In vitro monitoring of drug resistance emergence during stepwise induction of bedaquiline and clofazimine, alone and in combination: a phenotypic and genotypic analysis.

IF 3.9 2区 医学 Q1 INFECTIOUS DISEASES Journal of Antimicrobial Chemotherapy Pub Date : 2024-11-11 DOI:10.1093/jac/dkae405
Suting Chen, Yuanyuan Shang, Jifang Zheng, Fengmin Huo, Yi Xue, Liping Zhao, Guanglu Jiang, Naihui Chu, Hairong Huang
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Abstract

Objectives: The co-resistance between bedaquiline and clofazimine raises significant concerns, as they are commonly co-administered as core drugs in drug-resistant TB regimens. The present study aimed to monitor drug resistance-associated gene mutations and the phenotypic change in Mycobacterium tuberculosis (Mtb) under a stepwise drug resistance induction in vitro using bedaquiline, clofazimine or combined drugs.

Methods: Drug-resistant Mtb strains were gradually induced in vitro on a drug-containing solid medium with a 2-fold increasing concentration of bedaquiline, clofazimine and their combination. The MIC of the induced drug-resistant Mtb strains was determined. The drug resistance-associated genes, including Rv0678, Rv1979c, atpE and pepQ, were sequenced and analysed.

Results: Unlike exposure to bedaquiline alone or the combination of these two drugs, clofazimine alone resulted in drug resistance gene mutations occurring later, specifically in the fourth round of induction as opposed to the second round of induction. Besides, nucleotide deletion or insertion in Rv0678 was the main mutation type for induction under the two-drug combination, while single-nucleotide polymorphisms (SNPs) in Rv0678 were the major mutation types when induced by bedaquiline or clofazimine alone. Rv0678 mutation happened at a relatively lower bedaquiline concentration exposure alone, while atpE mutation occurred at a higher bedaquiline concentration. Regardless of the drug exposure manner, a strong correlation between bedaquiline MICs and clofazimine MICs was observed in all drug resistance strains.

Conclusions: Combined exposure to bedaquiline and clofazimine developed Rv0678 mutation as early as exposure to bedaquiline alone. However, rather than SNPs, deletion and insertion were the dominant mutation types in dual-drug exposure strain.

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在贝达喹啉和氯法齐明单独或联合使用的逐步诱导过程中,对耐药性出现的体外监测:表型和基因型分析。
目的:贝达喹啉和氯喹嗪作为耐药性结核病治疗方案中的核心药物,它们之间的共同耐药性引起了人们的极大关注。本研究旨在使用贝达喹啉、氯法齐明或联合用药,在体外逐步诱导耐药性的情况下,监测耐药性相关基因突变和结核分枝杆菌(Mtb)的表型变化:方法:在含药物的固体培养基上,用浓度增加2倍的贝达喹啉、氯法齐明和它们的复方制剂逐步诱导耐药Mtb菌株。测定了诱导出的耐药 Mtb 菌株的 MIC。对耐药性相关基因(包括 Rv0678、Rv1979c、atpE 和 pepQ)进行了测序和分析:结果:与单独使用贝达喹啉或这两种药物联合使用不同,单独使用氯法齐明导致耐药基因突变发生的时间较晚,特别是在第四轮诱导期,而不是第二轮诱导期。此外,Rv0678的核苷酸缺失或插入是两药联合诱导时的主要突变类型,而Rv0678的单核苷酸多态性(SNPs)则是单独使用贝达喹啉或氯氟嗪诱导时的主要突变类型。Rv0678突变发生在相对较低的贝达喹啉浓度下,而atpE突变发生在较高的贝达喹啉浓度下。无论药物暴露方式如何,在所有耐药菌株中都观察到了贝达喹啉 MIC 与氯唑明 MIC 之间的强相关性:结论:与单独使用贝达喹啉相比,联合使用贝达喹啉和氯喹嗪会更早产生Rv0678突变。然而,双药暴露菌株的主要突变类型不是SNP,而是缺失和插入。
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来源期刊
CiteScore
9.20
自引率
5.80%
发文量
423
审稿时长
2-4 weeks
期刊介绍: The Journal publishes articles that further knowledge and advance the science and application of antimicrobial chemotherapy with antibiotics and antifungal, antiviral and antiprotozoal agents. The Journal publishes primarily in human medicine, and articles in veterinary medicine likely to have an impact on global health.
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