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Evolution of Antimicrobial Peptides to Self-Assembled Peptides for Biomaterial Applications

机译:抗菌肽向生物材料应用自组装肽的演变

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摘要

Biomaterial-related infections are a persistent burden on patient health, recovery, mortality and healthcare budgets. Self-assembled antimicrobial peptides have evolved from the area of antimicrobial peptides. Peptides serve as important weapons in nature, and increasingly medicine, for combating microbial infection and biofilms. Self-assembled peptides harness a “bottom-up” approach, whereby the primary peptide sequence may be modified with natural and unnatural amino acids to produce an inherently antimicrobial hydrogel. Gelation may be tailored to occur in the presence of physiological and infective indicators (e.g. pH, enzymes) and therefore allow local, targeted antimicrobial therapy at the site of infection. Peptides demonstrate inherent biocompatibility, antimicrobial activity, biodegradability and numerous functional groups. They are therefore prime candidates for the production of polymeric molecules that have the potential to be conjugated to biomaterials with precision. Non-native chemistries and functional groups are easily incorporated into the peptide backbone allowing peptide hydrogels to be tailored to specific functional requirements. This article reviews an area of increasing interest, namely self-assembled peptides and their potential therapeutic applications as innovative hydrogels and biomaterials in the prevention of biofilm-related infection.
机译:生物材料相关感染是患者健康,康复,死亡率和医疗保健预算的持续负担。自组装的抗微生物肽已从抗微生物肽的领域发展而来。肽在自然界以及越来越多的医学中都是重要的武器,可用来抵抗微生物感染和生物膜。自组装肽利用“自下而上”的方法,从而可以用天然和非天然氨基酸修饰一级肽序列,从而产生固有的抗菌水凝胶。可以对胶凝进行定制,使其在生理和感染指示剂(例如pH,酶)的存在下发生,因此可以在感染部位进行局部靶向的抗微生物治疗。肽表现出固有的生物相容性,抗菌活性,生物降解性和许多官能团。因此,它们是生产可能精确地与生物材料结合的聚合物分子的主要候选者。非天然化学和官能团很容易掺入肽主链,从而使肽水凝胶适合特定的功能要求。本文回顾了一个日益引起关注的领域,即自组装肽及其作为创新水凝胶和生物材料在预防生物膜相关感染中的潜在治疗应用。

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