Exploring the Antimicrobial Potential of LL-37 Derivatives: Recent Developments and Challenges.

IF 5.4 2区 医学 Q2 MATERIALS SCIENCE, BIOMATERIALS
Yihao Yuan, Jiapeng Li, Guotao Wei, Ziyi Shen, Bo Li, Jiawei Wu, Jing Liu
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引用次数: 0

Abstract

The human antimicrobial peptide LL-37 exhibits broad antimicrobial efficacy. However, it has several limitations including high production costs, reduced efficacy under physiological conditions, susceptibility to proteolytic degradation and significant toxicity to human cells. Recent research has improved the clinical potential of peptide LL-37 through multiple systematic modifications. Therefore, we review the various modification techniques for LL-37 and explore the structure-activity relationships that underpin its antimicrobial properties. We also highlight the benefits of LL-37 derivatives and investigate their mechanisms of action against bacterial infections, particularly their effects on biofilms and cell membranes. Furthermore, we review the antimicrobial applications of LL-37 derivatives, examine nanocarrier systems for their delivery, and highlight the potential synergy between these derivatives and traditional antibiotics. Finally, it assesses the status of LL-37 derivatives in clinical applications, identifies ongoing challenges, and provides insights into future modifications and potential applications. This review aims to offer valuable strategies for enhancing LL-37 derivatives and facilitating their transition from laboratory research to clinical practice.

探索LL-37衍生物的抗菌潜力:最近的发展和挑战。
人抗菌肽LL-37具有广泛的抗菌功效。然而,它有一些局限性,包括生产成本高,在生理条件下的功效降低,对蛋白质水解降解的敏感性以及对人体细胞的显着毒性。最近的研究通过多种系统修饰提高了肽LL-37的临床潜力。因此,我们回顾了LL-37的各种修饰技术,并探讨了其抗菌性能的结构-活性关系。我们还强调了LL-37衍生物的益处,并研究了它们对抗细菌感染的作用机制,特别是它们对生物膜和细胞膜的影响。此外,我们回顾了LL-37衍生物的抗菌应用,研究了它们的纳米载体系统,并强调了这些衍生物与传统抗生素之间的潜在协同作用。最后,本文评估了LL-37衍生物在临床应用中的地位,确定了持续存在的挑战,并提供了对未来修饰和潜在应用的见解。本综述旨在为增强LL-37衍生物和促进其从实验室研究到临床实践的过渡提供有价值的策略。
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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来源期刊
ACS Biomaterials Science & Engineering
ACS Biomaterials Science & Engineering Materials Science-Biomaterials
CiteScore
10.30
自引率
3.40%
发文量
413
期刊介绍: ACS Biomaterials Science & Engineering is the leading journal in the field of biomaterials, serving as an international forum for publishing cutting-edge research and innovative ideas on a broad range of topics: Applications and Health – implantable tissues and devices, prosthesis, health risks, toxicology Bio-interactions and Bio-compatibility – material-biology interactions, chemical/morphological/structural communication, mechanobiology, signaling and biological responses, immuno-engineering, calcification, coatings, corrosion and degradation of biomaterials and devices, biophysical regulation of cell functions Characterization, Synthesis, and Modification – new biomaterials, bioinspired and biomimetic approaches to biomaterials, exploiting structural hierarchy and architectural control, combinatorial strategies for biomaterials discovery, genetic biomaterials design, synthetic biology, new composite systems, bionics, polymer synthesis Controlled Release and Delivery Systems – biomaterial-based drug and gene delivery, bio-responsive delivery of regulatory molecules, pharmaceutical engineering Healthcare Advances – clinical translation, regulatory issues, patient safety, emerging trends Imaging and Diagnostics – imaging agents and probes, theranostics, biosensors, monitoring Manufacturing and Technology – 3D printing, inks, organ-on-a-chip, bioreactor/perfusion systems, microdevices, BioMEMS, optics and electronics interfaces with biomaterials, systems integration Modeling and Informatics Tools – scaling methods to guide biomaterial design, predictive algorithms for structure-function, biomechanics, integrating bioinformatics with biomaterials discovery, metabolomics in the context of biomaterials Tissue Engineering and Regenerative Medicine – basic and applied studies, cell therapies, scaffolds, vascularization, bioartificial organs, transplantation and functionality, cellular agriculture
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