首页> 外文期刊>Cancer biology & therapy >Cotransplantation of human umbilical cord blood-derived stromal cells enhances hematopoietic reconstitution and engraftment in irradiated BABL/c mice.
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Cotransplantation of human umbilical cord blood-derived stromal cells enhances hematopoietic reconstitution and engraftment in irradiated BABL/c mice.

机译:人脐带血来源的基质细胞的共移植增强了受辐照的BABL / c小鼠的造血重建和移植。

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Our previous study demonstrated that human umbilical cord blood-derived stromal cells (hUCBDSCs) support the growth of hematopoietic stem cells, and promote the expansion of colony-forming units of megakaryocyte (CFU-Mk) even more efficiently than human bone marrow stromal cells (hBMSCs). Given the unique role of hUCBDSCs in megakaryocytopoiesis in vitro, in this follow up study, we further investigated their effects in vivo on hematopoiesis in the setting of hematopoietic stem cell (HSC) transplants. After infusing hematopoietic cells alone or together with either hUCBDSCs or hBMSCs into lethally irradiated BABL/c mice, we examined the engraftment of human CD45+ cells in the mouse bone marrow with flow cytometry, observed the survival rate of irradiated mice, obtained blood counts and bone marrow biopsies at different time points post-transplant, and assessed colony forming and the homing efficiency of hematopoietic cells. By comparing HSC transplantation with or without stromal cells, we show here that hUCBDSCs efficiently promote the homing of hematopoietic cells to the marrow and enhance the engraftment after cotransplantation. They also promote hematopoietic reconstitution, particularly of the megakaryocytic lineage, and restore the impaired stromal microenvironment after radiation-induced damages. These effects of hUCBDSCs are more potent than those of hBMSCs. In conclusion, our findings suggest the role of hUCBDSCs to facilitate hematopoietic reconstitution and engraftment when cotransplanted with hematopoietic cells.
机译:我们之前的研究表明,人脐带血来源的基质细胞(hUCBDSC)支持造血干细胞的生长,甚至比人骨髓基质细胞(hFUBDMs)更有效地促进巨核细胞(CFU-Mk)的集落形成单位的扩展( hBMSC)。鉴于hUCBDSCs在体外巨核细胞生成中的独特作用,在此后续研究中,我们进一步研究了其在造血干细胞(HSC)移植中对造血作用的体内作用。将造血细胞单独或与hUCBDSCs或hBMSCs一起注入致死性照射的BABL / c小鼠后,我们用流式细胞术检查了小鼠骨髓中人类CD45 +细胞的植入情况,观察了受照射小鼠的存活率,获得了血细胞计数和骨骼移植后不同时间点进行骨髓活检,并评估菌落形成和造血细胞的归巢效率。通过比较有或没有基质细胞的HSC移植,我们在这里显示hUCBDSCs有效地促进了造血细胞向骨髓的归巢,并增强了共移植后的植入。它们还促进造血重建,特别是巨核细胞系的造血重建,并在辐射诱发的损伤后恢复受损的基质微环境。 hUCBDSC的这些作用比hBMSC的作用更强。总之,我们的发现表明,hUCBDSCs与造血细胞共移植时,可促进造血重建和移植。

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