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聚乙二醇化支链聚乙二胺耐药的获得增加铜绿假单胞菌对氨基糖苷类药物的敏感性。

Acquisition of Resistance to PEGylated Branched Polyethylenimine Increases Pseudomonas Aeruginosa Susceptibility to Aminoglycosides.

机构信息

Department of Chemistry and Biochemistry, Stephenson Life Sciences Research Center, University of Oklahoma, 101 Stephenson Parkway, Norman, OK 73069.

出版信息

ChemMedChem. 2024 Sep 2;19(17):e202300689. doi: 10.1002/cmdc.202300689. Epub 2024 Jul 15.

Abstract

PEGylated branched polyethylenimine (PEG-BPEI) has antibacterial and antibiofilm properties. Exposure to PEG-BPEI through serial passage leads to resistant P. aeruginosa strains. The minimum inhibitory concentration (MIC) of 600 Da BPEI and PEGylated 600 Da BPEI (PEG-BPEI) in the wild-type PAO1 strain is 16 μg/ml while, after 15 serial passages, the MIC increased to 1024 μg/mL. An additional 15 rounds of serial passage in the absence of BPEI or PEG-BPEI did not change the 1024 μg/mL MIC. Gentamicin, Neomycin, and Tobramycin, cationic antibiotics that inhibit protein synthesis, have a 16-32 fold reduction of MIC values in PEG350-BPEI resistant strains, suggesting increased permeation. The influx of these antibiotics occurs using a self-mediated uptake mechanism, suggesting changes to the outer membrane Data show that resistance causes changes in genes related to outer membrane lipopolysaccharide (LPS) assembly. Mutations were noted in the gene coding for the polymerase Wzy that participates in the assembly of the O-antigen region. Other mutations were noted with wbpE and wbpI of the Wbp pathway responsible for the enzymatic synthesis of ManNAc(3NAc)A in the LPS of P. aeruginosa. These changes suggest that an altered gene product could lead to PEG-BPEI resistance. Nevertheless, the increased susceptibility to aminoglycosides could prevent the emergence of PEG-BPEI resistant bacterial populations.

摘要

聚乙二醇化支化聚乙烯亚胺(PEG-BPEI)具有抗菌和抗生物膜特性。通过连续传代接触 PEG-BPEI 会导致产生对铜绿假单胞菌具有抗性的菌株。野生型 PAO1 菌株中 600Da 的 BPEI 和聚乙二醇化 600Da 的 BPEI(PEG-BPEI)的最小抑菌浓度(MIC)为 16μg/ml,而经过 15 轮连续传代后,MIC 增加到 1024μg/ml。在没有 BPEI 或 PEG-BPEI 的情况下再进行 15 轮连续传代,MIC 仍为 1024μg/ml 不变。抑制蛋白质合成的阳离子抗生素庆大霉素、新霉素和妥布霉素在 PEG350-BPEI 抗性菌株中的 MIC 值降低了 16-32 倍,这表明渗透性增加。这些抗生素的流入是通过自我介导的摄取机制发生的,这表明外膜发生了变化。数据表明,耐药性导致与外膜脂多糖(LPS)组装相关的基因发生变化。编码参与 O-抗原区域组装的聚合酶 Wzy 的基因发生了突变。在负责铜绿假单胞菌 LPS 中 ManNAc(3NAc)A 酶合成的 Wbp 途径的 wbpE 和 wbpI 基因中也发现了其他突变。这些变化表明,改变的基因产物可能导致对 PEG-BPEI 的耐药性。然而,对氨基糖苷类药物的敏感性增加可能会阻止 PEG-BPEI 耐药菌的出现。

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