Self-assembly and immobilization of liposomes in fused-silica capillary by avidin–biotin binding

Qing Yang , Xue-Ying Liu , Jun Miyake , Hideki Toyotama
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引用次数: 25

Abstract

Small and large unilamellar biotinylated liposomes (SUVs and LUVs) composed of egg phosphatidylcholine and 2 mol% of biotinylated phosphatidylethanolamine were assembled in the presence of avidin at a low concentration (0.05–0.1 mg ml-1) and simultaneously immobilized in fused-silica capillary tubing. LUV assemblies were immobilized to 21 nmol phospholipid in one capillary, about twice as high as found for the SUV assemblies. Estimated values showed that the capillary inner surface was coated by 4–15 liposome layers. The liposome-coated capillary can be used in capillary electrophoresis for microanalysis of drug-membrane interactions. This avidin–biotin-assembly method may also be applied to immobilize liposomes or proteoliposomes in a high order on a planar solid surface for construction of biomaterials.

亲和素-生物素结合在熔融二氧化硅毛细管中脂质体的自组装和固定化
在低浓度(0.05 ~ 0.1 mg ml-1)亲和素存在下组装由卵磷脂酰胆碱和2 mol%生物素化磷脂酰乙醇胺组成的小、大单层生物素化脂质体(SUVs和LUVs),并同时固定在熔融石英毛细管中。LUV组件在一个毛细管中固定到21 nmol的磷脂,大约是SUV组件的两倍。估计结果表明,毛细管内表面包被4-15层脂质体。脂质体包被毛细管可用于毛细管电泳,用于药物-膜相互作用的微观分析。这种亲和素-生物素组装方法也可用于在平面固体表面上高阶固定脂质体或蛋白脂质体,用于构建生物材料。
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