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Neuronal transcription program induced in hippocampal cells cocultured with bone marrow derived mesenchymal cells

机译:用骨髓衍生的间充质细胞与骨髓衍生的分析细胞中诱导的神经元转录程序

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摘要

Several approaches have been applied to harvest bone marrow stromal cells (BMSCs) and to differentiate into neurons or neuronal-like cells through chemical stimulation or exposing to growth factors. To date, the data regarding induction or regulation of neuronal transcription program in neuronal-like cells derived from BMSCs is yet unknown. The objective of this study is to co-culture BMSCs with neonatal hippocampal cells and generate neuronal-like cells by direct cell-to-cell contact system without using neuronal growth factors or neurobasal medium. Here, we proposed a role for NeuroD1 and Neurogenin -2 bHLH family of transcription factors implicated in onset of neurogenesis and differentiation of cells into neurons in promoting the interaction of hippocampal cells with BMSCs and their differentiation in to neurons. The proliferation of the cells was assessed with MTT assay and the role of neuronal induction and differentiation transcription regulators NeuroD1 and Neurogenin-2 in cocultured cells was determined through immunocytochemical analysis. We observed activation and expression of the neurogenic transcription factors NeuroD1 and NGN-2 associated with neuronal activation program to initiate the onset of neurogenesis in cocultured cells. Further, our results have shown a significant expression of neuronal progenitor and immature neuronal marker i.e., nestin and tubulin respectively in cocultured cells endorsing the initiation of neuronal activation.
机译:已经应用了几种方法来收获骨髓基质细胞(BMSCs),并通过化学刺激或暴露于生长因子分化为神经元或神经元样细胞。迄今为止,关于衍生自BMSCs的神经元样细胞中神经元转录程序的诱导或调节的数据尚不赘言。本研究的目的是将BMSC与新生儿海马细胞共同培养,并通过直接细胞 - 细胞接触系统产生神经元样细胞,而不使用神经元生长因子或神经缺失培养基。在这里,我们提出了神经元1和神经植物中的作用,其转录因子族意义涉及神经发生和细胞分化到神经元中,以促进海马细胞与BMSC的相互作用及其分化在神经元中。通过免疫细胞化学分析测定通过MTT测定评估细胞的增殖,并且神经元诱导和分化转录调节剂Neurod1和神经原因-2的作用是通过免疫细胞化学分析确定的。我们观察了与神经元激活程序相关的神经源转录因子Neurod1和NGN-2的激活和表达,以引发可共同化细胞中神经发生的发作。此外,我们的结果表明了神经元祖母和未成熟神经元标记物的显着表达,即分别在具有神经元激活的引发的可共培养细胞中的巢蛋白和微管蛋白。

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