Mechanical and Aerospace Engineering Department, University of California, Los Angeles, CA, USA.
Lab Chip. 2010 Jul 7;10(13):1678-82. doi: 10.1039/c000163e. Epub 2010 Apr 7.
This paper presents a microfluidic device for sorting embryoid bodies (EBs) with large dynamic size ranges up to 300 microm. The proposed separation scheme utilizes appropriately spaced pillars within a microchannel to alter the fluid flow pathway, thus allowing particles of defined sizes to be diverted towards specific flow paths. We test the device functionality by separating polystyrene beads 90, 175 and 275 microm in diameter, demonstrating separation efficiencies approaching 100%. We then demonstrate for the first time on-chip separation of mouse EBs, which were separated into three size groups. The ability to extract specific size ranges of EBs will greatly facilitate their subsequent differentiation studies.
本文提出了一种用于分离具有高达 300 微米大动态尺寸范围的胚状体 (EBs) 的微流控装置。所提出的分离方案利用微通道内适当间隔的柱子来改变流体流动路径,从而允许特定尺寸的颗粒被引导到特定的流动路径中。我们通过分离直径为 90、175 和 275 微米的聚苯乙烯珠来测试器件的功能,证明分离效率接近 100%。然后,我们首次在芯片上演示了对小鼠 EBs 的分离,将其分成三个大小组。能够提取特定大小范围的 EBs 将极大地促进它们随后的分化研究。