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首页> 外文期刊>Acta microbiologica et immunologica Hungarica: A quarterly of the Hungarian Academy of Sciences >Diversity of aminoglycoside modifying enzyme genes among multidrug resistant Acinetobacter baumannii genotypes isolated from nosocomial infections in Tehran hospitals and their association with class 1 integrons
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Diversity of aminoglycoside modifying enzyme genes among multidrug resistant Acinetobacter baumannii genotypes isolated from nosocomial infections in Tehran hospitals and their association with class 1 integrons

机译:从德黑兰医院医院感染中分离的多重耐药鲍曼不动杆菌基因型中氨基糖苷修饰酶基因的多样性及其与1类整合素的关系

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摘要

The aim of the present study was to investigate, for the first time, the diversity of the genes encoding aminoglycoside-modifying enzymes (AME) and their association with class 1 integrons in Iranian Acinetobacter baumannii strains.A total of 100 multidrug resistant A. baumannii, isolated from eight distinct hospitals in Tehran, were enrolled in this study. Susceptibility of these isolates to antimicrobial agents including gentamicin and amikacin was determined by E-test. Aminoglycoside resistant isolates were then tested by PCR for AME genes, including aphA6, aacC1, aacC2, aacA4, aadB, aadA1, classes 1 integron, 5′-CS-3′ and typed by RAPD PCR.The rate of resistance to imipenem, meropenem, gentamicin and amikacin were 39%, 39%, 38% and 32%, respectively. Intermediate resistance phenotype to gentamicin and amikacin was observed in 2% and 5% of all the isolates, respectively. After aph6 with 90% (n = 36/40), aadA1, aacC1 and aadB with 82.5% (n = 33/40), 65% (n = 26/40) and 20% (n = 8/40) were the most prevalent AME genes among aminoglycosides resistant A. baumannii isolates. A combination of two to four different resistance genes was observed in 39 of 40 strains (97.5%), with a total of 7 different combinations. PCR of integrase genes revealed that AME gene was associated with 67% of class 1 integrons. RAPD analysis showed three predominant genotypes A (n = 20), B (n = 10) and 10 unrelated genotypes.The occurrence of identical resistance genes, gene combinations and class 1 integrons associated with these genes in clonally distinct strains indicates that horizontal gene transfer plays a major role in the dissemination of aminoglycoside resistance in A. baumannii.
机译:本研究的目的是首次调查伊朗鲍曼不动杆菌菌株中编码氨基糖苷修饰酶(AME)的基因的多样性及其与1类整合素的相关性。共有100种耐多药鲍曼不动杆菌该研究从德黑兰的八家不同医院分离而来。这些分离物对包括庆大霉素和丁胺卡那霉素的抗微生物剂的敏感性通过E-test测定。然后通过PCR检测氨基糖苷抗性分离株的AME基因,包括aphA6,aacC1,aacC2,aacA4,aadB,aadA1、1类整合子,5'-CS-3',并通过RAPD PCR进行分型。对亚胺培南,美罗培南的耐药率,庆大霉素和丁胺卡那霉素分别为39%,39%,38%和32%。在所有分离株中分别观察到对庆大霉素和丁胺卡那霉素的中间抗性表型。在aph6占90%(n = 36/40)之后,aadA1,aacC1和aadB占82.5%(n = 33/40),65%(n = 26/40)和20%(n = 8/40)。氨基糖苷类耐药鲍曼不动杆菌菌株中最流行的AME基因。在40个菌株中的39个(97.5%)中观察到2至4种不同的抗性基因的组合,共有7种不同的组合。整合酶基因的PCR显示,AME基因与67%的1类整合素相关。 RAPD分析显示三种主要基因型A(n = 20),B(n = 10)和10种无关基因型。在克隆不同的菌株中出现相同的抗性基因,基因组合和与这些基因相关的1类整联体表明水平基因转移在鲍曼不动杆菌的氨基糖苷抗性的传播中起主要作用。

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