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首页> 外文期刊>Tissue engineering, Part A >Mesenchymal stem cells negatively regulate dendritic lineage commitment of umbilical-cord-blood-derived hematopoietic stem cells: an unappreciated mechanism as immunomodulators.
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Mesenchymal stem cells negatively regulate dendritic lineage commitment of umbilical-cord-blood-derived hematopoietic stem cells: an unappreciated mechanism as immunomodulators.

机译:间充质干细胞负调节脐带血来源的造血干细胞的树突沿袭承诺:作为免疫调节剂的未知机制。

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Due to their immunomodulatory functions, mesenchymal stem cells (MSCs) have great potential for clinical applications to prevent rejection in organ transplantation and to prevent graft-versus-host disease in hematopoietic stem cell (HSC) transplantation. Since dendritic cells (DCs) play an important role in modulating diverse T cell responses, including rejection and graft-versus-host disease, the goal of this study was to investigate whether MSCs modulate DC differentiation from HSCs and if this effect could be one of the mechanisms for MSCs' immune-modulating functions. Our results demonstrate that differentiation of HSCs into mature DCs is inhibited in the presence of MSCs. Similar frequency of dendritic precursors in the cultures, either with or without MSCs, suggests that the inhibition of MSCs on the differentiation of mature DCs from HSCs could be due to the arresting of maturation at the dendritic precursor step. Reduced levels of cyclic AMP, adenosine 3',5'-cyclic monophosphate (cAMP) and beta-catenin in DC-like cells from the cocultures are detected, suggesting that induction of apoptosis and inhibition of differentiation could be the basis for the inhibition of mature DCs from HSCs by MSCs. Further, our results demonstrate that DCs derived from HSCs in the presence of MSCs are functionally impaired, especially for those after direct contact with MSCs. To investigate the basis of functional impairment, our data show downregulated tumor necrosis factor-alpha and transforming growth factor-beta1 secretion and upregulated interleukin-6 (IL6) and IL1beta secretion in the cultures with MSCs. Together, MSCs can inhibit differentiation of mature DCs from HSCs by arresting them at the precursor stage and induce their apoptosis. Further, HSC-derived DCs in the presence of MSCs are functionally impaired, which could be partly due to the upregulation of IL6 secretion.
机译:由于它们的免疫调节功能,间充质干细胞(MSC)在临床应用中具有巨大的潜力,可防止器官移植中的排斥反应和预防造血干细胞(HSC)移植中的移植物抗宿主病。由于树突状细胞(DC)在调节各种T细胞应答(包括排斥反应和移植物抗宿主病)中起重要作用,因此本研究的目的是研究MSC是否调节HSC的DC分化,以及这种作用是否可能是其中的一种。 MSCs免疫调节功能的机制。我们的结果表明,在存在MSC的情况下,HSC分化为成熟的DC受到抑制。在有或没有MSC的情况下,树突状前体在培养物中的发生频率相似,这表明MSC抑制成熟DC从HSC分化的抑制作用可能是由于树突状前体步骤阻止了成熟。从共培养物中检测到DC样细胞中环状AMP,3',5'-环状单磷酸腺苷(cAMP)和β-连环蛋白水平降低,这表明诱导凋亡和抑制分化可能是抑制细胞凋亡的基础。 MSC从HSC获得的成熟DC。此外,我们的结果表明,在存在MSC的情况下衍生自HSC的DC在功能上受到损害,尤其是对于那些直接与MSC接触后的DC。为了研究功能障碍的基础,我们的数据显示在具有MSC的培养物中,肿瘤坏死因子-α和转化生长因子-β1分泌下调,白介素6(IL6)和IL1β分泌上调。在一起,MSC可以通过将成熟DC阻滞在前体阶段并诱导其凋亡来抑制其分化。此外,在存在MSC的情况下,HSC衍生的DC功能受损,这可能部分是由于IL6分泌上调所致。

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