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High Impedance Droplet-Solid Interface Lipid Bilayer Membranes

机译:高阻抗液滴-固体界面脂质双层膜

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A droplet-solid interface lipid bilayer membrane (DSLM) with high impedance was developed through controlling the contact area between an aqueous droplet and electrode. The electrode size can be easily controlled from millimeter to micrometer level. The droplet-solid interface lipid bilayer membranes were characterized by cyclic voltammetry (CV), electrochemical impedance spectroscopy (EIS), and fluorescence microscopy. The fluorescence recovery after photobleaching (FRAP) was applied to determine the diffusion coefficient of egg PC DSLM to be 2.58 mu m(2) s(-1). The DSLM resistance can reach up to 26.3 G Omega, which was then used to study the ion channel behavior of melittin. The resistivity of the bilayer membrane decreased linearly with the increase of melittin concentration in the membrane. The high impedance and fluidity of DSLM makes it an ideal model cell membrane system for ion channel study and high-throughput drug screening.
机译:通过控制水滴与电极之间的接触面积,开发了具有高阻抗的液滴-固体界面脂质双层膜(DSLM)。电极尺寸可以轻松控制,从毫米级到微米级。液滴-固体界面脂质双层膜通过循环伏安法(CV),电化学阻抗谱(EIS)和荧光显微镜进行了表征。应用光漂白后的荧光恢复(FRAP)确定鸡蛋PC DSLM的扩散系数为2.58μm(2)s(-1)。 DSLM电阻可达到26.3 GΩ,然后用于研究蜂毒肽的离子通道行为。双层膜的电阻率随着膜中蜂毒肽浓度的增加而线性降低。 DSLM的高阻抗和流动性使其成为用于离子通道研究和高通量药物筛选的理想模型细胞膜系统。

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