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壳聚糖基纳米系统和水凝胶在眼部递药中的吸收增强策略:优化药物渗透的最新进展。

Absorption enhancement strategies in chitosan-based nanosystems and hydrogels intended for ocular delivery: Latest advances for optimization of drug permeation.

机构信息

Department of Pharmaceutics and Pharmaceutical Technology, Faculty of Pharmaceutical Sciences, The Hashemite University, Zarqa, Jordan.

出版信息

Carbohydr Polym. 2024 Nov 1;343:122486. doi: 10.1016/j.carbpol.2024.122486. Epub 2024 Jul 15.

DOI:10.1016/j.carbpol.2024.122486
PMID:39174104
Abstract

Ophthalmic diseases can be presented as acute diseases like allergies, ocular infections, etc., or chronic ones that can be manifested as a result of systemic disorders, like diabetes mellitus, thyroid, rheumatic disorders, and others. Chitosan (CS) and its derivatives have been widely investigated as nanocarriers in the delivery of drugs, genes, and many biological products. The biocompatibility and biodegradability of CS made it a good candidate for ocular delivery of many ingredients, including immunomodulating agents, antibiotics, ocular hypertension medications, etc. CS-based nanosystems have been successfully reported to modulate ocular diseases by penetrating biological ocular barriers and targeting and controlling drug release. This review provides guidance to drug delivery formulators on the most recently published strategies that can enhance drug permeation to the ocular tissues in CS-based nanosystems, thus improving therapeutic effects through enhancing drug bioavailability. This review will highlight the main ocular barriers to drug delivery observed in the nano-delivery system. In addition, the CS physicochemical properties that contribute to formulation aspects are discussed. It also categorized the permeation enhancement strategies that can be optimized in CS-based nanosystems into four aspects: CS-related physicochemical properties, formulation components, fabrication conditions, and adopting a novel delivery system like implants, inserts, etc. as described in the published literature within the last ten years. Finally, challenges encountered in CS-based nanosystems and future perspectives are mentioned.

摘要

眼科疾病可以表现为急性疾病,如过敏、眼部感染等,也可以表现为糖尿病、甲状腺、风湿性疾病等系统性疾病的慢性表现。壳聚糖(CS)及其衍生物已被广泛研究作为药物、基因和许多生物制品的纳米载体。CS 的生物相容性和可降解性使其成为许多成分(包括免疫调节剂、抗生素、眼内压药物等)眼内给药的良好候选物。基于 CS 的纳米系统已成功报道通过穿透生物眼屏障和靶向控制药物释放来调节眼部疾病。这篇综述为药物输送配方师提供了指导,介绍了最近发表的可以增强 CS 纳米系统中药物渗透到眼部组织的策略,从而通过提高药物生物利用度来提高治疗效果。这篇综述将重点介绍纳米给药系统中观察到的主要眼部药物输送障碍。此外,还讨论了有助于制剂方面的 CS 理化性质。它还将渗透增强策略分为四个方面进行分类:CS 相关的物理化学性质、制剂成分、制备条件,以及采用新型输送系统,如植入物、插入物等,如在过去十年内的已发表文献中所述。最后,提到了 CS 纳米系统中遇到的挑战和未来展望。

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