Recent insight into strategies for the design of antimicrobial peptides (AMPs)

Reihaneh Manteghi, K. Kristó, G. Szakonyi, I. Csóka
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Abstract

With the increasing development of antibiotic resistance among key bacterial pathogens, there is an urgent need to discover novel classes of antibiotics. Although antimicrobial peptides (AMP) with their specific mode of action are considered major candidates for next-generation antibiotics, several challenges limit the use of these peptides for therapeutic applications. In a large body of research, the focus is given to different approaches to the chemical modification of AMPs and how these modifications may improve the stability, antibiotic activity, proteolytic activity and prevent the cytotoxicity and side effects of AMPs. On the other hand, another group of research investigates the delivery of AMPs via nanocarrier systems as strategies used to enhance stability, control the release of peptides and reduce adverse peptide-related side effects, as well as improve their anti-microbial activities. In the present article, we surveyed most recently published researches that provide us with good knowledge on structural features, mechanism of action, therapeutic aim, advantages and limitations, chemical modification approaches and carrying strategies of AMPs. Finally, according to Quality by Design, the most important potential effective factor and potential risk were mentioned in the development of AMP delivery systems.
抗菌肽(AMPs)设计策略的最新见解
随着关键病原菌对抗生素耐药性的日益发展,迫切需要发现新型抗生素。虽然抗菌肽(AMP)以其特定的作用方式被认为是下一代抗生素的主要候选者,但一些挑战限制了这些肽在治疗应用中的使用。在大量的研究中,重点是对抗菌肽进行化学修饰的不同方法,以及这些修饰如何提高抗菌肽的稳定性、抗生素活性、蛋白水解活性和防止其细胞毒性和副作用。另一方面,另一组研究调查了通过纳米载体系统递送amp的策略,用于增强稳定性,控制肽的释放,减少不良肽相关的副作用,以及提高其抗微生物活性。本文综述了近年来在抗菌肽的结构特点、作用机制、治疗目的、优势和局限性、化学修饰方法和携带策略等方面的研究进展。最后,根据设计质量原则,提出了AMP输送系统开发中最重要的潜在影响因素和潜在风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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