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Acoustofluidic centrifuge for nanoparticle enrichment and separation

机译:纳米粒子富集和分离的声毒流体离心机

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Liquid droplets have been studied for decades and have recently experienced renewed attention as a simplified model for numerous fascinating physical phenomena occurring on size scales from the cell nucleus to stellar black holes. Here, we present an acoustofluidic centrifugation technique that leverages an entanglement of acoustic wave actuation and the spin of a fluidic droplet to enable nanoparticle enrichment and separation. By combining acoustic streaming and droplet spinning, rapid (1 min) nanoparticle concentration and size-based separation are achieved with a resolution sufficient to identify and isolate exosome subpopulations. The underlying physical mechanisms have been characterized both numerically and experimentally, and the ability to process biological samples (including DNA segments and exosome subpopulations) has been successfully demonstrated. Together, this acoustofluidic centrifuge overcomes existing limitations in the manipulation of nanoscale (100 nm) bioparticles and can be valuable for various applications in the fields of biology, chemistry, engineering, material science, and medicine.
机译:已经研究了几十年来研究了液滴,并且最近经历了作为众多迷人的物理现象的简化模型,从细胞核上发生在恒星黑洞上。这里,我们提出了一种声波致动的声波致动和流体液滴的旋转的声杂散离心技术,以使纳米颗粒富集和分离。通过组合声学流和液滴纺丝,通过足以鉴定和分离外出群的分辨率来实现快速(& 1分钟)纳米颗粒浓度和尺寸的分离。底层物理机制已经在数值和实验上表现,并且已经成功地证明了处理生物样品(包括DNA段和外出群)的能力。在一起,这种声毒流体离心机克服了纳米级(& 100nm)生物粒的操纵中存在的局限性,并且对于生物学,化学,工程,材料科学和医学领域的各种应用可能是有价值的。

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