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Evaluation of Whole-Genome Sequence Method to Diagnose Resistance of 13 Anti-tuberculosis Drugs and Characterize Resistance Genes in Clinical Multi-Drug Resistance Mycobacterium tuberculosis Isolates From China

机译:全基因组测序方法对中国13种抗结核药物的耐药性及表征其临床多药耐药结核分枝杆菌耐药基因的评价

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摘要

>Background: Whole-genome sequencing (WGS) is a viable and financially feasible tool for timely and comprehensive diagnosis of drug resistance in developed countries. With the increase in the incidence of multidrug-resistant tuberculosis (MDR-TB), second-line anti-TB drugs are gaining importance. However, genetic resistance to second-line anti-TB drugs based on WGS has not been fully studied.>Methods: We randomly selected 100 MDR-TB and 10 non-MDR-TB isolates from a hospital in Zhejiang Province, China. Drug susceptibility tests against 13 anti-TB drugs were performed, and 34 drug resistance-related genes were analyzed using WGS in all isolates. For each drug, the accuracy, sensitivity, specificity, and positive and negative predictive values of WGS were compared with those of the conventional drug susceptibility test.>Results: The overall sensitivity and specificity for WGS were respectively, 99.0 and 100.0% for isoniazid (INH), 99.0 and 100.0% for rifampicin (RIF), 94.8 and 65.3% for ethambutol (EMB), 86.2 and 84.4% for pyrazinamide (PZA), 95.6 and 95.6% for levofloxacin (LFX), 89.5 and 65.3% for moxifloxacin (MFX), 91.3 and 95.1% for streptomycin (SM), 90.9 and 99.0% for kanamycin, 90.9 and 100.0% for amikacin, 88.9 and 98.0% for capreomycin, 87.0 and 85.1% for prothionamide (PTO), 85.7 and 99.0% for para-aminosalicylic acid (PAS), and 66.7 and 95.9% for clofazimine (CLO).>Conclusions: WGS is a promising approach to predict resistance to INH, RIF, PZA, LFX, SM, second-line injectable drugs (SLIDs), and PTO with satisfactory accuracy, sensitivity, and specificity of over 85.0%. The specificity of WGS in diagnosing resistance to EMB, and high-level resistance to MFX (2.0 mg/L) needs to be improved.
机译:>背景:全基因组测序(WGS)是一种可行且在财务上可行的工具,可用于发达国家中的及时,全面的耐药性诊断。随着耐多药结核病(MDR-TB)发病率的增加,二线抗结核药物变得越来越重要。但是,尚未充分研究基于WGS的二线抗结核药物的遗传抗药性。>方法:我们从浙江省一家医院中随机选择了100株耐多药结核病和10株非耐多药结核病菌株中国的省。进行了针对13种抗结核药物的药敏试验,并在所有分离物中使用WGS分析了34种与耐药性相关的基因。将每种药物的WGS准确性,敏感性,特异性以及阳性和阴性预测值与常规药物敏感性测试的结果进行比较。>结果:WGS的总体敏感性和特异性分别为99.0异烟肼(INH)为100.0%,利福平(RIF)为99.0和100.0%,乙胺丁醇(EMB)为94.8和65.3%,吡嗪酰胺(PZA)为86.2和84.4%,左氧氟沙星(LFX)为95.6和95.6%,89.5莫西沙星(MFX)为65.3%,链霉素(SM)为91.3%和95.1%,卡那霉素为90.9和99.0%,丁胺卡那霉素为90.9和100.0%,卡普霉素为88.9和98.0%,乙硫酰胺(PTO)为87.0和85.1%,对氨基水杨酸(PAS)占85.7%和99.0%,氯法齐明(CLO)占66.7和95.9%。>结论: WGS是一种有前景的方法,可预测对INH,RIF,PZA,LFX, SM,二线可注射药物(SLID)和PTO,其准确度,敏感性和特异性均令人满意,超过85.0%。 WGS在诊断EMB耐药性和对MFX的高水平耐药性(2.0 mg / L)方面的特异性有待提高。

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