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One-step induction of neurons from mouse embryonic stem cells in serum-free media containing vitamin B12 and heparin.

机译:在包含维生素B12和肝素的无血清培养基中一步诱导小鼠胚胎干细胞中的神经元。

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We present a simple method for neural cell fate specification directly from mouse embryonic stem cells (ES cells) in serum-free conditions in the absence of embryoid body formation. Dissociated ES cells were cultured in serum-free media supplemented with vitamin B12 and heparin, but without any expensive cytokines. After 14 days in culture, beta-tubulin type III (TuJ1) and tyrosine hydroxylase (TH)-positive colonies were detected by immunocytochemical examinations. In addition, specific gene analyses by RT-PCR demonstrated expression of an early central nerve system, mature neuron, and midbrain dopaminergic neuron-specific molecules (i.e., nestin, middle molecular mass neurofilament protein, Nurr1, and TH, respectively). Dopamine was also detected in the culture media by reverse-phase HPLC analysis. These facts indicate that addition of vitamin B12/heparin to serum-free culture media induced neurons from ES cells, which included cells that released dopamine. Other supplements, such as putrescine, biotin, and Fe2+, could not induce neurons from ES cells by themselves, but produced synergistic effects with vitamin B12/heparin. The rate of TuJ1+/TH+ colony formation was increased threefold and the amounts of dopamine released increased 1.5-fold by the addition of a mixture of putrescine, biotin, and Fe2+ to vitamin B12/heparin culture media. Our method is a simple tool to differentiate ES cells to dopaminergic neurons for the preparation of dopamine-releasing cells for the cell transplantation therapy of Parkinson's disease. In addition, this method can facilitate the discovery of soluble factors and genes that can aid in the induction of the ES cell to its neural fate.
机译:我们提出了一种直接从小鼠胚胎干细胞(ES细胞)在无胚状体形成的无血清条件下直接确定神经细胞命运的简单方法。将解离的ES细胞在补充有维生素B12和肝素但无任何昂贵细胞因子的无血清培养基中培养。培养14天后,通过免疫细胞化学检查检测到III型微管蛋白(TuJ1)和酪氨酸羟化酶(TH)阳性菌落。此外,通过RT-PCR进行的特定基因分析显示了早期中枢神经系统,成熟神经元和中脑多巴胺能神经元特异性分子(即Nestin,中分子量神经丝蛋白,Nurr1和TH)的表达。还通过反相HPLC分析在培养基中检测到多巴胺。这些事实表明,向无血清培养基中添加维生素B12 /肝素会诱发ES细胞的神经元,其中包括释放多巴胺的细胞。其他补品,例如腐胺,生物素和Fe2 +,本身不能诱导ES细胞的神经元,但与维生素B12 /肝素产生协同作用。通过向维生素B12 /肝素培养基中添加腐胺,生物素和Fe2 +的混合物,TuJ1 + / TH +集落形成的速率增加了三倍,而多巴胺的释放量增加了1.5倍。我们的方法是一种简单的工具,可将ES细胞分化为多巴胺能神经元,从而制备用于帕金森氏病细胞移植治疗的多巴胺释放细胞。另外,该方法可以促进发现可溶的因子和基因,这有助于将ES细胞诱导至其神经命运。

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