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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Limited Mitochondrial Activity Coupled With Strong Expression of CD34, CD90 and EPCR Determines the Functional Fitness of ex vivo Expanded Human Hematopoietic Stem Cells
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Limited Mitochondrial Activity Coupled With Strong Expression of CD34, CD90 and EPCR Determines the Functional Fitness of ex vivo Expanded Human Hematopoietic Stem Cells

机译:有限的线粒体活性与CD34,CD90和EPCR的强烈表达相结合,决定了离体膨胀的人造血干细胞的功能性适应性

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Ex vivo expansion strategies of human hematopoietic stem cell (HSC) grafts with suboptimal stem cell dose have emerged as promising strategies for improving outcomes of HSC transplantation in patients with hematological malignancies. While exposure of HSCs to ex vivo cultures expands the number of phenotypically identifiable HSCs, it frequently alters the transcriptomic and metabolic profiles, therefore, compromising their long-term (LT) hematopoietic reconstitution capacity. Within the heterogeneous pool of expanded HSCs, the precise phenotypic, transcriptomic and metabolic profile and thus, the identity of HSCs that confer LT repopulation potential remains poorly described. Utilizing valproic acid (VPA) in ex vivo cultures of umbilical cord blood (UCB)-CD34 cells, we demonstrate that expanded HSCs phenotypically marked by expression of the stem cell markers CD34, CD90 and EPCR (CD201) are highly enriched for LT-HSCs. Furthermore, we report that low mitochondrial membrane potential, and, hence, mitochondrial activity distinguishes LT-HSCs within the expanded pool of phenotypically defined HSCs. Remarkably, such reduced mitochondrial activity is restricted to cells with the highest expression levels of CD34, CD90 and EPCR phenotypic markers. Together, our findings reveal that high expression of CD34, CD90 and EPCR in conjunction with low mitochondrial activity is critical for identification of functional LT-HSCs generated within ex vivo expansion cultures.
机译:具有次优干细胞剂量的人造血干细胞(HSC)移植物的前体内扩增策略出现为提高血液天动恶性肿瘤患者HSC移植的延期的有前途策略。虽然HSCs暴露于前体内培养物,但它延伸了表型识别的HSC的数量,因此它经常改变转录组和代谢谱,因此损害了它们的长期(LT)造血重构能力。在膨胀HSC的异质池中,精确的表型,转录组和代谢曲线,因此,赋予扣除潜力的HSC的特性仍然差。利用脐脐血(UCB)-CD34细胞的离体培养物中的丙戊酸(VPA),我们证明了通过干细胞标记物CD34,CD90和EPCR(CD201)的表达表达型标记的扩增的HSCs高度富集用于LT-HSC 。此外,我们报告了低线粒体膜电位,并且因此,线粒体活性区分LT-HSC在表型定义的HSCs的扩展池内。值得注意的是,这种降低的线粒体活性仅限于具有最高表达水平的CD34,CD90和EPCR表型标志物的细胞。我们的研究结果表明,CD34,CD90和EPCR结合低线粒体活性的高表达对于鉴定在离体膨胀培养物内产生的功能性LT-HSC是至关重要的。

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