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首页> 外文期刊>The Journal of Antimicrobial Chemotherapy >Antibiotic susceptibilities and resistance genes of ureaplasma parvum isolated in South Africa
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Antibiotic susceptibilities and resistance genes of ureaplasma parvum isolated in South Africa

机译:南非分离到的小支原体的抗生素敏感性和耐药基因

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Objectives: There is only limited information on the antimicrobial susceptibilities and resistance genes of Ureaplasma parvum in South Africa. This study was designed to detect and characterize resistance genes in U. parvum. Methods: Fifteen U. parvum isolates were investigated employing the broth microdilution method (tetracycline, doxycycline, ofloxacin, erythromycin, azithromycin and josamycin). Gene analyses were performed on target regions of: tet(M); gyrA, gyrB, parC and parE; erm(A), erm(B), erm(C) and erm(E); msr(A), msr(B), msr(C) and msr(D); 23S rRNA operons; and L4 and L22 ribosomal proteins. Results: Seven of the U. parvum isolates were fully susceptible to the antibiotics tested. Five strains exhibited resistance to tetracycline (MICs 16-256 mg/L), one strain was resistant to ofloxacin (MIC 128 mg/L) and four strains were resistant to macrolides (MICs 128 mg/L); two strains showed dual resistance to tetracycline and erythromycin. The five tetracycline-resistant strains were found to have mosaic tet(M) genes, with one strain containing different specific regions to those previously described. Mutations in the L22 ribosomal protein were seen in three strains that were resistant to erythromycin (two strains) and erythromycin + azithromycin (one strain). For a further strain that was resistant to erythromycin and azithromycin, possible mechanisms of resistance remained elusive. Conclusions: This is the first report of quinolone, erythromycin and azithromycin resistance development in U. parvum from South Africa. A point mutation in parC (Pro-57 → Leu) and two novel mutations in parE (Ile-73 → Thr and a methionine insertion at codon 86) were found in an ofloxacin-resistant strain. The study reinforces the adaptability of U. parvum to develop resistance and acquire, modify and maintain transposon-located resistance genes.
机译:目的:关于南非小球菌的抗菌药敏性和耐药基因的信息很少。这项研究旨在检测和鉴定小菜蛾中的抗性基因。方法:采用肉汤微量稀释法(四环素,强力霉素,氧氟沙星,红霉素,阿奇霉素和若沙霉素)研究了15株U. parvum分离株。对以下目标区域进行基因分析:tet(M); gyrA,gyrB,parC和parE; erm(A),erm(B),erm(C)和erm(E); msr(A),msr(B),msr(C)和msr(D); 23S rRNA操纵子;以及L4和L22核糖体蛋白。结果:七株U. parvum分离株对测试的抗生素完全敏感。五株对四环素具有抗药性(MICs 16-256 mg / L),一株对氧氟沙星具有抗药性(MIC 128 mg / L),四株对大环内酯类药物具有抗药性(MICs 128 mg / L)。两种菌株对四环素和红霉素均表现出双重耐药性。发现这五种四环素抗性菌株具有镶嵌tet(M)基因,其中一种菌株包含与先前所述不同的特定区域。在对红霉素(两个菌株)和对红霉素+阿奇霉素(一个菌株)有抗性的三个菌株中观察到了L22核糖体蛋白的突变。对于另一种对红霉素和阿奇霉素具有抗性的菌株,可能的抗性机制仍然难以捉摸。结论:这是南非U. parvum对喹诺酮,红霉素和阿奇霉素耐药性的首次报道。在耐氧氟沙星的菌株中发现了parC的一个点突变(Pro-57→Leu)和parE的两个新突变(Ile-73→Thr和一个位于第86位密码子的甲硫氨酸)。这项研究增强了U. parvum对产生抗性以及获得,修饰和维持转座子定位的抗性基因的适应性。

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