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首页> 外文期刊>Stem cells and development >Mesenchymal stromal cells expanded in human allogenic cord blood serum display higher self-renewal and enhanced osteogenic potential.
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Mesenchymal stromal cells expanded in human allogenic cord blood serum display higher self-renewal and enhanced osteogenic potential.

机译:在人同种异体脐带血血清中扩增的间充质基质细胞显示出更高的自我更新能力和增强的成骨潜能。

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Recent clinical trials using ex vivo expanded mesenchymal stromal cells (MSCs) have raised interest in the safety and function of cultured MSCs. Here, to assess the feasibility of using allogenic human umbilical cord blood serum (CBS) for humanized clinical-grade expansion of MSCs, we characterized MSCs expanded in CBS and compared them to MSCs expanded in fetal bovine serum (FBS). MSCs in CBS exhibited a higher preservation of colony-forming cells and an accelerated expansion over serial passages with increased Oct-4 expression compared to those cultured in FBS. Notably, CBS-expanded MSCs exhibited a unique differentiation potential characterized by a shift from adipogenic to osteogenic differentiation. The differentiation shift was associated with enhanced basal and Runx2-mediated transcriptional activation of the osteocalcin promoter, as well as increased accumulation of beta-catenin and the yes-associated protein (YAP) which was independent of changes in TAZ (transcriptional co-activator with PDZ-binding motif) levels. Interestingly, the phenotypes were reversed when the FBS and CBS media were switched, suggesting the unique stimulatory effects of CBS rather than the selection of heterogeneous MSC subpopulations. The distinct regulatory effects of CBS on MSC included selective activation of platelet-derived growth factor and epidermal growth factor signals in MSCs, but not in FBS. Taken together, these results provide insight into the dynamic regulation of MSCs during ex vivo culture and show that the ex vivo culture of MSCs in allogenic human CBS provides a novel tool for the accelerated expansion of a population of MSCs that exhibit a higher self-renewal and an enhanced osteogenic potential.
机译:使用离体扩增的间充质基质细胞(MSC)的最新临床试验引起了人们对培养的MSC的安全性和功能的兴趣。在这里,为了评估使用同种异体人脐带血血清(CBS)进行人源化临床级MSC的可行性,我们表征了在CBS中扩增的MSC,并将它们与在胎牛血清(FBS)中扩增的MSC进行了比较。与在FBS中培养的MSC相比,CBS中的MSC表现出更高的集落形成细胞保存性,并在连续传代过程中加速扩增,Oct-4表达增加。值得注意的是,CBS扩增的MSC表现出独特的分化潜力,其特征是从成脂分化向成骨分化转变。分化转移与骨钙素启动子的增强的基础和Runx2介导的转录激活以及β-catenin和yes-associated蛋白(YAP)的积累增加有关,而后者与TAZ的变化无关(转录共激活因子与PDZ结合基序)水平。有趣的是,当切换FBS和CBS培养基时,表型发生了逆转,这表明CBS具有独特的刺激作用,而不是选择了异质MSC亚群。 CBS对MSC的明显调节作用包括在MSC中选择性激活血小板衍生的生长因子和表皮生长因子信号,而在FBS中则不然。综上所述,这些结果提供了对离体培养期间MSC动态调节的见解,并表明同种异体人CBS中MSC的离体培养为加速具有更高自我更新能力的MSC群体的扩增提供了新的工具。和增强的成骨潜力。

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