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在固体载体上重建细胞膜的单步工艺。

Single-step process to reconstitute cell membranes on solid supports.

机构信息

Department of Materials Science and Engineering, Stanford University, Stanford, California 94305, USA.

出版信息

Langmuir. 2010 Apr 6;26(7):4635-8. doi: 10.1021/la100583f.

Abstract

A new technique is presented to create supported lipid bilayers from whole cell lipids without the use of detergent or solvent extraction. In a modification of the bubble collapse deposition (BCD) technique, an air bubble is created underwater and brought into contact with a population of cells. The high-energy air/water interface extracts the lipid component of the cell membrane, which can subsequently be redeposited as a fluid bilayer on another substrate. The resulting bilayers were characterized with fluorescence microscopy, and it was found that both leaflets of the cell membrane are transferred but the cytoskeleton is not. The resulting supported bilayer was fluid over an area much larger than a single cell, demonstrating the capacity to create large, continuous bilayer samples. This capability to create fluid, biologically relevant bilayers will facilitate the use of high-resolution scanning microscopy techniques in the study of membrane-related processes.

摘要

本文提出了一种新的技术,可在不使用去污剂或溶剂萃取的情况下,从全细胞脂质中制备负载脂质双层。在气泡崩溃沉积(BCD)技术的改进中,在水下产生一个气泡,并使其与细胞群接触。高能的气/水界面提取细胞膜的脂质成分,随后可以在另一个基底上重新沉积为流体双层。用荧光显微镜对所得双层进行了表征,发现细胞膜的两个叶层都被转移,但细胞骨架没有被转移。所得的负载双层在远大于单个细胞的区域上是流体,表明有能力制备大的、连续的双层样品。这种制备流体、生物学相关双层的能力将促进在膜相关过程研究中使用高分辨率扫描显微镜技术。

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