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Biomolecular motors at the intersection of nanotechnology and polymer science

机译:纳米技术与高分子科学的交汇处的生物分子马达

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摘要

The dynamic cytoskeletal components, biomolecular motors and their associated filaments, can be integrated in vitro with synthetic components to enable nanoscale transport systems. These "molecular shuttles" have generated significant scientific interest over the past decade, resulting in over 200 publications. This review focuses on the contributions involving the use of linear biomolecular motors, kinesin and myosin, and their associated filaments, microtubule and actin, in device applications. Exploiting the naturally occurring motion between the motors and their associated filaments requires an interdisciplinary understanding of the underlying challenges. Three basic topics that most of the experimental contributions have sought to address are: the guiding of shuttle movement, the loading and unloading of cargo onto the shuttles, and the control of motor activity. The physical properties of motors and filaments determine the engineering solutions to the design challenges. The applications, which center on the basic capability of nanoscale motion, and the roadblocks to their widespread implementation will be discussed in detail.
机译:动态细胞骨架成分,生物分子马达及其相关的细丝可以在体外与合成成分整合,以实现纳米级转运系统。在过去的十年中,这些“分子穿梭机”引起了广泛的科学兴趣,产生了200多种出版物。这篇综述的重点是在设备应用中涉及使用线性生物分子马达,驱动蛋白和肌球蛋白及其相关的细丝,微管和肌动蛋白的贡献。利用电动机及其相关细丝之间的自然运动需要对潜在挑战具有跨学科的理解。大多数实验性贡献都试图解决的三个基本主题是:航天飞机运动的引导,航天飞机上货物的装卸以及对汽车活动的控制。电动机和灯丝的物理特性决定了应对设计挑战的工程解决方案。将详细讨论以纳米尺度运动的基本能力为中心的应用程序及其广泛实施的障碍。

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