结核分枝杆菌
基因组
核酸
肺结核
计算生物学
基因组DNA
生物
病菌
DNA
胎儿游离DNA
病毒学
医学
基因
遗传学
病理
怀孕
胎儿
产前诊断
作者
Sri Gowtham Thakku,Jackson Lirette,Kanagavel Murugesan,Julie Chen,Grant Theron,Niaz Banaei,Paul C. Blainey,James Gomez,Sharon Y. Wong,Deborah T. Hung
标识
DOI:10.1038/s41467-023-37183-8
摘要
Abstract Detection of microbial cell-free DNA (cfDNA) circulating in the bloodstream has emerged as a promising new approach for diagnosing infection. Microbial diagnostics based on cfDNA require assays that can detect rare and highly fragmented pathogen nucleic acids. We now report WATSON (Whole-genome Assay using Tiled Surveillance Of Nucleic acids), a method to detect low amounts of pathogen cfDNA that couples pooled amplification of genomic targets tiled across the genome with pooled CRISPR/Cas13-based detection of these targets. We demonstrate that this strategy of tiling improves cfDNA detection compared to amplification and detection of a single targeted locus. WATSON can detect cfDNA from Mycobacterium tuberculosis in plasma of patients with active pulmonary tuberculosis, a disease that urgently needs accurate, minimally-invasive, field-deployable diagnostics. We thus demonstrate the potential for translating WATSON to a lateral flow platform. WATSON demonstrates the ability to capitalize on the strengths of targeting microbial cfDNA to address the need for point-of-care diagnostic tests for infectious diseases.
科研通智能强力驱动
Strongly Powered by AbleSci AI