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首页> 外文期刊>Biomaterials >Effect of stereochemistry, chain length and sequence pattern on antimicrobial properties of short synthetic β-sheet forming peptide amphiphiles
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Effect of stereochemistry, chain length and sequence pattern on antimicrobial properties of short synthetic β-sheet forming peptide amphiphiles

机译:立体化学,链长和序列模式对合成短β-折叠肽两亲物抗菌性能的影响

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In the face of mounting global antibiotics resistance, the identification and development of membrane-active antimicrobial peptides (AMPs) as an alternative class of antimicrobial agent have gained significant attention. The physical perturbation and disruption of microbial membranes by the AMPs have been proposed to be an effective means to overcome conventional mechanisms of drug resistance. Recently, we have reported the design of a series of short synthetic β-sheet folding peptide amphiphiles comprised of recurring (X1Y1X2Y2)n-NH2 sequences where X: hydrophobic amino acids, Y: cationic amino acids and n: number of repeat units. In efforts to investigate the effects of key parameters including stereochemistry, chain length and sequence pattern on antimicrobial effects, systematic d-amino acid substitutions of the lead peptides (IRIK)2-NH2 (IK8-all L) and (IRVK)3-NH2 (IK12-all L) were performed. It was found that the corresponding D-enantiomers exhibited stronger antimicrobial activities with minimal or no change in hemolytic activities, hence translating very high selectivity indices of 407.0 and 9.8 for IK8-all D and IK12-all D respectively. IK8-all D was also demonstrated to be stable to degradation by broad spectrum proteases trypsin and proteinase K. The membrane disrupting bactericidal properties of IK8-all D effectively prevented drug resistance development and inhibited the growth of various clinically isolated MRSA, VRE, Acinetobacter baumanni, Pseudomonas aeruginosa, Cryptococcus. neoformans and Mycobacterium tuberculosis. Significant reduction in intracellular bacteria counts was also observed following treatment with IK8-all D in the Staphylococcus. aureus infected mouse macrophage cell line RAW264.7 (P0.01). These results suggest that the d-amino acids substituted β-sheet forming peptide IK8-all D with its enhanced antimicrobial activities and improved protease stability, is a promising therapeutic candidate with potential to combat antibiotics resistance in various clinical applications.
机译:面对日益增长的全球抗生素耐药性,作为另一类抗菌剂的膜活性抗菌肽(AMPs)的鉴定和开发受到了广泛关注。已经提出,AMP对微生物膜的物理扰动和破坏是克服常规耐药性机制的有效手段。最近,我们已经报道了由重复的(X1Y1X2Y2)n-NH2序列组成的一系列短的合成β-折叠折叠肽两亲物的设计,其中X:疏水性氨基酸,Y:阳离子氨基酸,n:重复单元数。在努力研究关键参数(包括立体化学,链长和序列模式)对抗菌作用的影响,先导肽(IRIK)2-NH2(IK8-all L)和(IRVK)3-NH2的系统性d-氨基酸取代(IK12-全部L)进行。发现相应的D-对映异构体表现出更强的抗微生物活性,溶血活性变化很小或没有变化,因此对于IK8-全D和IK12-全D分别转化为407.0和 9.8的非常高的选择性指数。 IK8-all D还被证明对广谱蛋白酶胰蛋白酶和蛋白酶K具有稳定的降解作用。IK8-all D的膜破坏性杀菌特性有效地阻止了耐药性的发展并抑制了各种临床分离的MRSA,VRE,鲍曼不动杆菌的生长,铜绿假单胞菌,隐球菌。新甲虫和结核分枝杆菌。在葡萄球菌中用IK8-all D处理后,还观察到细胞内细菌数量的显着减少。金黄色葡萄球菌感染的小鼠巨噬细胞系RAW264.7(P <0.01)。这些结果表明,具有增强的抗微生物活性和改善的蛋白酶稳定性的d-氨基酸取代的β-折叠形成肽IK8-all D,是在各种临床应用中具有对抗抗生素抗性的潜力的有前途的治疗候选物。

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