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新型含 β-转角序列 -NG-和色氨酸拉链的 β-发夹抗菌肽促进自组装成纳米纤维,表现出优异的抗菌性能。

Novel β-Hairpin Antimicrobial Peptide Containing the β-Turn Sequence of -NG- and the Tryptophan Zippers Facilitate Self-Assembly into Nanofibers, Exhibiting Excellent Antimicrobial Performance.

机构信息

Key Laboratory of Preclinical Study for New Drugs of Gansu Province, School of Basic Medical Sciences, Institute of Pharmaceutics, School of Pharmacy, and Research Unit of Peptide Science, Chinese Academy of Medical Sciences, 2019RU066, Lanzhou University, Lanzhou 730000, P. R. China.

State Key Laboratory of Bioactive Substance and Function of Natural Medicines, Institute of Materia Medica, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100050, P. R. China.

出版信息

J Med Chem. 2024 Apr 25;67(8):6365-6383. doi: 10.1021/acs.jmedchem.3c02339. Epub 2024 Mar 4.

DOI:10.1021/acs.jmedchem.3c02339
PMID:38436574
Abstract

Antimicrobial peptides (AMPs) have emerged as promising agents to combat the antibiotic resistance crisis due to their rapid bactericidal activity and low propensity for drug resistance. However, AMPs face challenges in terms of balancing enhanced antimicrobial efficacy with increased toxicity during modification processes. In this study, de novo d-type β-hairpin AMPs are designed. The conformational transformation of self-assembling peptide in the environment of the bacterial membrane and the erythrocyte membrane affected its antibacterial activity and hemolytic activity and finally showed a high antibacterial effect and low toxicity. Furthermore, displays remarkable stability, minimal occurrence of drug resistance, and synergistic effects when combined with antibiotics. The studies confirm its high safety and potent wound-healing properties at the sites infected by bacteria. This study substantiates that nanostructured AMPs possess enhanced biocompatibility. These advances reveal the superiority of self-assembled AMPs and contribute to the development of nanoantibacterial materials.

摘要

抗菌肽(AMPs)因其快速的杀菌活性和低耐药倾向而成为应对抗生素耐药危机的有前途的药物。然而,在修饰过程中,AMP 面临着在提高抗菌功效和增加毒性之间取得平衡的挑战。在这项研究中,设计了从头开始的 d 型 β-发夹 AMP。自组装肽在细菌膜和红细胞膜环境中的构象转变影响了其抗菌活性和溶血活性,最终表现出高抗菌效果和低毒性。此外,当与抗生素联合使用时, 表现出显著的稳定性、最小的耐药性发生和协同作用。 研究证实了其在细菌感染部位的高安全性和强大的伤口愈合特性。本研究证实了纳米结构 AMP 具有增强的生物相容性。这些进展揭示了自组装 AMP 的优越性,并为纳米抗菌材料的发展做出了贡献。

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