Facility of Nanobiotechnology, Italian Institute of Technology, Via Morego 30, Genoa, Italy.
Microsc Res Tech. 2010 Oct;73(10):965-72. doi: 10.1002/jemt.20834.
Solid supported lipid bilayers (SLB) are extensively used as a model for the investigation of cell membranes in a variety of spectroscopic and biophysical methods. It is nevertheless well known that the interaction with the solid substrate, such as mica or silicon, influences the properties of the membranes. In this article we have employed atomic force microscopy (AFM) in force spectroscopy mode (FS) to investigate the local mechanical properties of lipid membranes supported on mica and on polymer cushion. The lipid double layers were obtained by fusion of unilamellar vesicle of phospholipids. The polymer support was created by self-assembly of charged polyelectrolytes. Force spectroscopy provided information about the breakthrough force, the breakthrough depth, and the sample adhesion. A batch analysis algorithm to process high-resolution force mapping was developed. The breakthrough force to indent the bilayers down to the support and the adhesion force were measured as a function of the membrane charge. The comparison of the data obtained from SLB on mica and from bilayers on polymer cushion provides direct evidence about the influence of the substrate on the local mechanic properties of the membrane. As a major result, the yield force distribution of membranes on polymer cushion was bimodal, compared to the unimodal distribution obtained on mica.
固体支撑脂质双层(SLB)广泛应用于各种光谱和生物物理方法中,作为细胞膜的模型进行研究。然而,众所周知,与云母或硅等固体基底的相互作用会影响膜的性质。在本文中,我们采用原子力显微镜(AFM)在力谱模式(FS)下研究了支撑在云母和聚合物垫上的脂质双层的局部力学性质。脂质双层是通过磷脂单层囊泡融合获得的。聚合物支撑是通过荷电聚合物的自组装形成的。力谱法提供了关于突破力、突破深度和样品粘附力的信息。开发了一种批量分析算法来处理高分辨率力映射。将双层压入支撑的突破力和粘附力作为膜电荷的函数进行测量。从云母上的 SLB 和聚合物垫上的双层获得的数据比较提供了关于基底对膜局部力学性质影响的直接证据。作为主要结果,与在云母上获得的单峰分布相比,聚合物垫上的膜的屈服力分布呈双峰分布。