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Incorporation of bioactive materials into integrated systems

机译:将生物活性材料整合到集成系统中

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摘要

Sandia is exploring two classes of integrated systems involving bioactive materials: 1) microfluidic systems that can be used to manipulate biomolecules for applications ranging from counter-terrorism to drug delivery systems, and 2) fluidic systems in which active biomolecules such as motor proteins provide specific functions such as active transport. An example of the first class involves the development of a reversible protein trap based on the integration of the thermally-switchable polymer poly(N-isopropylacrylamide)(PNIPAM) into a micro-hotplate device. To exemplify the second class, we describe the technical challenges associated with integrating microtubules and motor proteins into microfluidic systems for: 1) the active transport of nanoparticle cargo, or 2) templated growth of high-aspect ratio nanowires. These examples illustrate the functions of bioactive materials, synthesis and fabrication issues, mechanisms for switching surface chemistry and active transport, and new techniques such as the interfacial force microscope (IFM) that can be used to characterize bioactive surfaces.
机译:桑迪亚(Sandia)正在探索两类涉及生物活性材料的集成系统:1)可用于处理生物分子的微流体系统,其应用范围从反恐到药物输送系统,以及2)流体系统,其中诸如运动蛋白之类的活性生物分子可提供特异性主动运输等功能。第一类的例子涉及基于可热交换聚合物聚(N-异丙基丙烯酰胺)(PNIPAM)集成到微热板设备中的可逆蛋白质陷阱的开发。为了举例说明第二类,我们描述了与将微管和运动蛋白整合到微流体系统中相关的技术挑战:1)纳米颗粒货物的主动运输,或2)高长宽比纳米线的模板化生长。这些示例说明了生物活性材料的功能,合成和制造问题,转换表面化学和活性传输的机制,以及可以用来表征生物活性表面的新技术,例如界面力显微镜(IFM)。

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