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A Multilayer Polymer-Film Inertial Microfluidic Device for High-Throughput Cell Concentration

机译:用于高通量细胞浓度的多层聚合物膜惯性微流体装置

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We report here a novel multilayer polymer-film inertial microfluidic (MPIM) device with complex three-dimensional (3D) fluidic paths for realizing the massive parallelization of multiplexing functional channels. The proposed MPIM device is fabricated by simply stacking different polymer-film channel layers and adhesive layers. As a prototype demonstration, an MPIM device with multiplexing radially arrayed serpentine channels has been designed and fabricated. Seven functional layers are stacked in a vertical direction to create the 3D fluidic paths for realizing the functions of inertial cell concentration, fluid convergence, and flow resistance adjustment in an all-in-one device with a thickness of only 1.4 mm. Then, the physics and the concentration performances of our MPIM device are explored. The results indicate that our MPIM device is capable of concentrating various particles at a throughput up to 8 mL/min. Finally, we successfully apply our MPIM device to the high-throughput concentration of microalgae and trace tumor cells from large background fluids. We envision the wide application of our MPIM device as a low-cost "on-chip centrifuge" for the concentration of various bioparticles.
机译:我们在此报告一种新型多层聚合物 - 膜惯性微流体(MPIM)装置,其具有复杂的三维(3D)流体路径,用于实现多路复用功能通道的大规模并行化。通过简单地堆叠不同的聚合物膜通道层和粘合剂层,制造所提出的MPIM器件。作为原型演示,已经设计和制造了具有多路复用径向排列的蛇形通道的MPIM器件。七个功能层沿垂直方向堆叠,以产生用于实现惯性电池浓度,流体收敛性和流动阻力的功能的3D流体路径在一体化装置中,厚度仅为1.4mm。然后,探索了MPIM器件的物理和浓度性能。结果表明,我们的MPIM器件能够以高达8ml / min的产量将各种颗粒浓缩。最后,我们成功地将MPIM装置应用于来自大背景流体的微藻和痕量肿瘤细胞的高通量浓度。我们设想我们的MPIM器件广泛应用于低成本“片上离心机”,用于各种生物颗粒的浓度。

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