Department of Chemical and Biological Engineering, University of Maine, Orono, Maine 04469, USA.
Langmuir. 2013 Jun 25;29(25):7966-74. doi: 10.1021/la400768s. Epub 2013 Jun 6.
Model cellular membranes enable the study of biological processes in a controlled environment and reduce the traditional challenges associated with live or fixed cell studies. However, model membrane systems based on the air/water or oil/solution interface do not allow for incorporation of transmembrane proteins or for the study of protein transport mechanisms. Conversely, a phospholipid bilayer deposited via the Langmuir-Blodgett/Langmuir-Schaefer method on a hydrogel layer is potentially an effective mimic of the cross section of a biological membrane and facilitates both protein incorporation and transport studies. Prior to application, however, such membranes must be fully characterized, particularly with respect to the phospholipid bilayer phase transition temperature. Here we present a detailed characterization of the phase transition temperature of the inner and outer leaflets of a chitosan supported model membrane system. Specifically, the lateral diffusion coefficient of each individual leaflet has been determined as a function of temperature. Measurements were performed utilizing z-scan fluorescence correlation spectroscopy (FCS), a technique that yields calibration-free diffusion information. Analysis via the method of Wawrezinieck and co-workers revealed that phospholipid diffusion changes from raftlike to free diffusion as the temperature is increased-an insight into the dynamic behavior of hydrogel supported membranes not previously reported.
模型细胞膜能够在受控环境中研究生物过程,并减少与活细胞或固定细胞研究相关的传统挑战。然而,基于气/水或油/溶液界面的模型膜系统不允许整合跨膜蛋白或研究蛋白转运机制。相反,通过 Langmuir-Blodgett/Langmuir-Schaefer 方法沉积在水凝胶层上的磷脂双层膜有可能有效地模拟生物膜的横截面,并促进蛋白整合和转运研究。然而,在应用之前,必须对这些膜进行全面表征,特别是要了解磷脂双层相变温度。在这里,我们详细描述了壳聚糖支撑的模型膜系统的内外叶磷脂双层相变温度。具体来说,已经确定了每个叶层的横向扩散系数随温度的变化。测量是利用 z 扫描荧光相关光谱(FCS)技术进行的,该技术可提供无校准的扩散信息。通过 Wawrezinieck 及其同事的方法进行分析表明,随着温度的升高,磷脂扩散从筏状扩散转变为自由扩散——这是对以前未报道过的水凝胶支撑膜动态行为的深入了解。