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首页> 外文期刊>Science Advances >Functional droplets that recognize, collect, and transport debris on surfaces
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Functional droplets that recognize, collect, and transport debris on surfaces

机译:识别,收集和运输表面碎屑的功能性液滴

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We describe polymer-stabilized droplets capable of recognizing and picking up nanoparticles from substrates in experiments designed for transporting hydroxyapatite nanoparticles that represent the principal elemental composition of bone. Our experiments, which are inspired by cells that carry out materials transport in vivo, used oil-in-water droplets that traverse a nanoparticle-coated substrate driven by an imposed fluid flow. Nanoparticle capture is realized by interaction of the particles with chemical functionality embedded within the polymeric stabilizing layer on the droplets. Nanoparticle uptake efficiency is controlled by solution conditions and the extent of functionality available for contact with the nanoparticles. Moreover, in an elementary demonstration of nanoparticle transportation, particles retrieved initially from the substrate were later deposited “downstream,” illustrating a pickup and drop-off technique that represents a first step toward mimicking point-to-point transportation events conducted in living systems.
机译:我们描述了在设计用于运输代表骨骼主要元素组成的羟基磷灰石纳米颗粒的实验中,聚合物能够识别并从基质中拾取纳米颗粒的聚合物稳定液滴。我们的实验受到在体内进行物质运输的细胞的启发,使用的水包油小滴穿过施加的流体流驱动的纳米颗粒涂层基质。纳米粒子的捕获是通过粒子与嵌入液滴上的聚合物稳定层内的化学功能相互作用而实现的。纳米颗粒的吸收效率由溶液条件和可用于与纳米颗粒接触的官能度的程度控制。此外,在纳米颗粒运输的基本演示中,最初从基材中回收的颗粒随后被“下游”沉积,这说明了拾取和落下技术,这是迈向模仿活体系统中点对点运输事件的第一步。

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