抗菌肽的最新专利。

Firoz K Pathan, Deepa A Venkata, Siva K Panguluri
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引用次数: 26

摘要

抗菌肽的研究已取得进展,以开发其潜力和能力,以取代传统的抗生素。抗菌肽是宿主防御系统的重要成员,因为它们具有广泛的杀死微生物的能力。抗菌肽和抗菌蛋白是真核生物防御宿主的重要手段。大型抗菌蛋白(>100 a.a.),通常是溶解性的营养结合蛋白或专门针对微生物大分子。小的抗菌肽通过破坏微生物细胞膜的结构或功能而起作用。在包括人类在内的多细胞动物的上皮层、吞噬细胞和体液中发现了大量的抗菌肽。除了作为内源性抗生素的作用外,抗菌肽还具有炎症、伤口修复和适应性免疫系统调节等功能。在这篇综述中,我们讨论了与抗菌肽有关的最新专利。这些专利与鉴定具有抗菌活性的肽的方法有关,包括papillosin抗菌肽及其编码基因、从Halocynthia aurantium中分离的抗菌肽、retrocyclins以及cathelicidin LL-37及其衍生物在伤口愈合中的应用。这些专利提供了有价值的信息,可用于抗菌肽的鉴定和其治疗潜力的开发。
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Recent patents on antimicrobial peptides.

Research on antimicrobial peptides has gained pace to exploit their potential and ability to replace conventional antibiotics. Antimicrobial peptides are important members of the host defense system, as they have a broad ability to kill microbes. Antimicrobial peptides and proteins form an important means of host defense in eukaryotes. Large antimicrobial proteins (>100 a.a.), are often lytic, nutrient-binding proteins or specifically target the microbial macromolecules. Small antimicrobial peptides act by disrupting the structure or function of microbial cell membranes. A multitude of antimicrobial peptides has been found in the epithelial layers, phagocytes, and body fluids of multicellular animals including humans. Aside from their role as endogenous antibiotics, antimicrobial peptides have functions in inflammation, wound repair, and regulation of the adaptive immune system. In this review, we discuss recent patents relating to antimicrobial peptides. These patents are related to the method of identifying peptides that have antimicrobial activity, including the papillosin antimicrobial peptide and its encoding gene, the antimicrobial peptide isolated from Halocynthia aurantium, retrocyclins, and the use of cathelicidin LL-37 and its derivatives for wound healing. These patents provide valuable information that could be useful in the identification of antimicrobial peptides and the exploitation of their therapeutic potential.

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