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Forced expression of Emphasis Type='Italic'>CD200/Emphasis> improves the differentiation capability and immunoregulatory functions of mesenchymal stromal cells

机译:强制表达&强调=“斜体”> CD200& /重点>改善间充质基质细胞的分化能力和免疫调节功能

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Objective In order to identify specific mesenchymal stromal cell (MSC) populations with enhanced therapeutic efficacy, we evaluated the functional changes associated with the stable expression of CD200, which is associated with immune regulatory function and osteogenic differentiation, in human bone marrow-derived MSCs (CD200/MSCs). Results We detected significantly greater osteogenesis and chondrogenesis in CD200/MSCs than in mock-transfected MSCs. In addition, the immune regulatory function of MSCs in mixed lymphocyte reactions was enhanced by CD200 gene transfection. In CD200/MSCs, the secretion of inflammatory cytokines, i.e., IL-6 and IL-8, was reduced, and levels of the anti-inflammatory factors IL-10, FOXP3, and indoleamine 2,3-dioxygenase 1 were elevated. Finally, CD200 transfection increased the stemness of MSCs, as evidenced by greater colony numbers in colony-forming unit fibroblast assays and analyses of NANOG and OCT-4 expression. Conclusions These results suggest that CD200/MSCs have therapeutic applications, and further in-depth research should focus on the development of a clinically applicable cell-based therapeutic strategy.
机译:目的为了鉴定具有增强的治疗效果的特异性间充质基质细胞(MSC)群体,我们评估了与CD200的稳定表达相关的功能变化,这与人骨骨髓衍生的MSC中的免疫调节功能和骨质发生分化相关。 CD200 / MSCs)。结果我们在CD200 / MSC中检测到显着更大的成骨和软骨发生,而不是模拟转染的MSCs。此外,通过CD200基因转染增强了MSCs在混合淋巴细胞反应中的免疫调节功能。在CD200 / MSCs中,降低了炎性细胞因子,即IL-6和IL-8的分泌,升高了抗炎因子IL-10,FoxP3和吲哚胺2,3-二氧化根酶1的水平。最后,CD200转染增加了MSCs的茎,如菌落形成单位成纤维细胞测定中的更大殖民数量所证明的纳米群和纳米4表达分析。结论这些结果表明CD200 / MSCs具有治疗应用,进一步深入研究应侧重于开发临床应用基于细胞的治疗策略。

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