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Towards the application of cytoskeletal motor proteins in molecular detection and diagnostic devices

机译:致力于细胞骨架运动蛋白在分子检测和诊断设备中的应用

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摘要

Over the past ten years, great advancements have been made towards using biomolecular motors for nanotechnological applications. In particular, devices using cytoskeletal motor proteins for molecular transport are maturing. First efforts towards designing such devices used motor proteins attached to micro-structured substrates for the directed transport of microtubules and actin filaments. Soon thereafter, the specific capture, transport and detection of target analytes like viruses were demonstrated. Recently, spatial guiding of the gliding filaments was added to increase the sensitivity of detection and allow parallelization. Whereas molecular motor powered devices have not yet demonstrated performance beyond the level of existing detection techniques, the potential is great: Replacing microfluidics with transport powered by molecular motors allows integration of the energy source (ATP) into the assay solution. This opens up the opportunity to design highly integrated, miniaturized, autonomous detection devices. Such devices, in turn, may allow fast and cheap on-site diagnosis of diseases and detection of environmental pathogens and toxins.
机译:在过去的十年中,在将生物分子电动机用于纳米技术应用方面取得了长足的进步。特别地,使用细胞骨架运动蛋白进行分子运输的装置正在成熟。设计此类设备的第一步是将运动蛋白附着在微结构化基质上,用于微管和肌动蛋白丝的定向运输。此后不久,就证明了对目标分析物(如病毒)的特异性捕获,运输和检测。最近,增加了对滑丝的空间引导,以增加检测的灵敏度并允许并行化。尽管分子电机驱动的设备尚未表现出超出现有检测技术水平的性能,但潜力却是巨大的:用分子电机驱动的运输工具代替微流体可以将能源(ATP)集成到测定溶液中。这为设计高度集成,小型化的自主检测设备提供了机会。继而,这样的设备可以允许快速和廉价的现场疾病诊断以及环境病原体和毒素的检测。

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