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Quinolone-resistant Salmonella Typhi in South Africa, 2003-2007.

机译:2003-2007年南非抗喹诺酮类伤寒沙门氏菌。

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摘要

In South Africa, for the years 2003-2007, the Enteric Diseases Reference Unit received 510 human isolates of Salmonella Typhi, of which 27 were nalidixic acid-resistant minimum inhibitory concentrations (MICs) 128-512 microg/ml with reduced susceptibility to ciprofloxacin (MICs 0.125-0.5 microg/ml). Pulsed-field gel electrophoresis analysis of 19 available isolates differentiated them into five DNA pattern types; multiple-locus variable-number tandem repeat analysis differentiated the isolates into 10 types. This level of genetic diversity suggested that resistant strains usually emerged independently of one another. A 16- to 32-fold decrease in nalidixic acid MIC and a 2- to 8-fold decrease in ciprofloxacin MIC, was observed in the presence of an efflux pump inhibitor. All isolates were negative by PCR screening for qnr genes. Seven resistant isolates were further analysed for mutations in the quinolone resistance-determining region of gyrA, gyrB, parC and parE. No amino-acid mutations were identified in GyrB and ParE; all isolates showed amino-acid mutations in both GyrA and ParC. We conclude that amino-acid mutations in GyrA and ParC in combination with active efflux of antibiotic out of the bacterial cell are the probable mechanisms conferring quinolone resistance.
机译:在南非,2003-2007年,肠道疾病参考股收到了510份伤寒沙门氏菌人源分离株,其中27份对萘啶酸耐药[最低抑制浓度为128-512微克/毫升],对环丙沙星的敏感性降低(微生物级为0.125-0.5微克/毫升)。对 19 种可用分离株进行脉冲场凝胶电泳分析,将它们分为 5 种 DNA 模式类型;多位点变数串联重复分析将分离株分为10种类型。这种遗传多样性水平表明,抗性菌株通常彼此独立出现。在存在外排泵抑制剂的情况下,观察到萘啶酸 MIC 降低 16 至 32 倍,环丙沙星 MIC 降低 2 至 8 倍。通过PCR筛选qnr基因,所有分离株均为阴性。进一步分析了 7 种耐药分离株在 gyrA、gyrB、parC 和 parE 的喹诺酮类药物耐药决定区域的突变。在 GyrB 和 ParE 中未发现氨基酸突变;所有分离株均在 GyrA 和 ParC 中均显示氨基酸突变。我们得出结论,GyrA 和 ParC 中的氨基酸突变与细菌细胞中抗生素的活性外流相结合是赋予喹诺酮类药物耐药性的可能机制。

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