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首页> 外文期刊>Biomedical Microdevices >Formation of lipid bilayers inside microfluidic channel array for monitoring membrane-embedded nanopores of phi29 DNA packaging nanomotor
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Formation of lipid bilayers inside microfluidic channel array for monitoring membrane-embedded nanopores of phi29 DNA packaging nanomotor

机译:脂质双层在微流控通道阵列内部的形成,以监测phi29 DNA包装纳米电机的膜嵌入纳米孔

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摘要

An efficient method to form lipid bilayers inside an array of microfluidic channels has been developed and applied to monitor the membrane-embedded phi29 DNA packaging motor with an electrochemical characterization on a lab-on-a-chip (LOC) platform. A push-pull junction capturing approach was applied to confine a small amount of the lipid solution inside a microchannel. The selective permeability between solvents and water in PDMS was utilized to extract the solvent from the lipid solution, resulting in a self-formation of the lipid bilayer in the microchannel array. Each microchannel was independently connected to a silver/ silver chloride (Ag/AgCl) electrode array, leading to a high-throughput monitoring of the nanopore insertion in the formed lipid bilayers. The formation of multiple lipid bilayers inside an array of microchannels and the simultaneous electrical and optical monitoring of multiple bilayer provides an efficient LOC platform for the further development of single phi29 motor pore sensing and high throughput single pore dsDNA sequencing.
机译:已经开发了一种在微流控通道内部形成脂质双层的有效方法,并将其应用于通过芯片实验室(LOC)平台上的电化学表征监测膜嵌入phi29 DNA包装电机。应用推挽式结捕获方法将少量脂质溶液限制在微通道内。利用PDMS中溶剂与水之间的选择性渗透性从脂质溶液中提取溶剂,从而在微通道阵列中形成脂质双层的自形成。每个微通道独立连接到银/氯化银(Ag / AgCl)电极阵列,从而高通量监测形成的脂质双层中纳米孔的插入。微通道阵列内多个脂质双层的形成以及多个双层的同时电学和光学监视为进一步开发单phi29电机孔传感和高通量单孔dsDNA测序提供了有效的LOC平台。

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