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The design of a cell-selective fowlicidin-1-derived peptide with both antimicrobial and anti-inflammatory activities

机译:具有抗微生物和抗炎活性的细胞选择性禽生素-1-衍生肽的设计

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Fowlicidin-1 (Fowl-1), a cathelicidin expressed in chicken intestine, is known to have both antimicrobial and anti-inflammatory properties. However, its pharmaceutical development has been ultimately compromised by its high host cytotoxicity. In this study, a series of N- and C-terminal-truncated 19-meric Fowl-1 peptides were synthesized. Among these truncated peptides, Fowl-1 (8-26) exhibited broad-spectrum antimicrobial activity without human erythrocyte cytotoxicity while reducing anti-inflammatory activity. Further, Fowl-1 (8-26)-WRK was designed via Thr(5)-> Trp, Ile(7)-> Arg, and Asn(11)-> Lys substitutions in Fowl-1 (8-26) to exhibit more amphipathicity. The results revealed that it exhibited both antimicrobial and anti-inflammatory properties. This study also demonstrated that the inhibitory activity of Fowl-1 (8-26)-WRK against LPS-induced inflammation was mainly due to the binding of LPS to the peptide. Interestingly, compared with human cathelicidin LL-37 and melittin, Fowl-1 (8-26)-WRK showed more potent activity against drug-resistant bacteria. It was also resistant to physiological salts and human serum and acted synergistically in combination with conventional antibiotics, such as chloramphenicol, ciprofloxacin, and oxacillin, suggesting that combined with conventional antibiotics, it is a promising adjuvant. Furthermore, membrane depolarization, SYTOX Green uptake, and flow cytometry revealed that it kills bacteria by damaging their membrane integrity. Therefore, this study suggests that Fowl-1 (8-26)-WRK has considerable potential for future development as an antimicrobial and anti-inflammatory agent for treating antibiotic-resistant infections. (C) 2019 Elsevier Masson SAS. All rights reserved.
机译:Fowlicidin-1(禽-1),在鸡肠道表达的导管素,已知具有两个抗微生物和抗炎性质。然而,它的药物开发已经最终由高细胞毒性主机受损。在这项研究中,一系列的N-和C-末端截短的19聚体禽-1肽合成。在这些截短的肽,禽-1(8-26)表现出广谱抗菌活性,而没有人红细胞的细胞毒性,同时降低抗炎活性。另外,鸡-1(8-26)-WRK经设计苏氨酸(5) - >色氨酸,异亮氨酸(7) - >精氨酸,和Asn(11) - >的Lys取代在鸡-1(8-26)至表现出更多的两亲性。结果表明,它表现出既抗微生物和抗炎性质。这项研究还表明,禽-1(8-26)-WRK抗LPS诱导的炎症的抑制活性主要是由于LPS的与肽的结合。有趣的是,与人导管素LL-37和蜂毒素相比,禽-1(8-26)-WRK显示针对耐药细菌更有效的活性。它也是对生理盐和人血清抗性和结合常规抗生素,如氯霉素,环丙沙星和苯唑西林协同作用,这表明与常规抗生素联合,它是一种有前途的佐剂。此外,细胞膜去极化,SYTOX绿色吸收和流式细胞仪透露,它通过破坏其细胞膜完整性杀死细菌。因此,这项研究表明,禽-1(8-26)具有-WRK作为用于治疗抗生素抗性感染的抗微生物和消炎剂未来发展相当大的潜力。 (c)2019年Elsevier Masson SAS。版权所有。

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