Suppr超能文献

用于药物递送系统和疫苗稳定化的脂质体-聚合物复合物

Liposome-polymer complex for drug delivery system and vaccine stabilization.

作者信息

Umar Abd Kakhar, Wathoni Nasrul, Zothantluanga James H, Das Sanjoy, Luckanagul Jittima Amie

机构信息

Department of Pharmaceutics and Pharmaceutical Technology, Faculty of Pharmacy, Universitas Padjadjaran, Jatinangor 45363, Indonesia.

Department of Pharmaceutical Sciences and Technology, Faculty of Pharmaceutical Sciences, Chulalongkorn University, Bangkok 10330, Thailand.

出版信息

Heliyon. 2022 Feb 12;8(2):e08934. doi: 10.1016/j.heliyon.2022.e08934. eCollection 2022 Feb.

Abstract

Liposomes have been used extensively as micro- and nanocarriers for hydrophobic or hydrophilic molecules. However, conventional liposomes are biodegradable and quickly eliminated, making it difficult to be used for delivery in specific routes, such as the oral and systemic routes. One way to overcome this problem is through complexation with polymers, which is referred to as a liposome complex. The use of polymers can increase the stability of liposome with regard to pH, chemicals, enzymes, and the immune system. In some cases, specific polymers can condition the properties of liposomes to be explicitly used in drug delivery, such as targeted delivery and controlled release. These properties are influenced by the type of polymer, crosslinker, interaction, and bond in the complexation process. Therefore, it is crucial to study and review these parameters for the development of more optimal forms and properties of the liposome complex. This article discusses the use of natural and synthetic polymers, ways of interaction between polymers and liposomes (on the surface, incorporation in lamellar chains, and within liposomes), types of bonds, evaluation standards, and their effects on the stability and pharmacokinetic profile of the liposome complex, drugs, and vaccines. This article concludes that both natural and synthetic polymers can be used in modifying the structure and physicochemical properties of liposomes to specify their use in targeted delivery, controlled release, and stabilizing drugs and vaccines.

摘要

脂质体已被广泛用作疏水性或亲水性分子的微米和纳米载体。然而,传统脂质体具有生物可降解性且会迅速被清除,这使得其难以用于特定途径的递送,如口服和全身途径。克服这一问题的一种方法是通过与聚合物复合,这被称为脂质体复合物。聚合物的使用可以提高脂质体在pH值、化学物质、酶和免疫系统方面的稳定性。在某些情况下,特定的聚合物可以调节脂质体的性质,以明确用于药物递送,如靶向递送和控释。这些性质受复合过程中聚合物的类型、交联剂、相互作用和键的影响。因此,研究和审查这些参数对于开发更优化形式和性质的脂质体复合物至关重要。本文讨论了天然和合成聚合物的使用、聚合物与脂质体之间的相互作用方式(在表面、掺入层状链以及在脂质体内)、键的类型、评估标准,以及它们对脂质体复合物、药物和疫苗的稳定性和药代动力学特征的影响。本文得出结论,天然和合成聚合物均可用于修饰脂质体的结构和物理化学性质,以明确其在靶向递送、控释以及稳定药物和疫苗方面的用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/864f/8861389/e2219aef79c6/gr1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验