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Surface-Bound Cytomimetic Assembly Based on Chemoselective and Biocompatible Immobilization and Further Modification of Intact Liposome

机译:基于化学选择性和生物相容性固定化和进一步修饰完整脂质体的表面结合细胞模拟物组装。

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摘要

A surface-bound cytomimetic assembly based on chemically selective and biocompatible immobilization and further modification of intact liposome is described. Liposomes carrying PEG-triphenylphosphine were chemoselectively immobilized onto azide-modified glass slides through Staudinger ligation, followed by modification with azide-modified lactose as a model biomolecule through Staudinger ligation to afford the surface-bound cytomimetic assembly. The intact liposome immobilized and modified and its protein binding activity were confirmed by fluorescence imaging, fluorescent dye releasing kinetics, and AFM techniques. The resultant surface-bound cytomimetic assembly showed sustained stability and fluorescent dye releasing kinetics and specific protein binding activity. The reported method provides a robust platform for preparation of a complex immobilized liposome system with multifunctional components, which mimics the cell surface in both geographical and content features and thus will find important biomedical applications.
机译:描述了基于化学选择性和生物相容性固定化以及完整脂质体的进一步修饰的表面结合的模拟细胞的组装物。通过Staudinger连接将携带PEG-三苯膦的脂质体化学选择性固定在叠氮化物修饰的载玻片上,然后通过Staudinger连接将叠氮化物修饰的乳糖作为模型生物分子进行修饰,以提供表面结合的拟模拟物。通过荧光成像,荧光染料释放动力学和AFM技术证实了固定化和修饰的完整脂质体及其蛋白结合活性。所得的表面结合的拟模拟物组装物显示出持续的稳定性和荧光染料释放动力学和特异性蛋白质结合活性。报道的方法为制备具有多功能成分的复杂的固定化脂质体系统提供了一个强大的平台,该系统在地理和内容特征上都模拟了细胞表面,因此将找到重要的生物医学应用。

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