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Novel blaCTX-M variants and genotype-phenotype correlations among clinical isolates of extended spectrum beta lactamase-producing Escherichia coli

机译:产生超广谱β-内酰胺酶的大肠杆菌临床分离株之间的新型blaCTX-M变体和基因型-表型相关性

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摘要

The rapid emergence of multiresistant microbial pathogens, dubbed superbugs, is a serious threat to human health. Extended spectrum beta lactamase (ESBL)-producing Escherichia coli is a superbug causing worldwide outbreaks, necessitating timely and accurate tracking of resistant strains. Accordingly, this study was designed to investigate the spread of ESBL-producing Escherichia coli isolates, to analyze the effect of different genotypic and phenotypic factors on in vitro resistance patterns, and to assess the diagnostic value of commonly used ESBL genetic markers. For that purpose, we cultured 250 clinical isolates and screened their susceptibility to beta-lactam antibiotics. Among 12 antibiotics screened, only imipenem seems to have remained resilient. We subsequently analyzed the ESBL phenotype of Escherichia coli isolates and examined potential associations between their resistance phenotypes and patient-related factors. ESBL genotyping of 198 multiresistant isolates indicated that 179 contained at least one blaCTX-M gene. As we statistically dissected the data, we found associations between overall resistance and body site / type of disease. Additionally, we confirmed the diagnostic value of testing both blaCTX-M-1 and blaCTX-M-15 in providing better prediction of overall resistance. Finally, on sequencing the amplification products of detected blaCTX-M genes, we discovered two novel variants, which we named blaCTX-M-14.2 and blaCTX-M-15.2.
机译:被称为超级细菌的耐多药微生物病原体的迅速出现对人类健康构成了严重威胁。产生超广谱β-内酰胺酶(ESBL)的大肠杆菌是引起世界范围爆发的超级细菌,需要及时,准确地追踪耐药菌株。因此,本研究旨在调查产生ESBL的大肠杆菌分离株的传播,分析不同基因型和表型因子对体外耐药模式的影响,并评估常用ESBL遗传标记物的诊断价值。为此,我们培养了250个临床分离株,并筛选了它们对β-内酰胺类抗生素的敏感性。在筛选出的12种抗生素中,只有亚胺培南似乎仍然具有弹性。随后,我们分析了大肠埃希菌分离株的ESBL表型,并检查了其耐药表型与患者相关因素之间的潜在关联。 198个多抗性分离株的ESBL基因分型表明179个含有至少一个blaCTX-M基因。通过统计分析数据,我们发现总体抵抗力与身体部位/疾病类型之间存在关联。此外,我们确认了测试blaCTX-M-1和blaCTX-M-15的诊断价值,可以更好地预测总体耐药性。最后,在对检测到的blaCTX-M基因的扩增产物进行测序时,我们发现了两个新的变体,分别命名为blaCTX-M-14.2和blaCTX-M-15.2。

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