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通过合理设计发现一种强效抗菌肽:病原体控制的新前沿。

Discovery of a Potent Antimicrobial Peptide Through Rational Design: A New Frontier in Pathogen Control.

作者信息

Agrillo Bruna, Ambrosio Monica, Ambrosio Rosa Luisa, Gogliettino Marta, Balestrieri Marco, Porritiello Alessandra, Peruzy Maria Francesca, Mancusi Andrea, Nicolais Luigi, Palmieri Gianna

机构信息

Institute of Biosciences and BioResources, National Research Council (IBBR-CNR), 80131 Naples, Italy.

Department of Veterinary Medicine and Animal Production, University of Naples Federico II, 80137 Naples, Italy.

出版信息

Biomolecules. 2025 Jul 11;15(7):989. doi: 10.3390/biom15070989.

Abstract

The increasing circulation of multi-drug-resistant pathogens, coupled with the sluggish development of new antibiotics, is weakening our capacity to combat human infections, resulting in elevated death tolls. To address this worldwide crisis, antimicrobial peptides (AMPs) are viewed as promising substitutes or adjuvants for combating bacterial infections caused by multidrug-resistant organisms. Here, the antimicrobial activity and structural characterization of a novel 13-amino acid cationic peptide named RKW (RKWILKWLRTWKK-NH2), designed based on known AMPs sequences and the identification of a key tryptophan-rich structural motif, were described. RKW displayed a broad-spectrum and potent antimicrobial and antibiofilm activity against Gram-positive and Gram-negative pathogens, including ESKAPE bacteria and fungi with minimal inhibitory concentrations (MBC) ranging from 5 µM to 20 μM. Structural results by fluorescence and Circular Dichroism (CD) spectroscopy revealed that the peptide was folded into a regular α-helical conformation in a membrane-like environment, remaining stable in a wide range of pH and temperature for at least 48 h of incubation. Furthermore, RKW showed low toxicity in vitro against mammalian fibroblast cells, indicating its potential as a promising candidate for the development of new antimicrobial or antiseptic strategies.

摘要

多重耐药病原体的传播日益增加,加上新型抗生素研发进展缓慢,正在削弱我们对抗人类感染的能力,导致死亡人数上升。为应对这一全球危机,抗菌肽(AMPs)被视为对抗多重耐药生物体引起的细菌感染的有前途的替代物或佐剂。在此,描述了一种基于已知抗菌肽序列设计并鉴定出关键富含色氨酸结构基序的新型13氨基酸阳离子肽RKW(RKWILKWLRTWKK-NH2)的抗菌活性和结构特征。RKW对革兰氏阳性和革兰氏阴性病原体,包括ESKAPE细菌和真菌,表现出广谱且强效的抗菌和抗生物膜活性,最小抑菌浓度(MBC)范围为5 μM至20 μM。荧光和圆二色性(CD)光谱的结构结果表明,该肽在类似膜的环境中折叠成规则的α-螺旋构象,在广泛的pH和温度范围内孵育至少48小时仍保持稳定。此外,RKW在体外对哺乳动物成纤维细胞显示出低毒性,表明其作为开发新型抗菌或防腐策略的有前途候选物的潜力。

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