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支撑膜:科学与实际应用

Supported membranes: scientific and practical applications.

作者信息

Sackmann E

机构信息

Physik Department E22 (Biophysics Laboratory) Technische Universität München, Garching, Germany.

出版信息

Science. 1996 Jan 5;271(5245):43-8. doi: 10.1126/science.271.5245.43.

Abstract

Scientific and practical applications of supported lipid-protein bilayers are described. Membranes can be covalently coupled to or separated from solids by ultrathin layers of water or soft polymer cushions. The latter systems maintain the structural and dynamic properties of free bilayers, forming a class of models of biomembranes that allow the application of a manifold of surface-sensitive techniques. They form versatile models of low-dimensionality complex fluids, which can be used to study interfacial forces and wetting phenomena, and enable the design of phantom cells to explore the interplay of lock-and-key forces (such as receptor-ligand binding) and universal forces for cell adhesion. Practical applications are the design of (highly selective) receptor surfaces of biosensors on electrooptical devices or the biofunctionalization of inorganic solids.

摘要

本文描述了支撑脂质-蛋白质双层膜的科学和实际应用。膜可以通过超薄水层或软聚合物垫层与固体共价偶联或分离。后一种系统保持了自由双层膜的结构和动态特性,形成了一类生物膜模型,允许应用多种表面敏感技术。它们形成了低维复杂流体的通用模型,可用于研究界面力和润湿现象,并能够设计虚拟细胞来探索锁钥力(如受体-配体结合)和细胞黏附通用力之间的相互作用。实际应用包括电光设备上生物传感器(高选择性)受体表面的设计或无机固体的生物功能化。

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