用于连续大小依赖细胞分选的不对称格状微通道结构

Wataru Seko, M. Yamada, M. Seki
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引用次数: 0

摘要

在这里,我们描述了一个连续的粒子/细胞分选系统,使用不对称图案,晶格状微通道阵列结构。微通道由两种类型的微通道组成,它们以直角放置在晶格图案中。由于这两种微通道的密度存在差异,导致在每个交点处的流量分布不对称。大颗粒/细胞从流线中分离出来,导致连续的依赖于大小的细胞分选。制备了PDMS微流控装置,成功实现了基于粒径的微米级颗粒分选,分选精度较高。结果表明,微通道的几何形状决定了颗粒/细胞的分离尺寸,包括微通道的密度和倾斜角度。作为细胞分选的应用,我们演示了从稀释的血液样本中分离血细胞的方法。红细胞和白细胞准确分离,白细胞回收率提高到~80%。所提出的粒子/细胞分选方案将成为一种简单而通用的工具,可用于一般医学和生化实验。
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Asymmetric lattice-shaped microchannel structures for continuous size-dependent cell sorting
Here we describe a continuous particle/cell sorting system using asymmetrically patterned, lattice-shaped microchannel array structures. The microchannel is composed of two types of microchannels, which are placed in a lattice pattern at a right angle. There is a difference between the densities of these two types of microchannels, which generates the asymmetric flow distribution at every intersection. Large particles/cells are separated from the streamline, resulting in the continuous size-dependent cell sorting. We fabricated PDMS microfluidic devices, and successfully sorted micrometer-sized particles based on size with high separation accuracy. It was clearly shown that the separation size of particles/cells was dominated by the microchannel geometries including the densities of the microchannels and the slanted angles. As an application for cell sorting, we demonstrated the blood cell separation from a diluted blood sample. Erythrocytes and leucocytes were accurately separated and the ratio of recovered leucocytes was raised to ~80%. The presented scheme of particle/cell sorting would become a simple but versatile tool that is useful for general medical and biochemical experiments.
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