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壳聚糖基纳米系统及其抗菌活性的应用。

Chitosan-based nanosystems and their exploited antimicrobial activity.

机构信息

School of Pharmacy, University of Camerino, Via Gentile III da Varano, Camerino, MC, Italy.

Department of Biomolecular Science, University of Urbino "Carlo Bo", Urbino, Italy.

出版信息

Eur J Pharm Sci. 2018 May 30;117:8-20. doi: 10.1016/j.ejps.2018.01.046. Epub 2018 Feb 3.

Abstract

Chitosan is a biodegradable and biocompatible natural polysaccharide that has a wide range of applications in the field of pharmaceutics, biomedical, chemical, cosmetics, textile and food industry. One of the most interesting characteristics of chitosan is its antibacterial and antifungal activity, and together with its excellent safety profile in human, it has attracted considerable attention in various research disciplines. The antimicrobial activity of chitosan is dependent on a number of factors, including its molecular weight, degree of deacetylation, degree of substitution, physical form, as well as structural properties of the cell wall of the target microorganisms. While the sole use of chitosan may not be sufficient to produce an adequate antimicrobial effect to fulfil different purposes, the incorporation of this biopolymer with other active substances such as drugs, metals and natural compounds in nanosystems is a commonly employed strategy to enhance its antimicrobial potential. In this review, we aim to provide an overview on the different approaches that exploit the antimicrobial activity of chitosan-based nanosystems and their applications, and highlight the latest advances in this field.

摘要

壳聚糖是一种可生物降解和生物相容的天然多糖,在制药、生物医学、化学、化妆品、纺织和食品工业领域有广泛的应用。壳聚糖最有趣的特性之一是其抗菌和抗真菌活性,再加上其在人类中的出色安全性,引起了各个研究学科的极大关注。壳聚糖的抗菌活性取决于许多因素,包括其分子量、脱乙酰度、取代度、物理形态以及目标微生物细胞壁的结构特性。虽然壳聚糖的单独使用可能不足以产生足够的抗菌效果来满足不同的目的,但将这种生物聚合物与其他活性物质(如药物、金属和天然化合物)结合在纳米系统中是增强其抗菌潜力的常用策略。在这篇综述中,我们旨在概述利用壳聚糖纳米系统的抗菌活性及其应用的不同方法,并强调该领域的最新进展。

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