A new method for continuous sorting of cells/particles using lattice-shaped dual-depth microchannels

Takuma Yanai, M. Yamada, Wataru Seko, M. Seki
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引用次数: 3

Abstract

In the last decade, various types of microfluidic cell/particle sorting devices have been developed, but most of these devices have limitations in terms of the relatively low throughput. In this paper, we describe a new scheme for continuous particle sorting, using high-density, lattice-shaped, and dual-depth microchannel networks. The lattice pattern composed of perpendicularly crossing deeper “main channels” and shallower “separation channels”, and the main channels are slanted against the overall flow direction. When particle suspension is continuously introduced, smaller particles reach the ceiling of the main channel, whereas larger particles do not. Consequently, larger particles enter the separation channels more frequently, resulting in the continuous particle separation. In the experiment, we successfully sorted microparticles based on size. In addition, the effects of the microchannel geometries and the vertical position of particles on the sorting efficiency were investigated. As application to biological samples, we demonstrated cell sorting using cultured mammalian cells. The presented mechanism of size-based particle sorting would be applicable to various research and industrial fields.
一种利用格子状双深度微通道连续分选细胞/颗粒的新方法
近十年来,各种类型的微流控细胞/颗粒分选装置被开发出来,但这些装置大多存在相对较低通量的局限性。在本文中,我们描述了一个新的方案,连续粒子分选,使用高密度,点阵形,双深度微通道网络。由较深的“主河道”和较浅的“分离河道”垂直交叉而成的点阵格局,主河道与整体流动方向相反倾斜。当颗粒悬浮液不断引入时,较小的颗粒到达主通道的顶部,而较大的颗粒则不能到达。因此,较大的颗粒更频繁地进入分离通道,导致颗粒连续分离。在实验中,我们成功地根据粒径对微粒进行了分选。此外,还研究了微通道几何形状和颗粒垂直位置对分选效率的影响。作为生物样品的应用,我们演示了使用培养的哺乳动物细胞进行细胞分选。本文提出的基于粒度的颗粒分选机制将适用于各种研究和工业领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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