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首页> 外文期刊>Cell transplantation >Neurotrophism of bone marrow stromal cells to embryonic stem cells: noncontact induction and transplantation to a mouse ischemic stroke model.
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Neurotrophism of bone marrow stromal cells to embryonic stem cells: noncontact induction and transplantation to a mouse ischemic stroke model.

机译:骨髓基质细胞对胚胎干细胞的神经营养:非接触诱导和移植至小鼠缺血性中风模型。

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Embryonic stem (ES) cell-derived cell products may serve as a source of cells for regenerative medicine. Currently available technologies for the induction of ES cells into neural lineage cells require extended culturing in vitro and complex procedural manipulations, with variable yields of heterogeneous cells, which have hindered the prospective use of cell derivatives for treatment of ischemic stroke. We established a simple and efficient method to derive mouse ES cells into neural lineage cells using an 8-day coculture with the bone marrow stromal cells MS5, followed by a 6-day propagation culture and a 4-day selection culture. The protocol generated a relatively high yield of neural lineage cells without any mesodermal and endodermal lineage commitment. In in vivo study, these derived cells could improve the cognitive function of ischemic stroke mice. Three weeks after transplantation, migration of implanted cells to lesioned areas was noted. It was also evident of a normalization of pyramidal neuron density and morphology in hippocampal CA1 region. One (1/17) episode of teratoma development was noted. Data suggested that MS5 cells may exert a neurotrophic effect to enhance neural differentiation of ES cells and MS5-induced ES cell-derived cells appeared to be applicable to cell therapy for ischemic stroke.
机译:胚胎干(ES)细胞来源的细胞产物可以用作再生医学的细胞来源。目前可用的将ES细胞诱导为神经谱系细胞的技术需要在体外​​和复杂的程序操作中进行扩展培养,且异质细胞的产量可变,这阻碍了细胞衍生物在缺血性卒中治疗中的预期应用。我们建立了一种简单有效的方法,通过与骨髓基质细胞MS5共培养8天,然后进行6天的繁殖培养和4天的选择培养,将小鼠ES细胞衍生为神经系细胞。该协议在没有任何中胚层和内胚层谱系承诺的情况下产生了相对较高的神经谱系细胞产量。在体内研究中,这些衍生的细胞可以改善缺血性中风小鼠的认知功能。移植后三周,注意到植入的细胞迁移到病变区域。也很明显海马CA1区锥体神经元密度和形态正常化。注意到一(1/17)畸胎瘤发育。数据表明,MS5细胞可能发挥神经营养作用,以增强ES细胞的神经分化,而MS5诱导的ES细胞来源的细胞似乎适用于缺血性卒中的细胞治疗。

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