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AFM Study on the Electric-Field Effects on Supported Bilayer Lipid Membranes

机译:电场对负载型双层脂质膜的电场作用研究

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摘要

Electric-field induced changes in structure and conductivity of supported bilayer lipid membranes (SLM) have been studied at submicroscopic resolution using atomic force microscopy and electrochemical impedance spectroscopy. The SLMs are formed on gold surfaces modified with mixed self-assembled monolayers of a cholesterol-tether and 6-mercaptohexanol. At applied potentials of ≤−0.25 V versus standard hydrogen electrode, the conductance of the SLM increases and membrane areas of <150 nm in size are found to elevate from the surface up to 15 nm in height. To estimate the electric field experienced by the lipid membrane, electrowetting has been used to determine the point of zero charge of a 6-mercaptohexanol-modified surface (0.19 ± 0.13 V versus standard hydrogen electrode). The effects of electric fields on the structure and conductance of supported membranes are discussed.
机译:电场诱导的双层脂质膜(SLM)的结构和电导率变化已使用原子力显微镜和电化学阻抗谱在亚显微分辨率下进行了研究。 SLM形成在金表面上,该表面被胆固醇链和6-巯基己醇的混合自组装单分子层改性。在相对于标准氢电极的施加电压≤-0.25V的情况下,SLM的电导增加,并且尺寸小于150 nm的膜区域从表面升高到15 nm高。为了估计脂质膜所经历的电场,已使用电润湿来确定6-巯基己醇修饰的表面的零电荷点(相对于标准氢电极为0.19±0.13 V)。讨论了电场对支撑膜结构和电导的影响。

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