Department of Galenic Pharmacy, Faculty of Pharmacy, Comenius University Bratislava, Odbojárov 10, 83232 Bratislava, Slovakia.
Department of Pharmaceutical Analysis and Nuclear Pharmacy, Faculty of Pharmacy, Comenius University Bratislava, Odbojárov 10, 83232 Bratislava, Slovakia.
Viruses. 2023 Feb 28;15(3):647. doi: 10.3390/v15030647.
Current antiviral therapy research is focused on developing dosage forms that enable highly effective drug delivery, providing a selective effect in the organism, lower risk of adverse effects, a lower dose of active pharmaceutical ingredients, and minimal toxicity. In this article, antiviral drugs and the mechanisms of their action are summarized at the beginning as a prerequisite background to develop relevant drug delivery/carrier systems for them, classified and briefly discussed subsequently. Many of the recent studies aim at different types of synthetic, semisynthetic, and natural polymers serving as a favorable matrix for the antiviral drug carrier. Besides a wider view of different antiviral delivery systems, this review focuses on advances in antiviral drug delivery systems based on chitosan (CS) and derivatized CS carriers. CS and its derivatives are evaluated concerning methods of their preparation, their basic characteristics and properties, approaches to the incorporation of an antiviral drug in the CS polymer as well as CS nanoparticulate systems, and their recent biomedical applications in the context of actual antiviral therapy. The degree of development (i.e., research study, in vitro/ex vivo/in vivo preclinical testing), as well as benefits and limitations of CS polymer and CS nanoparticulate drug delivery systems, are reported for particular viral diseases and corresponding antivirotics.
目前的抗病毒治疗研究集中于开发能够实现高效药物递送的剂型,在生物体中提供选择性作用、降低不良反应风险、降低活性药物成分剂量和最小化毒性。在本文中,首先总结了抗病毒药物及其作用机制,作为开发相关药物递送/载体系统的前提背景,随后进行了分类和简要讨论。许多最近的研究旨在开发不同类型的合成、半合成和天然聚合物,作为抗病毒药物载体的有利基质。除了更广泛地了解不同的抗病毒递药系统外,本综述还重点介绍了基于壳聚糖(CS)和衍生 CS 载体的抗病毒药物递药系统的进展。评估了 CS 及其衍生物的制备方法、基本特性和性质、将抗病毒药物掺入 CS 聚合物中的方法以及 CS 纳米颗粒系统,以及它们在实际抗病毒治疗背景下的最新生物医学应用。报告了 CS 聚合物和 CS 纳米颗粒递药系统在特定病毒疾病和相应抗病毒药物方面的发展程度(即研究性研究、体外/体内/临床前测试),以及它们的优势和局限性。