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纳米结构抗菌肽:克服临床应用瓶颈的关键步骤

Nanostructured Antimicrobial Peptides: Crucial Steps of Overcoming the Bottleneck for Clinics.

作者信息

Yang Zhanyi, He Shiqi, Wu Hua, Yin Ting, Wang Lili, Shan Anshan

机构信息

Institute of Animal Nutrition, Northeast Agricultural University, Harbin, China.

出版信息

Front Microbiol. 2021 Aug 12;12:710199. doi: 10.3389/fmicb.2021.710199. eCollection 2021.

Abstract

The security issue of human health is faced with dispiriting threats from multidrug-resistant bacteria infections induced by the abuse and misuse of antibiotics. Over decades, the antimicrobial peptides (AMPs) hold great promise as a viable alternative to treatment with antibiotics due to their peculiar antimicrobial mechanisms of action, broad-spectrum antimicrobial activity, lower drug residue, and ease of synthesis and modification. However, they universally express a series of disadvantages that hinder their potential application in the biomedical field (e.g., low bioavailability, poor protease resistance, and high cytotoxicity) and extremely waste the abundant resources of AMP database discovered over the decades. For all these reasons, the nanostructured antimicrobial peptides (Ns-AMPs), based on a variety of nanosystem modification, have made up for the deficiencies and pushed the development of novel AMP-based antimicrobial therapies. In this review, we provide an overview of the advantages of Ns-AMPs in improving therapeutic efficacy and biological stability, reducing side effects, and gaining the effect of organic targeting and drug controlled release. Then the different material categories of Ns-AMPs are described, including inorganic material nanosystems containing AMPs, organic material nanosystems containing AMPs, and self-assembled AMPs. Additionally, this review focuses on the Ns-AMPs for the effect of biological activities, with emphasis on antimicrobial activity, biosecurity, and biological stability. The "state-of-the-art" antimicrobial modes of Ns-AMPs, including controlled release of AMPs under a specific environment or intrinsic antimicrobial properties of Ns-AMPs, are also explicated. Finally, the perspectives and conclusions of the current research in this field are also summarized.

摘要

人类健康的安全问题面临着抗生素滥用和误用所引发的多重耐药菌感染带来的严峻威胁。几十年来,抗菌肽因其独特的抗菌作用机制、广谱抗菌活性、较低的药物残留以及易于合成和修饰等特点,作为抗生素治疗的一种可行替代方案,具有巨大的潜力。然而,它们普遍存在一系列缺点,阻碍了其在生物医学领域的潜在应用(例如,生物利用度低、蛋白酶抗性差和细胞毒性高),并且极大地浪费了几十年来发现的丰富的抗菌肽数据库资源。基于以上所有原因,基于多种纳米系统修饰的纳米结构抗菌肽弥补了这些不足,推动了新型抗菌肽疗法的发展。在本综述中,我们概述了纳米结构抗菌肽在提高治疗效果和生物稳定性、减少副作用以及实现有机靶向和药物控释方面的优势。然后描述了纳米结构抗菌肽的不同材料类别,包括含抗菌肽的无机材料纳米系统、含抗菌肽的有机材料纳米系统以及自组装抗菌肽。此外,本综述重点关注纳米结构抗菌肽的生物活性作用,尤其强调抗菌活性、生物安全性和生物稳定性。还阐述了纳米结构抗菌肽的“最新”抗菌模式,包括在特定环境下抗菌肽的控释或纳米结构抗菌肽的固有抗菌特性。最后,总结了该领域当前研究的观点和结论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/092b/8406695/db7f3161c2e5/fmicb-12-710199-g001.jpg

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