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Long-term self-renewal and directed differentiation of human embryonic stem cells in chemically defined conditions

机译:化学定义条件下人类胚胎干细胞的长期自我更新和定向分化

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摘要

Chemically defined medium (CDM) conditions for controlling human embryonic stem cell (hESC) fate will not only facilitate the practical application of hESCs in research and therapy but also provide an excellent system for studying the molecular mechanisms underlying self-renewal and differentiation, without the multiple unknown and variable factors associated with feeder cells and serum. Here we report a simple CDM that supports efficient self-renewal of hESCs grown on a Matrigel-coated surface over multiple passages. Expanded hESCs under such conditions maintain expression of multiple hESC-specific markers, retain the characteristic hESC morphology, possess a normal karyotype in vitro, as well as develop teratomas in vivo. Additionally, several growth factors were found to selectively induce monolayer differentiation of hESC cultures toward neural, definitive endoderm/pancreatic and early cardiac muscle cells, respectively, in our CDM conditions. Therefore, this CDM condition provides a basic platform for further characterization of hESC self-renewal and directed differentiation, as well as the development of novel therapies.
机译:化学定义的培养基(CDM)条件可控制人类胚胎干细胞(hESC)的命运,不仅有利于hESC在研究和治疗中的实际应用,而且还为研究自我更新和分化的分子机制提供了极好的系统,而无需与饲养细胞和血清相关的多个未知因素和可变因素。在这里,我们报告了一个简单的CDM,该CDM支持通过多次传代在基质胶涂层表面上生长的hESC进行有效的自我更新。在这种条件下扩增的hESC可以维持多种hESC特异性标记的表达,保持hESC的特征形态,在体外具有正常的核型,并且在体内发育畸胎瘤。另外,在我们的CDM条件下,发现了几种生长因子分别选择性诱导hESC培养物向神经,定形内胚层/胰腺和早期心肌细胞的单层分化。因此,这种CDM条件为进一步表征hESC自我更新和定向分化以及开发新疗法提供了基础平台。

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