Madwar Carolin, Gopalakrishnan Gopakumar, Lennox R Bruce
Department of Chemistry, McGill University, 801 Sherbrooke Street West, Montréal, Quebec H3A 0B8, Canada.
Langmuir. 2015 Apr 28;31(16):4704-12. doi: 10.1021/acs.langmuir.5b00862. Epub 2015 Apr 13.
Spherically supported bilayer lipid membranes (SS-BLMs) exhibiting co-existing membrane microdomains were created on spherical silica substrates. These 5 μm SiO2-core SS-BLMs are shown to interact dynamically when interfaced with living cells in culture, while keeping the membrane structure and lipid domains on the SS-BLM surface intact. Interactions between the SS-BLMs and cellular components are examined via correlating fluorescently labeled co-existing microdomains on the SS-BLMs, their chemical composition and biophysical properties with the consequent organization of cell membrane lipids, proteins, and other cellular components. This approach is demonstrated in a proof-of-concept experiment involving the dynamic organization of cellular cytoskeleton, monitored as a function of the lipid domains of the SS-BLMs. The compositional versatility of SS-BLMs provides a means to address the relationship between the phenomenon of lipid phase separation and the other contributors to cell membrane lateral heterogeneity.
在球形二氧化硅基底上制备出了呈现共存膜微区的球形支撑双层脂质膜(SS-BLMs)。这些5μm二氧化硅核心的SS-BLMs在与培养中的活细胞接触时,能动态相互作用,同时保持SS-BLM表面的膜结构和脂质域完整。通过将SS-BLMs上荧光标记的共存微区、其化学组成和生物物理性质与细胞膜脂质、蛋白质及其他细胞成分的后续组织情况相关联,来研究SS-BLMs与细胞成分之间的相互作用。在一个概念验证实验中展示了这种方法,该实验涉及细胞细胞骨架的动态组织,作为SS-BLMs脂质域的函数进行监测。SS-BLMs的组成多样性提供了一种手段,来研究脂质相分离现象与细胞膜横向异质性的其他因素之间的关系。