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Advances in Development of Antimicrobial Peptidomimetics as Potential Drugs

机译:抗菌肽类药物作为潜在药物的研究进展

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摘要

The rapid emergence of multidrug-resistant pathogens has evolved into a global health problem as current treatment options are failing for infections caused by pan-resistant bacteria. Hence, novel antibiotics are in high demand, and for this reason antimicrobial peptides (AMPs) have attracted considerable interest, since they often show broad-spectrum activity, fast killing and high cell selectivity. However, the therapeutic potential of natural AMPs is limited by their short plasma half-life. Antimicrobial peptidomimetics mimic the structure and biological activity of AMPs, but display extended stability in the presence of biological matrices. In the present review, focus is on the developments reported in the last decade with respect to their design, synthesis, antimicrobial activity, cytotoxic side effects as well as their potential applications as anti-infective agents. Specifically, only peptidomimetics with a modular structure of residues connected via amide linkages will be discussed. These comprise the classes of α-peptoids (N-alkylated glycine oligomers), β-peptoids (N-alkylated β-alanine oligomers), β3-peptides, α/β3-peptides, α-peptide/β-peptoid hybrids, α/γ N-acylated N-aminoethylpeptides (AApeptides), and oligoacyllysines (OAKs). Such peptidomimetics are of particular interest due to their potent antimicrobial activity, versatile design, and convenient optimization via assembly by standard solid-phase procedures.
机译:由于目前的治疗方法无法治疗由泛耐药菌引起的感染,因此多种耐药病原体的迅速出现已发展成为一个全球性的健康问题。因此,对新型抗生素的需求量很大,因此,抗菌肽(AMP)引起了人们的极大兴趣,因为它们通常表现出广谱活性,快速杀灭和高细胞选择性。但是,天然AMP的治疗潜力受到血浆半衰期短的限制。抗菌肽模拟物模拟AMP的结构和生物学活性,但在存在生物基质的情况下显示出扩展的稳定性。在本综述中,重点是过去十年中有关其设计,合成,抗菌活性,细胞毒副作用以及其作为抗感染剂的潜在应用方面的报道。具体地,仅讨论具有通过酰胺键连接的残基的模块化结构的拟肽。它们包括α-类肽(N-烷基化的甘氨酸低聚物),β-类肽(N-烷基化的β-丙氨酸低聚物),β 3 -肽,α/β 3

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