首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Physico-chemical characterization of liposomes and drug substance-liposome interactions in pharmaceutics using capillary electrophoresis and electrokinetic chromatography
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Physico-chemical characterization of liposomes and drug substance-liposome interactions in pharmaceutics using capillary electrophoresis and electrokinetic chromatography

机译:使用毛细管电泳和电动色谱法对药物中脂质体的理化性质和药物-脂质体之间的相互作用进行表征

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摘要

Liposomes are self-assembled phospholipid vesicles and have numerous research and therapeutic applications. In the pharmaceutical and biomedical sciences liposomes find use as models of biological membranes, partitioning medium and as drug carriers. The present review addresses the use of capillary electrophoresis and liposome electrokinetic chromatography for the characterization of liposomes in a pharmaceutical context. Capillary electrophoretic techniques have been used for the measurement of electrophoretic mobility, which provides information on liposome surface charge, size and membrane permeability of liposomes. The use of liposome electrokinetic chromatography and capillary electrophoresis for determination of liposome/water partitioning and characterization of drug-liposome interactions is reviewed. A number of studies indicate that capillary electrophoresis may have a role in the characterization of liposome drug delivery systems, e.g., for the investigation of encapsulation efficiency and drug leakage. The well-known characteristics of capillary electrophoresis, i.e., low sample volume requirement, high separation efficiency in aqueous media without a stationary phase, minimal sample preparation, and a high degree of automation, makes it an attractive approach in liposome research.
机译:脂质体是自组装的磷脂囊泡,具有许多研究和治疗应用。在药学和生物医学科学中,脂质体可用作生物膜的模型,分配介质和用作药物载体。本文概述了毛细管电泳和脂质体电动色谱在药物领域表征脂质体的用途。毛细管电泳技术已用于测量电泳迁移率,该电泳迁移率提供了有关脂质体表面电荷,脂质体大小和膜通透性的信息。审查了脂质体电动色谱和毛细管电泳用于确定脂质体/水分配和表征药物-脂质体相互作用的用途。大量研究表明,毛细管电泳可能在脂质体药物递送系统的表征中起作用,例如,用于研究封装效率和药物渗漏。毛细管电泳的众所周知的特性,即低样品量要求,在没有固定相的情况下在水性介质中的分离效率高,样品制备最少以及自动化程度高,使其成为脂质体研究的诱人方法。

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