Méléard Philippe, Bagatolli Luis A, Pott Tanja
CNRS UMR 6226, ENSCR, Avenue du Général Leclerc, Cedex, France.
Methods Enzymol. 2009;465:161-76. doi: 10.1016/S0076-6879(09)65009-6.
Giant unilamellar vesicles (GUVs) are well-known model systems, especially because they are easily observable using optical microscopy. In this chapter, we revisit in detail the versatile GUV electroformation protocol. We demonstrate how GUV electroformation can be adapted to various membrane systems including synthetic lipid mixtures, natural lipid extracts, and bilayers containing membrane proteins. Further, we show how to adjust this protocol to a given aqueous environment and prove that GUVs can be obtained under physiologically relevant conditions, that is, in the presence of electrolytes. Finally, we provide firm evidence that electroformation is a method of choice to produce giant vesicles from native cell membranes. This is illustrated with the example of GUV electroformation from red blood cell ghosts in a physiologically pertinent buffer. GUVs obtained in this manner maintain the native membrane asymmetry, thereby validating the physiological relevance of GUV electroformation.
巨型单层囊泡(GUVs)是著名的模型系统,特别是因为它们易于使用光学显微镜观察。在本章中,我们将详细回顾通用的GUV电形成方案。我们展示了GUV电形成如何适用于各种膜系统,包括合成脂质混合物、天然脂质提取物以及含有膜蛋白的双层膜。此外,我们展示了如何根据给定的水性环境调整该方案,并证明可以在生理相关条件下,即在电解质存在的情况下获得GUVs。最后,我们提供了确凿的证据,证明电形成是从天然细胞膜产生巨型囊泡的首选方法。以在生理相关缓冲液中从红细胞血影进行GUV电形成为例进行说明。以这种方式获得的GUVs保持了天然膜的不对称性,从而验证了GUV电形成的生理相关性。