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基于石墨烯-聚合物杂化纳米结构的生物能源存储装置,用于实时控制生物运动活性。

Graphene-polymer hybrid nanostructure-based bioenergy storage device for real-time control of biological motor activity.

机构信息

Department of Physics and Astronomy, Seoul National University, Seoul, 151-742 Korea.

出版信息

ACS Nano. 2011 Nov 22;5(11):8656-64. doi: 10.1021/nn202421n. Epub 2011 Oct 28.

Abstract

We report a graphene-polymer hybrid nanostructure-based bioenergy storage device to turn on and off biomotor activity in real-time. In this strategy, graphene was functionalized with amine groups and utilized as a transparent electrode supporting the motility of biomotors. Conducting polymer patterns doped with adenosine triphosphate (ATP) were fabricated on the graphene and utilized for the fast release of ATP by electrical stimuli through the graphene. The controlled release of biomotor fuel, ATP, allowed us to control the actin filament transportation propelled by the biomotor in real-time. This strategy should enable the integrated nanodevices for the real-time control of biological motors, which can be a significant stepping stone toward hybrid nanomechanical systems based on motor proteins.

摘要

我们报告了一种基于石墨烯-聚合物杂化纳米结构的生物能存储设备,可实时开启和关闭生物马达活动。在该策略中,通过将胺基官能化石墨烯用作透明电极来支撑生物马达的运动。在石墨烯上制造了掺杂有三磷酸腺苷(ATP)的导电聚合物图案,并通过石墨烯通过电刺激快速释放 ATP。通过控制生物马达燃料 ATP 的释放,我们能够实时控制由生物马达推动的肌动蛋白丝运输。该策略应该能够实现对生物马达进行实时控制的集成纳米器件,这是迈向基于马达蛋白的混合纳米机械系统的重要一步。

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