首页> 外文期刊>Antimicrobial agents and chemotherapy. >In Vitro Drug Susceptibility of Bedaquiline, Delamanid, Linezolid, Clofazimine, Moxifloxacin, and Gatifloxacin against Extensively Drug-Resistant Tuberculosis in Beijing, China
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In Vitro Drug Susceptibility of Bedaquiline, Delamanid, Linezolid, Clofazimine, Moxifloxacin, and Gatifloxacin against Extensively Drug-Resistant Tuberculosis in Beijing, China

机译:体外药物易患贝壳氏菌,Delamanid,Linezolid,氯氟辛亚胺,莫西沙星和Gatifloxacin在北京抵抗广泛的耐药结核病

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摘要

Extensively drug-resistant tuberculosis (XDR-TB) is a deadly form of TB that can be incurable due to its extreme drug resistance. In this study, we aimed to explore the in vitro susceptibility to bedaquiline (BDQ), delamanid (DMD), linezolid (LZD), clofazimine (CLO), moxifloxacin (MFX), and gatifloxacin (GAT) of 90 XDR-TB strains isolated from patients in China. We also describe the genetic characteristics of XDR-TB isolates with acquired drug resistance. Resistance to MFX, GAT, LZD, CLO, DMD, and BDQ was found in 82 (91.1%), 76 (84.4%), 5 (5.6%), 5 (5.6%), 4 (4.4%), and 3 (3.3%) isolates among the XDR-TB strains, respectively. The most frequent mutations conferring fluoroquinolone resistance occurred in codon 94 of the gyrA gene (57.8%), and the strains with these mutations (69.2%) were associated with highlevel MFX resistance compared to strains with mutations in codon 90 (25.0%) (P < 0.01). All 5 CLO-resistant isolates exhibited >= 4-fold upward shifts in the BDQ MIC, which were attributed to mutations of codons 53 (60.0%) and 157 (20.0%) in the Rv0678 gene. Additionally, mutation in codon 318 of the fbiC gene was identified as the sole mutation related to DMD resistance. In conclusion, our data demonstrate that the XDR-TB strains exhibit a strikingly high proportion of resistance to the current anti-TB drugs, whereas BDQ, DMD, LZD, and CLO exhibit excellent in vitro activity against XDR-TB in the National Clinical Center on TB of China. The extensive cross-resistance between OFX and later-generation fluoroquinolones indicates that MFX and GAT may have difficulty in producing the desired effect for XDR-TB patients.
机译:广泛的耐药性结核(XDR-TB)是一种致命形式的TB,由于其极端耐药性而可能是不可市性的。在这项研究中,我们旨在探讨对分离的90 XDR-TB菌株的甲基金属(BDQ),DERAMANID(DMD),LINAMID(DMD),线唑(LZD),氯氮酰胺(CLO),甲氧基氧化嘧啶(CLO),甲氧基氧化嘧啶(GAT)的体外易感性来自中国的患者。我们还描述了具有获得性耐药性的XDR-TB分离株的遗传特征。 82(91.1%),76(84.4%),5(5.6%),4(4.4%)和3(4.4%)和3(4.4%)和3(4.4%)和3(4.4%)和3(4.4%)和3(4.4%)和3(4.4%)和3(4.4%)和3(4.4%)和3( 3.3%)分别分离XDR-TB菌株中的分离物。赋予氟喹啉酮抗性的最常见的突变发生在GyrA基因的密码子94中(57.8%),与具有密码子90(25.0%)中突变的菌株相比,具有这些突变的菌株(69.2%)与突变相比(25.0%)(p <0.01)。所有5个抗性分离物在BDQ MIC中表现出> = 4倍向上移位,其归因于RV0678基因中的密码子53(60.0%)和157(20.0%)的突变。另外,将FBIC基因的密码子318中的突变鉴定为与DMD抗性有关的唯一突变。总之,我们的数据表明,XDR-TB菌株对目前的抗结核药物抗显着高比例的抗性,而BDQ,DMD,LZD和CLO对国家临床中心的XDR-TB表现出优异的体外活性在中国结核病。 OFX和后代氟代喹啉之间的广泛的交叉抗性表明MFX和GAT可能难以为XDR-TB患者产生所需的效果。

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  • 作者单位

    Capital Med Univ Beijing TB &

    Thorac Tumor Inst Beijing Chest Hosp Natl Clin Lab TB Beijing Key;

    Capital Med Univ Beijing TB &

    Thorac Tumor Inst Beijing Chest Hosp Natl Clin Lab TB Beijing Key;

    Capital Med Univ Beijing TB &

    Thorac Tumor Inst Beijing Chest Hosp Natl Clin Lab TB Beijing Key;

    Capital Med Univ Beijing TB &

    Thorac Tumor Inst Beijing Chest Hosp Natl Clin Lab TB Beijing Key;

    Capital Med Univ Beijing TB &

    Thorac Tumor Inst Beijing Chest Hosp Natl Clin Lab TB Beijing Key;

    Capital Med Univ Beijing TB &

    Thorac Tumor Inst Beijing Chest Hosp Natl Clin Lab TB Beijing Key;

    Capital Med Univ Beijing TB &

    Thorac Tumor Inst Beijing Chest Hosp Natl Clin Lab TB Beijing Key;

    Capital Med Univ Beijing TB &

    Thorac Tumor Inst Beijing Chest Hosp Natl Clin Lab TB Beijing Key;

    Capital Med Univ Beijing TB &

    Thorac Tumor Inst Beijing Chest Hosp Natl Clin Lab TB Beijing Key;

    Capital Med Univ Beijing TB &

    Thorac Tumor Inst Beijing Chest Hosp Natl Clin Lab TB Beijing Key;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 治疗学;
  • 关键词

    extensively drug-resistant tuberculosis; MIC; bedaquiline; delamanid; minimal inhibitory concentration;

    机译:广泛的耐药结核;MIC;BEDAQUILINE;DELAMANID;最小的抑制浓度;

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