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Noggin Over-Expressing Mouse Embryonic Fibroblasts and MS5 Stromal Cells Enhance Directed Differentiation of Dopaminergic Neurons from Human Embryonic Stem Cells

机译:Noggin过度表达小鼠胚胎成纤维细胞和ms5基质细胞增强人类胚胎干细胞多巴胺能神经元的定向分化

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摘要

Directed methods for differentiating human embryonic stem cells (hESCs) into dopaminergic (DA) precursor cells using stromal cells co-culture systems are already well established. However, not all of the hESCs differentiate into DA precursors using these methods. HSF6, H1, H7, and H9 cells differentiate well into DA precursors, but CHA13 and CHA15 cells hardly differentiate. To overcome this problem, we modified the differentiation system to include a co-culturing step that exposes the cells to noggin early in the differentiation process. This was done using.-irradiated noggin-overexpressing CF1-mouse embryonic fibroblasts (MEF-noggin) and MS5 stromal cells (MS5-noggin and MS5-sonic hedgehog). After directed differentiation, RT-PCR analyses revealed that engrailed-1 (En-1), Lmx1b, and Nurr1, which are midbrain DA markers, were expressed regardless of differentiation stage. Moreover, tyrosine hydroxylase (Th) and an A9 midbrain-specific DA marker (Girk2) were expressed during differentiation, whereas levels of Oct3/4, an undifferentiated marker, decreased. Immunocytochemical analyses revealed that protein levels of the neuronal markers TH and TuJ1 increased during the final differentiation stage. These results demonstrate that early noggin exposure may play a specific role in the directed differentiation of DA cells from human embryonic stem cells.
机译:使用基质细胞共培养系统将人胚胎干细胞(hESCs)分化为多巴胺能(DA)前体细胞的直接方法已经很成熟。但是,使用这些方法,并非所有的hESC都能分化为DA前体。 HSF6,H1,H7和H9细胞可以很好地分化为DA前体,而CHA13和CHA15细胞几乎不能分化。为了克服这个问题,我们修改了分化系统,使其包括共培养步骤,该步骤可在分化过程的早期使细胞暴露于头蛋白。这是通过用过辐射的头蛋白过表达的CF1小鼠胚胎成纤维细胞(MEF-noggin)和MS5基质细胞(MS5-noggin和MS5-sonic刺猬)完成的。定向分化后,RT-PCR分析表明,无论分化阶段如何,都表达了中脑DA标记engageed-1(En-1),Lmx1b和Nurr1。此外,酪氨酸羟化酶(Th)和A9中脑特异性DA标记(Girk2)在分化过程中表达,而未分化的标记Oct3 / 4的水平降低。免疫细胞化学分析显示,神经元标记TH和TuJ1的蛋白质水平在最终分化阶段增加。这些结果表明,早期暴露于头蛋白可能在DA细胞从人胚胎干细胞的定向分化中起特定作用。

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