首页> 外文期刊>European journal of pharmaceutical sciences >Antimicrobial peptides conjugated with fatty acids on the side chain of D-amino acid promises antimicrobial potency against multidrug-resistant bacteria
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Antimicrobial peptides conjugated with fatty acids on the side chain of D-amino acid promises antimicrobial potency against multidrug-resistant bacteria

机译:与D-氨基酸侧链上与脂肪酸缀合的抗微生物肽对多药抗性细菌的抗菌效力有关

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摘要

With the alarming burden of antibiotic resistance, antimicrobial peptides (AMPs) seem to be novel antimicrobial alternatives for infection treatment due to their rapid broad-spectrum antimicrobial activity and low tendency for bacterial resistance. To obtain promising AMPs, a series of new peptides were designed and synthesized by conjugating various lengths of fatty acid chains onto the side chain of the position 4 or 7 D-amino acid of Ano-D4,7 (analogue of anoplin with D-amino acid substitutions at positions 4 and 7). The new peptides exhibited excellent antimicrobial activity against a range of bacteria, especially multidrug-resistant bacteria in contrast to conventional antibiotics. Moreover, the new peptides conjugated with fatty acid chains ranging from 8 to 12 carbons in length presented preferable antimicrobial selectivity and anti-biofilm activity. Additionally, the new peptides also exerted high stability to trypsin, serum, salts and different pH environments. Most notably, the new peptides showed a low tendency to develop bacterial resistance and they displayed optimal antimicrobial activity against the obtained resistant strains. Furthermore, the results from the outer/inner membrane permeabilization and cytoplasmic membrane depolarization assays and flow cytometry and scanning electron microscopy analyses demonstrated that the new peptides exert antimicrobial effects by typical non-receptor-mediated membrane mechanisms, as well as intracellular targets characterized by gel retardation and reactive oxygen species (ROS) generation assays. Furthermore, the new peptides presented remarkable in vivo antimicrobial potency, anti-inflammatory activity, and endotoxin neutralization. Collectively, the conjugation of fatty acids to the side chains of D-amino acids is a potential strategy for designing hopeful antimicrobial alternatives to tackle the risk of bacterial resistance.
机译:随着抗生素抗性的报警负担,由于其快速的广谱抗微生物活性和细菌抗性的低趋势,抗菌肽(AMPS)似乎是一种新的抗微生物替代品。为了获得有前途的AMPS,通过将各种长度的脂肪酸链与ANO-D4,7的位置4或7 D-氨基酸的侧链缀合到侧链上,设计和合成了一系列新的肽和合成的新肽。在第4和7号位置处的酸取代)。与常规抗生素相比,新肽对一系列细菌具有优异的抗微生物活性,特别是多药抗性细菌。此外,与脂肪酸链缀合的新肽,其长度为8-12个碳,呈现优选的抗微生物选择性和抗生物膜活性。另外,新肽还施加了对胰蛋白酶,血清,盐和不同的pH环境的高稳定性。最值得注意的是,新的肽显示出显性抗性抗性的低趋势,并且它们对所获得的抗药性菌株显示出最佳的抗微生物活性。此外,来自外部/内膜透化和细胞质膜去极化测定和流式细胞术和扫描电子显微镜分析的结果证明了新肽通过典型的非受体介导的膜机制施加抗微生物作用,以及细胞内靶标以凝胶为特征延迟和反应性氧(ROS)产生测定。此外,新肽在体内抗菌效力,抗炎活性和内毒素中和呈现出显着的。共同地,脂肪酸与D-氨基酸的侧链的缀合是设计有希望抗微生物替代品来解决细菌抗性的潜在策略。

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