首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >Robust microfabricated culture devices with improved control over the soluble microenvironment for the culture of embryonic stem cells
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Robust microfabricated culture devices with improved control over the soluble microenvironment for the culture of embryonic stem cells

机译:鲁棒的微制造的培养装置可更好地控制用于胚胎干细胞培养的可溶性微环境

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摘要

The commercial use of stem cells continues to be constrained by the difficulty and high cost of developing efficient and reliable production protocols. The use of microfabricated systems combines good control over the cellular microenvironment with reduced use of resources in process optimization. Our previously reported microfabricated culture device was shown to be suitable for the culture of embryonic stem cells but required improvements to robustness, ease of use, and dissolved gas control. In this report, we describe a number of improvements to the design of the microfabricated system to significantly improve the control over shear stress and soluble factors, particularly dissolved oxygen. These control improvements are investigated by finite element modeling. Design improvements also make the system easier to use and improve the robustness. The culture device could be applied to the optimization of pluripotent stem cell growth and differentiation, as well as the development of monitoring and control strategies and improved culture systems at various scales.
机译:干细胞的商业使用继续受到开发有效和可靠的生产方案的困难和高成本的限制。微型系统的使用将对蜂窝微环境的良好控制与减少过程优化中的资源使用结合在一起。我们先前报道的微细培养设备被证明适用于胚胎干细胞的培养,但是需要提高鲁棒性,易用性和溶解气体控制。在本报告中,我们描述了微加工系统设计的许多改进,以显着改善对剪切应力和可溶性因子(尤其是溶解氧)的控制。通过有限元建模研究了这些控制改进。设计上的改进也使系统更易于使用并提高了鲁棒性。该培养装置可用于优化多能干细胞的生长和分化,以及在各种规模上发展监测和控制策略以及改进培养系统。

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