Dynamic Microfluidic Channels for Active Nanotransport Driven by Kinesin Motor Proteins

R. Yokokawa
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Abstract

In this paper, we describe some of our recent studies for motor protein assays using micro/nano fabrications. We fabricated two microfluidic polymer devices that enable to study active transport of kinesins and tau protein detection, respectively. The former device eliminated diffusional transport of target molecules in a single micrometer-scale channel to evaluate only the motor’s active transport, which was dynamically formed by a pneumatic poly(dimethylsiloxane) (PDMS) membrane valve. The latter device enables to detect a microtubule associated protein (MAP), tau protein, for differentiating its isoforms and mutants. These devices will be further integrated with motor protein assays to explore their applicability in bio-inspired nanosystems.
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由运动蛋白驱动的动态微流控主动纳米运输通道
在本文中,我们描述了一些我们最近的研究运动蛋白分析使用微/纳米制造。我们制作了两种微流控聚合物装置,分别用于研究运动蛋白的主动转运和tau蛋白的检测。前一种装置消除了目标分子在单个微米尺度通道中的扩散输运,仅评估由气动聚二甲基硅氧烷(PDMS)膜阀动态形成的电机主动输运。后一种装置能够检测微管相关蛋白(MAP), tau蛋白,用于区分其同种异构体和突变体。这些装置将进一步与运动蛋白分析相结合,以探索其在生物启发纳米系统中的适用性。
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