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Neopeptide Antibiotics That Function as Opsonins and Membrane-Permeabilizing Agents for Gram-Negative Bacteria

机译:用作调理素和革兰氏阴性细菌的膜通透剂的新肽抗生素

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摘要

We suggest a novel approach to enhancing antimicrobial drug action by utilizing engineered peptide conjugates. Our most potent conjugates, [fMLF]PMBN and [fMLF]PMEN, are nonapeptides derived from polymyxin B's (PMB's) cyclic moiety (Thr-Dab-cyclo[Dab-Dab-d-Phe-Leu-Dab-Dab-Thr], where Dab is 2,4-diaminobutyric acid) and polymyxin E's (PME's) cyclic moiety (Thr-Dab-cyclo[Dab-Dab-d-Leu-Leu-Dab-Dab-Thr]), respectively, attached to a linear tail comprised of formyl-Met-Leu-Phe (fMLF). The cyclic part binds to gram-negative lipopolysaccharides, rendering the bacterial outer membrane permeable to hydrophobic antibiotics. The tail confers chemotactic and opsonic activities upon the conjugates. These two activities appear to be the basis for the conjugates' antibacterial activities. The conjugates are 8 to 10 times less toxic than the parent PMB or PME antibiotics. Fourteen of 18 mice lethally challenged with erythromycin-resistant Klebsiella pneumoniae survived following intraperitoneal administration of erythromycin and [fMLF]PMBN, whereas erythromycin or the peptide conjugate alone had no effect. Moreover, the clearance of Klebsiella from blood was markedly enhanced by intravenous injection of the [fMLF]PMEN peptide conjugate compared to the clearance of the organism from the mice treated with buffer alone as a control and was similar to that achieved by the PME antibiotic. Blood clearance was also significantly enhanced by administration of PMEN either alone or in a mixture with fMLF, although the effect was less than that produced by the peptide conjugate. Since resistance to polymyxins, the parent molecules of the synthetic cyclic peptides, is rare, the emergence of bacteria resistant to the antimicrobial properties of the peptide conjugates may be precluded as well.
机译:我们建议通过利用工程化的肽结合物来增强抗菌药物作用的新方法。我们最有效的缀合物[fMLF] PMBN和[fMLF] PMEN是衍生自多粘菌素B(PMB's)环状部分(Thr-Dab-cyclo [Dab-Dab-d-Phe-Leu-Dab-Dab-Thr]的九肽,其中Dab是2,4-二氨基丁酸)和多粘菌素E(PME)的环状部分(Thr-Dab-cyclo [Dab-Dab-d-Leu-Leu-Dab-Dab-Thr]),分别连接到线性尾巴上由甲酰基-Met-Leu-Phe(fMLF)组成。环状部分与革兰氏阴性脂多糖结合,使细菌外膜可渗透疏水性抗生素。尾部赋予结合物趋化和调理活性。这两个活性似乎是缀合物抗菌活性的基础。缀合物的毒性比母体PMB或PME抗生素低8至10倍。致死性地接受抗红霉素的肺炎克雷伯菌的18只小鼠中有14只在腹膜内注射红霉素和[fMLF] PMBN后存活,而单独使用红霉素或肽结合物则无效。此外,与单独用缓冲液作为对照处理的小鼠的生物清除率相比,静脉注射[fMLF] PMEN肽缀合物可显着提高克雷伯菌从血液的清除率,与PME抗生素的清除率相似。通过单独使用PMEN或与fMLF混合使用PMEN,血液清除率也显着提高,尽管效果不及肽结合物产生的效果。由于对合成环肽的母体分子多粘菌素的抗性是罕见的,因此也可以排除对肽缀合物的抗微生物特性具有抗性的细菌的出现。

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