Department of Bionano Engineering, Hanyang University, Ansan, Korea.
Electrophoresis. 2011 Nov;32(22):3133-7. doi: 10.1002/elps.201100161. Epub 2011 Aug 23.
We developed an integrated microfluidic culture device to regulate embryonic stem (ES) cell fate. The integrated microfluidic culture device consists of an air control channel and a fluidic channel with 4×4 micropillar arrays. We hypothesized that the microscale posts within the micropillar arrays would enable the control of uniform cell docking and shear stress profiles. We demonstrated that ES cells cultured for 6 days in the integrated microfluidic culture device differentiated into endothelial cells. Therefore, our integrated microfluidic culture device is a potentially powerful tool for directing ES cell fate.
我们开发了一种集成微流控培养装置来调控胚胎干细胞(ES 细胞)的命运。该集成微流控培养装置由空气控制通道和带有 4×4 微柱阵列的流道组成。我们假设微柱阵列内的微尺度柱可以控制细胞均匀的对接和切应力分布。我们证明了在集成微流控培养装置中培养 6 天的 ES 细胞分化为内皮细胞。因此,我们的集成微流控培养装置是一种有潜力的、用于指导 ES 细胞命运的强大工具。