首页> 外文期刊>Journal of tissue engineering and regenerative medicine >The secretome of bone marrow mesenchymal stem cells-conditioned media varies with time and drives a distinct effect on mature neurons and glial cells (primary cultures).
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The secretome of bone marrow mesenchymal stem cells-conditioned media varies with time and drives a distinct effect on mature neurons and glial cells (primary cultures).

机译:骨髓间充质干细胞条件调节培养基的沉淀随时间而变化,并且对成熟神经元和胶质细胞(原代培养物)驱动了不同的影响。

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Transplantation of bone marrow mesenchymal stem cells (BM-MSCs) has been shown to ameliorate the injured central nervous system (CNS). Although these effects were initially attributed to the putative differentiation of MSCs towards the neural lineage, it is now known that most of them are mediated by the secretome. Up to now most in vitro reports have dealt with the effects of the secretome on neural stem cells and their differentiation. Consequently, there is a lack of information regarding the role of the secretome on the viability and survival of pre-existent matured differentiated cell populations. Moreover, it is also not known how the time points of conditioned media (CM) collection affect such parameters. In the present study, primary cultures of hippocampal neurons and glial cells were incubated with CM obtained from MSCs. To determine how the temporal profiles of CM collection impact on post-natal neurons and glial cells, we collected MSCs CM at 24, 48, 72 and 96 h of conditioning. MTS test revealed that for the hippocampal cultures the incubation with CM increased cell viability for all time points, with significant increases in the percentage of neurons in culture incubated with CM 24 h. For glial cells only the later time point of CM collection (96 h) increased cell viability. Fluorescence microscopy observations also revealed that CM 48 h and 72 h increased astrocytes percentages, while CM 24 h decreased microglial cell and oligodendrocytes values. These results revealed that post-natal neuronal and glial cells respond differently to MSCs CM; moreover, there are specific temporal variations in the composition of the CM of MSCs collected at different time points that trigger different effects on mature neurons and the distinct glial cell populations (astrocytes, oligodendrocytes and microglial cells).
机译:已显示骨髓间充质干细胞(BM-MSCs)的移植改善受伤的中枢神经系统(CNS)。尽管这些效果最初归因于MSCs对神经谱系的推定分化,但现在已知大多数是由秘密介导的。到目前为止,大多数体外报告已经处理了克制沉淀对神经干细胞的影响及其分化。因此,缺乏关于沉淀作用对存在于存在的成熟分化细胞群的活力和存活的信息。此外,还不知道条件介质(CM)收集的时间点如何影响这些参数。在本研究中,将海马神经元和胶质细胞的原发性培养物与从MSC获得的CM温育。为了确定CM收集对产后神经元和胶质细胞的影响的时间谱如何,我们在24,48,72和96小时内收集MSCs Cm。 MTS测试显示,对于海马培养,对于所有时间点,与CM增加的细胞活力增加,培养培养中的神经元百分比具有显着增加。对于胶质细胞,仅CM集合(96小时)的稍后时间点增加了细胞活力。荧光显微镜观察也揭示了CM 48 H和72h增加的星形胶质细胞百分比,而CM 24小时降低的小胶质细胞和少突胶质细胞值。这些结果表明,产后神经元和神经胶质细胞对MSC厘米不同的反应;此外,在不同时间点收集的MSCs的组合物的特定时间变化在不同的时间点触发成熟神经元和不同的胶质细胞群(星形细胞,少胶质细胞和小胶质细胞)的不同时间点。

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