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Nanoscale Measurement of the Dielectric Constant of Supported Lipid Bilayers in Aqueous Solutions with Electrostatic Force Microscopy

机译:用静电力显微镜对水溶液中负载脂质双层的介电常数进行纳米测量。

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摘要

We present what is, to our knowledge, the first experimental demonstration of dielectric constant measurement and quantification of supported lipid bilayers in electrolyte solutions with nanoscale spatial resolution. The dielectric constant was quantitatively reconstructed with finite element calculations by combining thickness information and local polarization forces which were measured using an electrostatic force microscope adapted to work in a liquid environment. Measurements of submicrometric dipalmitoylphosphatidylcholine lipid bilayer patches gave dielectric constants of εr ∼ 3, which are higher than the values typically reported for the hydrophobic part of lipid membranes (εr ∼ 2) and suggest a large contribution of the polar headgroup region to the dielectric response of the lipid bilayer. This work opens apparently new possibilities in the study of biomembrane electrostatics and other bioelectric phenomena.
机译:我们将据我们所知,是介电常数测量和电解质溶液中支持的脂质双层的纳米级空间分辨率的第一个实验演示。通过将厚度信息和局部极化力相结合,使用有限元计算法定量地重建了介电常数,该局部极化力是使用适合在液体环境中工作的静电力显微镜测量的。亚微米级二棕榈酰磷脂酰胆碱脂质双层贴剂的测量得出介电常数为εr〜3,高于脂质膜疏水部分的典型报道值(εr〜2),这表明极性头基区域对脂质体介电响应的贡献很大。脂质双层。这项工作显然为研究生物膜静电和其他生物电现象打开了新的可能性。

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