rapid, accurate, and comprehensive diagnosis of mycobacterial infections, reliably differentiates TB from NTM, and provides drug-resistance profiles to inform therapy, with the potential to assist in optimizing clinical management of TB.

原始摘要(原文)
BACKGROUND: Tuberculosis (TB) remains a global health threat, which is complicated by challenges in distinguishing TB from nontuberculous mycobacteria (NTM) infections and drug resistance. Conventional diagnostics (including culture, Xpert MTB/RIF, AFB smear, T-SPOT.TB, etc.) are limited by inadequate differentiation of TB and NTM, incomplete resistance profiling, and prolonged turnaround times. METHODS: This retrospective multicenter study enrolled 130 patients with suspected mycobacterial infection between August 2023 and June 2024 at two tertiary hospitals in China. Patients were classified as TB (n=91), NTM (n=18), Other (n=17) and Mixed infection (n=4) based on a composite reference standard (final clinical diagnosis) established independently of targeted next-generation sequencing (tNGS) results. Performance of tNGS versus conventional methods was evaluated across different sample types. Diagnostic performance, drug-resistance detection, therapeutic impact and clinical outcomes were analyzed. RESULTS: The overall agreement of tNGS detection with clinical diagnoses of pathogens was 80.9% in sputum and 71.3% in bronchoalveolar lavage fluid (BALF), exceeding conventional methods (which remained below 55%). Critically, tNGS effectively distinguished TB from NTM, with diagnostic sensitivity of 84.0% (95% CI, 75.0%-90.8%) for TB and 90.5% (95% CI, 69.6%-98.8%) for NTM, and specificity of 100.0% (95% CI, 90.3%-100.0%) for TB and 99.1% (95% CI, 95.0%-100.0%) for NTM. tNGS simultaneously detected resistance-associated variants relevant to 11 antimycobacterial drugs within approximately 24 hours. Treatment regimens for 52 patients (41.3%) were adjusted following tNGS reporting. Of these, 82.7% showed subsequent clinical improvement, however, these outcome data remain descriptive and do not establish causality. CONCLUSIONS: tNGS enables rapid, accurate, and comprehensive diagnosis of mycobacterial infections, reliably differentiates TB from NTM, and provides drug-resistance profiles to inform therapy, with the potential to assist in optimizing clinical management of TB.
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Clinical utility of targeted next-generation sequencing for rapid detection, species differentiation, drug resistance profiling, and prognostic evaluation in Mycobacterium tuberculosis: a multi-center retrospective cohort study. — 科研速览 Science Skim