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首页> 外文期刊>Scientific reports. >Mechanically stable solvent-free lipid bilayers in nano- and micro-tapered apertures for reconstitution of cell-free synthesized hERG channels
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Mechanically stable solvent-free lipid bilayers in nano- and micro-tapered apertures for reconstitution of cell-free synthesized hERG channels

机译:机械稳定的无溶剂脂质双层在纳米和微锥孔中,用于重建无细胞的合成hERG通道

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The self-assembled bilayer lipid membrane (BLM) is the basic component of the cell membrane. The reconstitution of ion channel proteins in artificially formed BLMs represents a well-defined system for the functional analysis of ion channels and screening the effects of drugs that act on them. However, because BLMs are unstable, this limits the experimental throughput of BLM reconstitution systems. Here we report on the formation of mechanically stable solvent-free BLMs in microfabricated apertures with defined nano- and micro-tapered edge structures. The role of such nano- and micro-tapered structures on the stability of the BLMs was also investigated. Finally, this BLM system was combined with a cell-free synthesized human ether-a-go-go-related gene channel, a cardiac potassium channel whose relation to arrhythmic side effects following drug treatment is well recognized. Such stable BLMs as these, when combined with a cell-free system, represent a potential platform for screening the effects of drugs that act on various ion-channel genotypes.
机译:自组装双层脂质膜(BLM)是细胞膜的基本组件。人工形成的BLM中离子通道蛋白的重构代表了一个完善的系统,用于离子通道的功能分析和筛选作用于其上的药物的作用。但是,由于BLM不稳定,因此限制了BLM重构系统的实验吞吐量。在这里,我们报告在具有确定的纳米锥度和微锥度边缘结构的微细加工孔中形成机械稳定的无溶剂BLM。还研究了这种纳米和微锥形结构对BLM稳定性的作用。最终,该BLM系统与无细胞合成的人类以太相关基因通道(一种心脏钾通道)结合在一起,该通道在药物治疗后与心律失常副作用之间的关系得到了公认。当与无细胞系统结合时,此类稳定的BLM代表了筛选作用于各种离子通道基因型的药物作用的潜在平台。

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