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Biological application of multi-component nanowires in hybrid devices powered by F_1-ATPase motors

机译:多组分纳米线在F_1-ATPase电机驱动的混合设备中的生物应用

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摘要

In this paper, construction of hybrid device by integrating nanowires with F_1-ATPase motors is described. The nickel nanowires and multi-segment nanowires, including gold and nickel, were fabricated by electrochemical deposition in nanoporous templates. The nickel nanowires func-tionalized by biotinylated peptide can be assembled directly onto F_1-ATPase motors to act as the propellers. If the multi-component nanowires, including gold and nickel, were selectively functionalized by the thiol group modified ssDNA and the synthetic peptide, respectively, the biotinylated F_1-ATPase motors can be attached to the biotinylated peptide on nickel segment of the nanowires. Then, the multi-component nanowires can also be used as the propellers, and one may observe the rotations of the multi-component nanowires driven by F_1 -ATPase motors. Therefore, introduction of multiple segments along the length of a nanowire can lead to a variety of multiple chemical functionalities, which can be selectively bound to cells and special biomolecules. This method provides an insight for the construction of other hybrid devices with its controlling arrangement of different biomolecule on designed nanometer scale structures.
机译:在本文中,描述了通过将纳米线与F_1-ATPase电机集成在一起来构建混合设备的方法。镍纳米线和包括金和镍的多段纳米线是通过在纳米孔模板中进行电化学沉积而制成的。通过生物素化的肽功能化的镍纳米线可以直接组装到F_1-ATPase马达上以充当推进器。如果分别由硫醇基团修饰的ssDNA和合成肽选择性地功能化包括金和镍的多组分纳米线,则生物素化的F_1-ATPase马达可以附着到纳米线镍段上的生物素化的肽上。然后,多组分纳米线也可以用作推进器,并且可以观察由F_1 -ATPase电动机驱动的多组分纳米线的旋转。因此,沿着纳米线的长度引入多个片段可以导致多种多样的化学功能,可以选择性地结合到细胞和特殊的生物分子上。该方法通过在设计的纳米尺度结构上控制不同生物分子的排列方式,为其他混合设备的构建提供了见识。

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