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Gelatin Directly Enhances Neurogenic Differentiation Potential in Bone Marrow-Derived Mesenchymal Stem Cells Without Stimulation of Neural Progenitor Cell Proliferation

机译:明胶直接增强骨髓源性间充质干细胞的神经源性分化潜能,而无需刺激神经祖细胞的增殖。

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Gelatin has been reported to induce generation of mesenchymal stem cells (MSCs) with enhanced potential of differentiation into neuronal lineage cells. However, the presence of various cell types besides MSCs in bone marrow has raised doubts about the effects of gelatin. In the following report, we determined whether gelatin can directly enhance neurogenic differentiation potential in MSCs without proliferation of neural progenitor cells (NPCs). MSCs comprised a high proportion of bone marrow-derived primary cells (BMPCs) and gelatin induced significant increases in MSC proliferation during primary culture, and the proportion of MSCs was maintained at more than 99% throughout the subculture. However, NPCs comprised a low percentage of BMPCs and a decrease in proliferation was detected despite gelatin treatment during the primary culture, and the proportion of subcultured NPCs gradually decreased. In a similar manner, MSCs exposed to gelatin during primary culture showed more enhanced neurogenic differentiation ability than those not exposed to gelatin. Together, these results demonstrate that gelatin directly enhances neurogenic differentiation in bone marrow-derived MSCs without stimulating NPC proliferation.
机译:据报道,明胶可诱导间充质干细胞(MSC)的生成,并具有分化为神经元谱系细胞的潜力。但是,骨髓中除了MSCs外还存在多种细胞类型,这使人们对明胶的作用产生了怀疑。在以下报告中,我们确定明胶是否可以直接增强MSC中神经源性分化的潜能,而不会引起神经祖细胞(NPC)的增殖。 MSC包含高比例的骨髓原代细胞(BMPC),并且明胶诱导原代培养期间MSC增殖显着增加,并且在整个继代培养中MSC的比例保持在99%以上。然而,尽管在原代培养过程中进行了明胶处理,但NPC所占的BMPC百分比很低,并且检测到增殖降低,并且亚培养NPC的比例逐渐降低。以类似的方式,在原代培养期间暴露于明胶的MSC比未暴露于明胶的MSC显示出更高的神经源性分化能力。在一起,这些结果表明明胶直接增强了骨髓间充质干细胞的神经源性分化,而不刺激NPC增殖。

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