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Exploring the Pharmacological Potential of Promiscuous Host-Defense Peptides: From Natural Screenings to Biotechnological Applications

机译:探索混杂的宿主防御肽的药理潜力:从自然筛选到生物技术应用

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摘要

In the last few years, the number of bacteria with enhanced resistance to conventional antibiotics has dramatically increased. Most of such bacteria belong to regular microbial flora, becoming a real challenge, especially for immune-depressed patients. Since the treatment is sometimes extremely expensive, and in some circumstances completely inefficient for the most severe cases, researchers are still determined to discover novel compounds. Among them, host-defense peptides (HDPs) have been found as the first natural barrier against microorganisms in nearly all living groups. This molecular class has been gaining attention every day for multiple reasons. For decades, it was believed that these defense peptides had been involved only with the permeation of the lipid bilayer in pathogen membranes, their main target. Currently, it is known that these peptides can bind to numerous targets, as well as lipids including proteins and carbohydrates, from the surface to deep within the cell. Moreover, by using in vivo models, it was shown that HDPs could act both in pathogens and cognate hosts, improving immunological functions as well as acting through multiple pathways to control infections. This review focuses on structural and functional properties of HDP peptides and the additional strategies used to select them. Furthermore, strategies to avoid problems in large-scale manufacture by using molecular and biochemical techniques will also be explored. In summary, this review intends to construct a bridge between academic research and pharmaceutical industry, providing novel insights into the utilization of HDPs against resistant bacterial strains that cause infections in humans.
机译:在最近几年中,对常规抗生素具有增强抵抗力的细菌数量急剧增加。大多数此类细菌都属于正常的微生物菌群,这成为一个真正的挑战,特别是对于免疫力低下的患者。由于治疗有时非常昂贵,并且在某些情况下对于最严重的情况完全无效,因此研究人员仍决心发现新的化合物。其中,宿主防御肽(HDP)已被发现为几乎所有生活群体中抵抗微生物的第一个天然屏障。由于多种原因,这一分子类别每天都在引起关注。几十年来,人们认为这些防御肽仅与脂质双分子层在病原体膜(其主要靶标)中的渗透有关。目前,已知这些肽可以从细胞表面到深处与许多靶标以及包括蛋白质和碳水化合物在内的脂质结合。此外,通过使用体内模型,已显示HDP既可以在病原体也可以在同源宿主中起作用,从而改善免疫功能以及通过多种途径控制感染。这篇综述着重于HDP肽的结构和功能特性以及用于选择它们的其他策略。此外,还将探索通过使用分子和生化技术避免大规模生产中出现问题的策略。总而言之,本综述旨在在学术研究和制药行业之间架起一座桥梁,为利用HDP对抗引起人类感染的耐药细菌菌株提供新颖见解。

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