Dohál Matúš, Porvazník Igor, Solovič Ivan, Mokrý Juraj
Biomedical Center Martin, Department of Pharmacology, Jessenius Faculty of Medicine, Comenius University, 036 01 Martin, Slovakia.
National Institute of Tuberculosis, Lung Diseases and Thoracic Surgery, 059 81 Vyšné Hágy, Slovakia.
Microorganisms. 2021 Oct 27;9(11):2237. doi: 10.3390/microorganisms9112237.
Infections caused by non-tuberculous mycobacteria (NTM) have been a public health problem in recent decades and contribute significantly to the clinical and economic burden globally. The diagnosis of infections is difficult and time-consuming and, in addition, the conventional diagnostics tests do not have sufficient discrimination power in species identification due to cross-reactions and not fully specific probes. However, technological advances have been made and the whole genome sequencing (WGS) method has been shown to be an essential part of routine diagnostics in clinical mycobacteriology laboratories. The use of this technology has contributed to the characterization of new species of mycobacteria, as well as the identification of gene mutations encoding resistance and virulence factors. Sequencing data also allowed to track global outbreaks of nosocomial NTM infections caused by complex and . To highlight the utility of WGS, we summarize recent scientific studies on WGS as a tool suitable for the management of NTM-induced infections in clinical practice.
近几十年来,非结核分枝杆菌(NTM)引起的感染一直是一个公共卫生问题,给全球带来了巨大的临床和经济负担。感染的诊断困难且耗时,此外,由于交叉反应和不完全特异性的探针,传统诊断测试在菌种鉴定中没有足够的鉴别能力。然而,技术已经取得了进步,全基因组测序(WGS)方法已被证明是临床分枝杆菌学实验室常规诊断的重要组成部分。这项技术的应用有助于分枝杆菌新物种的鉴定,以及编码耐药性和毒力因子的基因突变的识别。测序数据还可以追踪由复杂菌引起的医院内NTM感染的全球暴发情况。为了突出WGS的实用性,我们总结了近期关于WGS作为临床实践中管理NTM感染的适用工具的科学研究。