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首页> 外文期刊>Stem cells international >Bidirectional Transcriptome Analysis of Rat Bone Marrow-Derived Mesenchymal Stem Cells and Activated Microglia in an In Vitro Coculture System
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Bidirectional Transcriptome Analysis of Rat Bone Marrow-Derived Mesenchymal Stem Cells and Activated Microglia in an In Vitro Coculture System

机译:体外共培养系统中大鼠骨髓间充质干细胞和活化的小胶质细胞的双向转录组分析

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Microglia contribute to the regulation of neuroinflammation and play an important role in the pathogenesis of brain diseases. Thus, regulation of neuroinflammation triggered by activated microglia in brain diseases has become a promising curative strategy. Bone marrow-derived mesenchymal stem cells (BM-MSCs) have been shown to have therapeutic effects, resulting from the regulation of inflammatory conditions in the brain. In this study, we investigated differential gene expression in rat BM-MSCs (rBM-MSCs) that were cocultured with lipopolysaccharide- (LPS-) stimulated primary rat microglia using microarray analysis and evaluated the functional relationships through Ingenuity Pathway Analysis (IPA). We also evaluated the effects of rBM-MSC on LPS-stimulated microglia using a reverse coculture system and the same conditions of the transcriptomic analysis. In the transcriptome of rBM-MSCs, 67 genes were differentially expressed, which were highly related with migration of cells, compared to control. The prediction of the gene network using IPA and experimental validation showed that LPS-stimulated primary rat microglia increase the migration of rBM-MSCs. Reversely, expression patterns of the transcriptome in LPS-stimulated primary rat microglia were changed when cocultured with rBM-MSCs. Our results showed that 65 genes were changed, which were highly related with inflammatory response, compared to absence of rBM-MSCs. In the same way with the aforementioned, the prediction of the gene network and experimental validation showed that rBM-MSCs decrease the inflammatory response of LPS-stimulated primary rat microglia. Our data indicate that LPS-stimulated microglia increase the migration of rBM-MSCs and that rBM-MSCs reduce the inflammatory activity in LPS-stimulated microglia. The results of this study show complex mechanisms underlying the interaction between rBM-MSCs and activated microglia and may be helpful for the development of stem cell-based strategies for brain diseases.
机译:小胶质细胞有助于调节神经炎症,并在脑部疾病的发病机理中起重要作用。因此,在脑部疾病中由激活的小胶质细胞触发的神经炎症的调节已成为一种有希望的治疗策略。骨髓来源的间充质干细胞(BM-MSC)已被证明具有治疗作用,这是由于调节大脑的炎症状况所致。在这项研究中,我们调查了大鼠BM-MSC(rBM-MSC)的差异基因表达,该基因与脂多糖(LPS-)刺激的原代大鼠小胶质细胞使用微阵列分析共培养,并通过机能途径分析(IPA)评估了功能关系。我们还使用反向共培养系统和转录组学分析的相同条件评估了rBM-MSC对LPS刺激的小胶质细胞的作用。在rBM-MSC的转录组中,与对照相比,差异表达了67个基因,这些基因与细胞迁移高度相关。使用IPA对基因网络的预测和实验验证表明,LPS刺激的原代大鼠小胶质细胞增加了rBM-MSC的迁移。相反,与rBM-MSC共培养时,LPS刺激的原代大鼠小胶质细胞中转录组的表达方式发生了变化。我们的结果表明,与不存在rBM-MSC相比,改变了65个基因,与炎症反应高度相关。以与前述相同的方式,基因网络的预测和实验验证表明,rBM-MSC降低了LPS刺激的原代大鼠小胶质细胞的炎症反应。我们的数据表明LPS刺激的小胶质细胞增加了rBM-MSC的迁移,而rBM-MSC减少了LPS刺激的小胶质细胞的炎症活动。这项研究的结果表明,rBM-MSC与活化的小胶质细胞之间相互作用的复杂机制可能有助于开发基于干细胞的脑疾病策略。

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