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Hybrid capillary-inserted microfluidic device for sheathless particle focusing and separation in viscoelastic flow

机译:混合插入毛细管的微流体装置用于粘弹性流中的无鞘粒子聚焦和分离

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摘要

A novel microfluidic device which consists of two stages for particle focusing and separation using a viscoelastic fluid has been developed. A circular capillary tube was used for three-dimensional particle pre-alignment before the separation process, which was inserted in a polydimethylsiloxane microchannel. Particles with diameters of 5 and 10 μm were focused at the centerline in the capillary tube, and the location of particles was initialized at the first bifurcation. Then, 5 and 10 μm particles were successfully separated in the expansion region based on size-dependent lateral migration, with ∼99% separation efficiency. The proposed device was further applied to separation of MCF-7 cells from leukocytes. Based on the cell size distribution, an approximate size cutoff for separation was determined to be 16 μm. At 200 μl/min, 94% of MCF-7 cells were separated with the purity of ∼97%. According to the trypan blue exclusion assay, high viability (∼90%) could be achieved for the separated MCF-7 cells. The use of a commercially available capillary tube enables the device to be highly versatile in dealing with particles in a wide size range by using capillary tubes with different inner diameters.
机译:已经开发了一种新颖的微流体装置,其包括两个阶段,用于使用粘弹性流体进行颗粒聚焦和分离。在分离过程之前,将圆形毛细管用于三维颗粒预对准,然后将其插入聚二甲基硅氧烷微通道中。将直径为5和10μm的粒子聚焦在毛细管的中心线上,并在第一次分叉处初始化粒子的位置。然后,基于尺寸依赖性的横向迁移,在膨胀区域成功地分离出了5μm和10μm的颗粒,分离效率约为99%。所提出的装置进一步应用于从白细胞分离MCF-7细胞。根据细胞大小分布,分离的近似大小截止值被确定为16μm。以200μl/ min的速度分离出94%的MCF-7细胞,纯度约为97%。根据锥虫蓝排除试验,分离出的MCF-7细胞可以达到较高的生存力(约90%)。通过使用具有不同内径的毛细管,使用市售的毛细管可使该设备在处理宽尺寸范围内的颗粒时具有高度的通用性。

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