Institute of Biochemistry, Life Sciences Center, Vilnius University, Vilnius, Lithuania.
Methods Mol Biol. 2022;2402:31-59. doi: 10.1007/978-1-0716-1843-1_4.
In this paper, we describe the application of electrochemical impedance spectroscopy (EIS) to characterize process of formation and properties of solid-supported tethered bilayer membranes on solid conducting substrates. Along with the description of experimental procedures to prepare substrates and self-assembly of phospholipid bilayers onto gold-coated glass slides, we describe the detailed protocols of EIS measurements. We demonstrate the utility of EIS in the evaluation of the properties of both molecular anchor layers used to immobilize tBLMs as well as characterization of tBLMs. We show that the EIS methodology extends the applicability of this technique well beyond the mere evaluation of electric parameters. Specifically, we demonstrate how by using EIS one may evaluate both density and size of water-filled defects (ion-channels) in tBLMs, to determine the structural mode (homogeneous, heterogeneous, or clustered) of distribution of defects in tBLMs. Our methodology can be applied in both basic protein membrane interaction studies, as well as in the development of precision biosensoric systems with tBLMs as a sensing element.
本文描述了电化学阻抗谱(EIS)在表征固体导电基底上固载化双层 tethered 膜形成过程和性质中的应用。本文描述了制备基底和将磷脂双层自组装到金涂覆的玻璃载玻片上的实验步骤,还描述了 EIS 测量的详细方案。我们展示了 EIS 在评估用于固定 tBLM 的分子锚定层的性质以及 tBLM 表征方面的应用。我们表明,EIS 方法将该技术的适用性远远扩展到了仅仅评估电参数之外。具体而言,我们展示了如何通过使用 EIS 可以评估 tBLM 中的充满水的缺陷(离子通道)的密度和大小,以确定缺陷在 tBLM 中的分布的结构模式(均匀、非均匀或聚集)。我们的方法可应用于基础蛋白膜相互作用研究,以及以 tBLM 作为传感元件的精密生物传感系统的开发。