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The Contribution of Antibiotic Resistance Mechanisms in Clinical Burkholderia cepacia Complex Isolates: An Emphasis on Efflux Pump Activity

机译:临床伯克霍尔德酒洋葱复合体分离物中的抗生素耐药性机制的贡献:外排泵活动的重点。

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摘要

Due to the limited information of the contribution of various antibiotic resistance mechanisms in clinical Burkholderia cepacia complex isolates, Antibiotic resistance mechanisms, including integron analysis, identification of quinolone resistance-determining region mutations, measurement of efflux pump activity, and sequence analysis of efflux pump regulators, were investigated in 66 clinical B. cepacia complex isolates. Species were identified via recA-RFLP and MALDI-TOF. Four genomovars were identified by recA-RFLP. B. cenocepacia (genomovar III) was the most prevalent genomovar (90.1%). Most isolates (60/66, 90.9%) were correctly identified by MALDI-TOF analysis. Clonal relatedness determined by PFGE analysis revealed 30 pulsotypes, including two major pulsotypes that comprised 22.7% and 18.2% of the isolates, respectively. Seventeen (25.8%) isolates harboured class 1 integron with various combinations of resistance genes. Among six levofloxacin-resistant isolates, five had single-base substitutions in the gyrA gene and three demonstrated efflux pump activities. Among the 42 isolates exhibiting resistance to at least one antimicrobial agent, 94.4% ceftazidime-resistant isolates (17/18) and 72.7% chloramphenicol-resistant isolates (16/22) demonstrated efflux pump activity. Quantitation of efflux pump RNA level and sequence analysis revealed that over-expression of the RND-3 efflux pump was attributable to specific mutations in the RND-3 efflux pump regulator gene. In conclusion, high-level expression of efflux pumps is prevalent in B. cepacia complex isolates. Mutations in the RND-3 efflux pump regulator gene are the major cause of efflux pump activity, resulting in the resistance to antibiotics in clinical B. cepacia complex isolates.
机译:由于在临床伯克霍尔德菌洋葱复合体分离物中各种抗生素抗性机制的贡献的信息有限,因此抗生素抗性机制包括整联体分析,喹诺酮抗性决定区域突变的鉴定,外排泵活性的测量以及外排泵调节剂的序列分析研究了66种临床的洋葱伯克霍尔德菌复合物分离株。通过recA-RFLP和MALDI-TOF鉴定物种。通过recA-RFLP鉴定了四个基因型。 B. cenocepacia(genomovar III)是最流行的genomovar(90.1%)。多数分离物(60 / 66,90.9%)通过MALDI-TOF分析正确鉴定。通过PFGE分析确定的克隆相关性揭示了30种脉冲型,包括两种主要脉冲型,分别占分离株的22.7%和18.2%。十七个(25.8%)分离株包含具有抗性基因各种组合的1类整合子。在六个耐左氧氟沙星的分离株中,五个在gyrA基因中具有单碱基取代,另外三个显示出外排泵活性。在表现出对至少一种抗微生物剂抗性的42种分离株中,耐头孢他啶的分离株(17/18)和耐氯霉素的分离株(9/26)(16/22)中有94.4%表现出外排泵活性。外排泵RNA水平的定量和序列分析表明,RND-3外排泵的过表达归因于RND-3外排泵调节基因中的特定突变。总之,外排泵的高水平表达在洋葱伯克霍尔德菌复合体分离物中普遍存在。 RND-3外排泵调节基因中的突变是外排泵活动的主要原因,导致临床上的洋葱伯克霍尔德菌复合体分离株对抗生素产生抗药性。

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