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首页> 外文期刊>ACS nano >Double-Fueled Janus Swimmers with Magnetotactic Behavior
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Double-Fueled Janus Swimmers with Magnetotactic Behavior

机译:双燃料Janus游泳运动员具有磁通行为

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摘要

Self-propelled particles attract a great deal of attention due to the auspicious range of applications for which nanobots can be used. In a biomedical context, self-propelled swimmers hold promise to autonomously navigate to a desired location in an attempt to counteract cell/tissue defects either by releasing drugs or by performing surgical tasks. The vast majority of prior reports deal with single engine assemblies, often utilizing fuel molecules which are considered to be highly cytotoxic. Herein, we introduce two engines: (1) a motor which couples enzymes (i.e., glucose oxidase) and inorganic nanoparticles (i.e., platinum nanoparticles) to gain power and (2) a peptide-fueled trypsin motor. We demonstrate that both engines can induce enhanced diffusion properties of (Janus) particles using bioavailable and completely harmless fuel molecules. By combining both engines on the same carrier, we show self-propelled particles employing two independent engines, using two different fuels. A collaborative enhancement of the swimmer's diffusion properties upon powering-up both engines simultaneously is observed. Additionally, the incorporation of magnetic nanoparticles allows for the swimmer to move in a magnetic gradient upon applying an external magnetic field, yielding in directional motion of the double fueled particles. These multiple-fueled biocompatible swimmers are a significant contribution to make them applicable in a biomedical context.
机译:由于可以使用纳米波特的吉祥范围,自推进颗粒引起了大量的关注。在生物医学背景下,自推进的游泳运动员持有承诺自主地导航到所需位置,以试图通过释放药物或通过进行手术任务来抵消细胞/组织缺陷。绝大多数先前的报告处理单一发动机组件,通常利用被认为是高度细胞毒性的燃料分子。在此,我们介绍了两个发动机:(1)将酶(即葡萄糖氧化酶)和无机纳米颗粒(即,铂纳米颗粒)耦合的电动机,以获得功率和(2)肽燃料胰蛋白酶马达。我们证明两个发动机可以使用生物可利用和完全无害的燃料分子诱导(Janus)颗粒的增强扩散性能。通过将两个发动机组合在同一载体上,我们使用两个不同的燃料显示采用两个独立发动机的自推进粒子。观察到同时发生两个发动机时游泳运动员的扩散特性的协作增强。另外,磁性纳米颗粒的掺入允许游泳运动员在施加外部磁场时在磁梯度移动,从而屈服于双燃料颗粒的方向运动。这些多燃料的生物相容性游泳者是使其适用于生物医学背景的重要贡献。

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