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Intramarrow injection of β-catenin-activated, but not na?ve mesenchymal stromal cells stimulates self-renewal of hematopoietic stem cells in bone marrow

机译:骨髓内注射β-catenin激活的非天然间充质基质细胞刺激骨髓中造血干细胞的自我更新

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Bone marrow mesenchymal stromal cells (MSCs) have been implicated in the microenvironmental support of hematopoietic stem cells (HSCs) and often co-transplanted with HSCs to facilitate recovery of ablated bone marrows. However, the precise effect of transplanted MSCs on HSC regeneration remains unclear because the kinetics of HSC self-renewal in vivo after co-transplantation has not been monitored. In this study, we examined the effects of intrafemoral injection of MSCs on HSC self-renewal in rigorous competitive repopulating unit (CRU) assays using congenic transplantation models in which stromal progenitors (CFU-F) were ablated by irradiation. Interestingly, na?ve MSCs injected into femur contributed to the reconstitution of a stromal niche in the ablated bone marrows, but did not exert a stimulatory effect on the in-vivo self-renewal of co-transplanted HSCs regardless of the transplantation methods. In contrast, HSC self-renewal was four-fold higher in bone marrows intrafemorally injected with β-catenin-activated MSCs. These results reveal that na?ve MSCs lack a stimulatory effect on HSC self-renewal in-vivo and that stroma must be activated during recoveries of bone marrows. Stromal targeting of wnt/β-catenin signals may be a strategy to activate such a stem cell niche for efficient regeneration of bone marrow HSCs.
机译:骨髓间充质基质细胞(MSCs)与造血干细胞(HSCs)的微环境支持有关,并且经常与HSCs共移植以促进消融骨髓的恢复。然而,由于尚未监测共移植后体内HSC自我更新的动力学,因此移植的MSC对HSC再生的确切作用仍不清楚。在这项研究中,我们在严格的竞争性繁殖单元(CRU)分析中使用同种移植模型,通过辐照消融了基质祖细胞(CFU-F),检查了股骨内注射MSC对HSC自更新的影响。有趣的是,注入股骨的幼稚MSC有助于消融骨髓中基质小生境的重建,但无论移植方法如何,都不会对共移植的HSC的体内自我更新产生刺激作用。相反,在股骨内注射β-catenin激活的MSC的骨髓中,HSC的自我更新率高四倍。这些结果表明,幼稚的MSC对HSC体内自我更新缺乏刺激作用,并且在骨髓恢复期间必须激活基质。 wnt /β-catenin信号的基质靶向可能是激活此类干细胞生态位以有效再生骨髓HSC的策略。

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