光活性纳米颗粒驱动的生化和细胞分析全光微流控电路

G. Liu, Jaeyoun Kim, Luke P. Lee
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引用次数: 1

摘要

我们发明了一种新型的全光逻辑微流控系统,该系统仅由可见光或近红外光自动控制,功率低至亚毫瓦。我们的系统不需要电源,没有外部或MEMS泵,没有管道或连接器,没有微流体阀,也不需要表面图案。我们的装置仅由单层PDMS微流控芯片和新发明的光活性纳米颗粒组成。我们的光活性纳米颗粒能够将光能转化为流体中的流体动力能。纳米颗粒本身具有生物相容性,可以被生物功能化。通过这些光活性纳米粒子,我们仅使用光来驱动、引导、切换和混合光流逻辑电路中的液体,以期望的速度和方向。我们展示了光流体控制生物分子和细胞的运输。
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All-optical microfluidic circuit for biochemical and cellular analysis powered by photoactive nanoparticles
We have invented a novel all-optical-logic microfluidic system which is automatically controlled only by visible or near infrared light with down to submilliwatt power. No electric power supply, no external or MEMS pump, no tubings or connectors, no microfluidic valves, nor surface patterning are required in our system. Our device only consists of a single-layer PDMS microfluidic chip and newly invented photoactive nanoparticles. Our photoactive nanoparticles are capable of converting optical energy to hydrodynamic energy in fluids. The nanoparticle themselves are biocompatible and can be biofunctionalized. Via these photoactive nanoparticles, we used only light to drive, guide, switch and mix liquid in optofluidic logic circuits with desired speeds and directions. We demonstrated the optofluidic controls in transportation of biomolecules and cells.
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