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首页> 外文期刊>Stem Cells >Directed differentiation of ventral spinal progenitors and motor neurons from human embryonic stem cells by small molecules.
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Directed differentiation of ventral spinal progenitors and motor neurons from human embryonic stem cells by small molecules.

机译:通过小分子从人胚胎干细胞定向分化出腹侧脊髓祖细胞和运动神经元。

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Specification of distinct cell types from human embryonic stem cells (hESCs) is key to the potential application of these naive pluripotent cells in regenerative medicine. Determination of the nontarget differentiated populations, which is lacking in the field, is also crucial. Here, we show an efficient differentiation of motor neurons ( approximately 50%) by a simple sequential application of retinoid acid and sonic hedgehog (SHH) in a chemically defined suspension culture. We also discovered that purmorphamine, a small molecule that activates the SHH pathway, could replace SHH for the generation of motor neurons. Immunocytochemical characterization indicated that cells differentiated from hESCs were nearly completely restricted to the ventral spinal progenitor fate (NKX2.2+, Irx3+, and Pax7-), with the exception of motor neurons (HB9+) and their progenitors (Olig2+). Thus, the directed neural differentiation system with small molecules, even without further purification, will facilitate basic and translational studies using human motoneurons at a minimal cost.
机译:从人类胚胎干细胞(hESCs)区分不同细胞类型的规范是这些天然多能细胞在再生医学中潜在应用的关键。确定该领域缺乏的非目标分化人群也至关重要。在这里,我们显示了在化学成分确定的悬浮培养物中,通过简单顺序应用类维生素A酸和声波刺猬(SHH),可以有效区分运动神经元(约50%)。我们还发现,嘌呤吗啡(一种激活SHH途径的小分子)可以代替SHH生成运动神经元。免疫细胞化学特征表明,从hESCs分化的细胞几乎完全局限于腹侧脊髓祖细胞命运(NKX2.2 +,Irx3 +和Pax7-),运动神经元(HB9 +)及其祖细胞(Olig2 +)除外。因此,即使没有进一步纯化,具有小分子的定向神经分化系统也将有助于以最小的成本使用人运动神经元进行基础和翻译研究。

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