Monolithically fabricated perforated polyimide separator for a planar lipid bilayer devi CE

T. Osaki, M. Kaneko, K. Araki, H. Uehara, T. Ura, H. Hirata, K. Kamiya, S. Fujii, N. Misawa, S. Takeuchi
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Abstract

We propose a batch fabrication of a perforated separator for formation of a planar lipid bilayer, aiming for commercial and mass production. A planar lipid-bilayer system increasingly attracts attention as a platform of nanopore-based biosensors, and a perforated separator is an essential component for reconstitution of a planar bilayer on such sensor devices. We therefore designed a mass-fabrication procedure of the separator, avoiding laborious processes. First, an array of microapertures was processed on a sheet of polyimide thin film (200 × 200 mm2) by chemical etching. Photo-reactive polyimide coverlays were then laminated and formed a frame of the apertures at both faces of the film as reinforcement. Approximately 300 pieces of monolithic separators were obtained by the procedure. Electrical properties (current noise level) of a planar bilayer were certified with the developed separator.
用于平面脂质双分子层装置的单片制备穿孔聚酰亚胺分离器
我们提出了一种用于形成平面脂质双分子层的多孔分离器的批量制造,旨在商业化和大规模生产。平面脂质双分子层系统作为纳米孔生物传感器的平台越来越受到人们的关注,而穿孔分离器是在这种传感器装置上重构平面双分子层的重要组成部分。因此,我们设计了一种大规模制造分离器的程序,避免了费力的过程。首先,通过化学蚀刻在聚酰亚胺薄膜(200 × 200 mm2)上加工微孔阵列。然后将光反应性聚酰亚胺覆盖物层压并在膜的两面形成一个孔框架作为增强。通过该方法共获得了约300片整体式分离器。利用所研制的分离器对平面双分子层的电学性能(电流噪声级)进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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