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壳聚糖在纳米粒子表面用于增强药物传递:全面综述。

Chitosan on the surface of nanoparticles for enhanced drug delivery: A comprehensive review.

机构信息

Department of Pharmaceutics, College of Pharmacy, Jouf University, Sakaka 72341, Saudi Arabia.

Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Beni-Suef University, Beni-Suef 62511, Egypt.

出版信息

J Control Release. 2022 Nov;351:923-940. doi: 10.1016/j.jconrel.2022.10.005. Epub 2022 Oct 11.

Abstract

The ability of chitosan (CTS) to promote mucoadhesion, trigger positive/negative surface interactions, and open tight junctions has inspired researchers to coat lipid-based and polymeric-based nanoparticles with CTS in an attempt to reach new heights in the delivery of drugs and nutraceuticals across different routes. This article discusses literature relevant to the pharmaceutical and biomedical area published in the last 10 years on nanoparticles overlaid with CTS. Herein, we addressed the technical aspects of the coating procedure by adding CTS solution to nanoparticles that have already been produced or during the production phase. Besides, we reviewed the applications of CTS coated nanoparticles as drug delivery systems in the oral and non-oral routes of administrations. Special attention was paid to the physicochemical and biological benefits of the CTS coating, such as improving physicochemical stability, enhancing cell and tissue interactions, controlled drug release, and augmentation of active substance bioavailability and efficacy. Moreover, this review projects the current standing and future prospects of the delivery system. The future calls for more investigations on therapeutic proteins, genes and vaccines as potential cargos. Extensive studies on the merits of integrating CTS with hydropolymer-synthesized nanoparticles and using longer-chain and chemically-modified variants of CTS are also warranted.

摘要

壳聚糖(CTS)具有促进黏膜黏附、触发正负表面相互作用和打开紧密连接的能力,这激发了研究人员将基于脂质和聚合物的纳米粒子用 CTS 进行涂层处理,试图在通过不同途径输送药物和营养保健品方面取得新的突破。本文讨论了过去 10 年在医药和生物医学领域发表的关于用 CTS 覆盖的纳米粒子的文献。在此,我们通过向已经生产出的纳米粒子或在生产阶段添加 CTS 溶液来解决涂层程序的技术问题。此外,我们还回顾了 CTS 涂层纳米粒子作为口服和非口服给药途径的药物递送系统的应用。特别关注 CTS 涂层的物理化学和生物学益处,例如提高物理化学稳定性、增强细胞和组织相互作用、控制药物释放以及提高活性物质的生物利用度和功效。此外,本综述还预测了该递送系统的现状和未来前景。未来需要对治疗性蛋白质、基因和疫苗等潜在载体进行更多的研究。还需要广泛研究将 CTS 与水聚合物合成的纳米粒子结合使用以及使用更长链和化学修饰的 CTS 变体的优点。

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