Centre for Regenerative Medicine and Department of Pharmacy and Pharmacology, University of Bath, Bath BA27AY, UK.
J Cell Sci. 2011 Jun 15;124(Pt 12):1992-2000. doi: 10.1242/jcs.081679. Epub 2011 May 24.
The use of small molecules to 'chemically direct' differentiation represents a powerful approach to promote specification of embryonic stem cells (ESCs) towards particular functional cell types for use in regenerative medicine and pharmaceutical applications. Here, we demonstrate a novel route for chemically directed differentiation of human ESCs (hESCs) into definitive endoderm (DE) exploiting a selective small-molecule inhibitor of glycogen synthase kinase 3 (GSK-3). This GSK-3 inhibitor, termed 1m, when used as the only supplement to a chemically defined feeder-free culture system, effectively promoted differentiation of ESC lines towards primitive streak (PS), mesoderm and DE. This contrasts with the role of GSK-3 in murine ESCs, where GSK-3 inhibition promotes pluripotency. Interestingly, 1m-mediated induction of differentiation involved transient NODAL expression and Nodal signalling. Prolonged treatment of hESCs with 1m resulted in the generation of a population of cells displaying hepatoblast characteristics, that is expressing α-fetoprotein and HNF4α. Furthermore, 1m-induced DE had the capacity to mature and generate hepatocyte-like cells capable of producing albumin. These findings describe, for the first time, the utility of GSK-3 inhibition, in a chemically directed approach, to a method of DE generation that is robust, potentially scalable and applicable to different hESC lines.
小分子的使用“化学定向”分化代表了一种强大的方法,可促进胚胎干细胞(ESCs)向特定功能细胞类型的特化,用于再生医学和药物应用。在这里,我们展示了一种利用糖原合酶激酶 3(GSK-3)选择性小分子抑制剂对人 ESC(hESC)进行化学定向分化的新途径。这种 GSK-3 抑制剂,称为 1m,在作为无饲养层化学定义培养系统的唯一补充时,可有效促进 ESC 系向原始条纹(PS)、中胚层和内胚层的分化。这与 GSK-3 在鼠 ESC 中的作用形成对比,在鼠 ESC 中,GSK-3 抑制促进多能性。有趣的是,1m 介导的分化诱导涉及瞬时 NODAL 表达和 Nodal 信号。长时间用 1m 处理 hESC 会产生一群显示肝母细胞特征的细胞,即表达α-胎蛋白和 HNF4α。此外,1m 诱导的 DE 具有成熟并产生能够产生白蛋白的肝细胞样细胞的能力。这些发现首次描述了 GSK-3 抑制在化学定向方法中用于 DE 生成的用途,该方法具有稳健、潜在可扩展和适用于不同 hESC 系的特点。