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Self-Spreading Method for Forming Lipid Bilayer on a Patterned Agarose Gel: Toward Precise Lipid Bilayer Patterning

机译:在图案化琼脂糖凝胶上形成脂双层的自涂方法:朝向精确的脂质双层图案化

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Forming artificial cell membranes is a suitable strategy for studying drug responses of membrane proteins. In order to form lipid bilayer with both mechanical stability and membrane protein functions, hydrogel supported bilayer has attracted attentions. Combinational use of self-extraction method for lipid bilayer formation and agarose gel patterning should realize hydrogel-supported bilayer with any shape and large area. In this study, we aimed to form a lipid bilayer on a patterned agarose gel and to characterize the membrane. First, lipid mixture was attached on an agarose gel, and lipid layers spread on the gel surface. With fluorescent observation, it is suggested that thin lipid layer was formed on the agarose gel, and their distance-dependent changes in spreading velocity was consistent with that in lipid bilayer. Next, the lipid layer was characterized with fluorescence recovery after photo breaching experiment. As a result, it is indicated that lipid molecules in the lipid layer on the agarose showed lateral diffusion, a typical characteristic of lipid bilayer. Taken together, we confirmed that lipid bilayer can be formed on the patterned agarose gel with self-spreading method. The hydrogel-supported bilayer will be a suitable tool for drug discovery.
机译:形成人造细胞膜是研究膜蛋白的药物反应的合适策略。为了形成具有机械稳定性和膜蛋白功能的脂质双层,水凝胶支持的双层引起了关注。组合使用自提取方法对脂质双层形成和琼脂糖凝胶图案,应实现水凝胶支撑双层的任何形状和大面积。在这项研究中,我们的目标是在图案化的琼脂糖凝胶上形成脂质双层并表征膜。首先,将脂质混合物连接在琼脂糖凝胶上,并在凝胶表面上扩散的脂质层。利用荧光观察,建议在琼脂糖凝胶上形成薄脂质层,并且它们的距离变化的差距变化与脂质双层的距离相一致。接下来,脂质层的表征在照片违规实验后的荧光恢复。结果表明,血糖糖上的脂质层中的脂质分子显示出横向扩散,脂质双层的典型特征。一起服用,我们确认可以在图案化的琼脂糖凝胶上形成脂质双层,具有自扩散方法。水凝胶支持的双层将是药物发现的合适工具。

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