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首页> 外文期刊>Microbial Pathogenesis >AdeB efflux pump gene knockdown by mRNA mediated peptide nucleic acid in multidrug resistance Acinetobacter baumannii
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AdeB efflux pump gene knockdown by mRNA mediated peptide nucleic acid in multidrug resistance Acinetobacter baumannii

机译:ADEB Efflux泵基因通过MRNA介导的肽核酸在多药耐药过程中抑制肺杆菌Baumannii

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Multidrug-resistant Acinetobacter baumannii isolates cause critical problems in health-care environments. AdeABC is a resistance-nodulation-cell division (RND)-type multidrug efflux pump conferring resistance to clinically essential antibiotics in A. baumannii, such as ciprofloxacin. This study aimed to target adeB gene with antisense peptide nucleic acid (PNA) and investigate its effect on resistance to antibiotics. NCBI database was used to design appropriate PNA to target adeB gene, by connecting PNA to mRNA, the translation of mRNA can be prevented. Three clinical isolates and A. baumannii ATCC 17978 were treated with the designed PNA by electroporation and competence procedure. Minimum Inhibitory concentration (MIC) of ciprofloxacin, colistin, and tetracycline were determined by microbroth dilution method. In addition, the expression level of adeB gene was measured by quantitative real-time PCR (qRT-PCR). Isolates used in this study had mutations in gyrA and parC genes corresponding to resistance to ciprofloxacin. MIC of resistance to ciprofloxacin after treatment with PNA was reduced from 32 mu g/ml to16 mu g/ml in A. baumannii ATCC 17978 isolate. Susceptibility level of tetracycline, in the 2 clinical isolates was decreased from 64 mu g/ml to 32 mu g/ml and in the other isolate was reduced from 128 mu g/ml to 64 mu g/ml. The expression level of adeB gene was decreased in A. baumannii ATCC 17978 (P > 0.01) but not in clinical isolate (P = 0.107). Findings of the present study indicate overexpression of adeB efflux pump has extra effect on resistance to antibiotics in isolates with a defined mechanism of resistance. Antisense technology is a feasible technique to suppress the function of these genes, which may be further exploited to control multidrug-resistant isolates.
机译:多药抗性肺杆菌Baumannii分离物在医疗保健环境中导致严重问题。 ADEABC是一种抵抗 - 细胞分裂(RND) - 型多药型泵,其赋予临床基本抗生素在A.Baumannii等Ciprofloxacin。该研究旨在用反义肽核酸(PNA)靶向ADEB基因,并研究其对抗生素抗性的影响。 NCBI数据库用于设计适当的PNA以靶向ADEB基因,通过将PNA连接到mRNA,可以防止mRNA的翻译。通过电穿孔和能力程序用设计的PNA处理三个临床分离株和A.Baumannii ATCC 17978。通过微生物稀释法测定环丙沙星,乳霉素和四环素的最小抑制浓度(MIC)。另外,通过定量实时PCR(QRT-PCR)测量ADEB基因的表达水平。本研究中使用的分离物在Gyra和对应于对CiProfloxacin的抗性的基因中具有突变。用PNA处理后,在A.Baumannii ATCC 17978分离物中将其在32μg/ ml至16μg/ ml下减少到环丙沙星的抗性。四环素的易感水平,在2临床分离物中从64μg/ ml降低至32μg/ ml,在其他分离物中从128μg/ ml降低至64μg/ ml。 Aβ基因的表达水平在A.Baumannii ATCC 17978(P> 0.01)中降低,但不在临床分离物(P = 0.107)中。本研究的发现表明ADEB流出泵的过度表达对具有限定抗性机制的分离物中对抗生素的抗性产生额外的影响。反义技术是抑制这些基因的功能的可行技术,这可以进一步利用以控制多药隔离物。

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