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脂质体:制备与表征,特别关注毛细管电泳的应用

Liposomes: preparation and characterization with a special focus on the application of capillary electrophoresis.

作者信息

Tomnikova Alice, Orgonikova Andrea, Krizek Tomas

机构信息

Department of Analytical Chemistry, Faculty of Science, Charles University, Prague, Czech Republic.

出版信息

Monatsh Chem. 2022;153(9):687-695. doi: 10.1007/s00706-022-02966-0. Epub 2022 Aug 9.

Abstract

Liposomes are nowadays a matter of tremendous interest. Due to their amphiphilic character, various substances with different properties can be incorporated into them and they are especially suitable as a model system for controlled transport of bioactive substances and drugs to the final destination in the body; for example, COVID-19 vaccines use liposomes as a carrier of mRNA. Liposomes mimicking composition of various biological membranes can be prepared with a proper choice of the lipids used, which proved to be important tool in the early drug development. This review deals with commonly used methods for the preparation and characterization of liposomes which is essential for their later use. The alternative capillary electrophoresis methods for physico-chemical characterization such as determination of membrane permeability of liposome, its size and charge, and encapsulation efficiency are included. Two different layouts using liposomes to yield more efficient separation of various analytes are also presented, capillary electrochromatography, and liposomal electrokinetic chromatography.

摘要

如今,脂质体备受关注。由于其两亲性,各种性质不同的物质都可以被包封在其中,它们特别适合作为生物活性物质和药物向体内最终目的地进行可控运输的模型系统;例如,新冠疫苗使用脂质体作为mRNA的载体。通过适当选择所用脂质,可以制备出模拟各种生物膜组成的脂质体,这在早期药物开发中被证明是一种重要工具。本综述涉及脂质体制备和表征的常用方法,这对于它们的后续应用至关重要。还包括用于物理化学表征的替代毛细管电泳方法,如脂质体膜通透性、大小和电荷的测定以及包封效率的测定。此外,还介绍了两种使用脂质体以更高效分离各种分析物的不同布局,即毛细管电色谱和脂质体电动色谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3174/9360637/a2cdcfa07cee/706_2022_2966_Fig1_HTML.jpg

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