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Expansive effects of aorta-gonad-mesonephros-derived stromal cells on hematopoietic stem cells from embryonic stem cells

机译:主动脉性腺-间充质间质细胞对胚胎干细胞造血干细胞的扩增作用

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Background Hematopoietic stem cells ( HSCs) give rise to all blood and immune cells and are used in clinical transplantation protocols to treat a wide variety of refractory diseases, but the amplification of HSCs has been difficult to achieve in vitro. In the present study, the expansive effects of aorta-gonad-mesonephros (AGM) region derived stromal cells on HSCs were explored, attempting to improve the efficiency of HSC transplantation in clinical practice. Methods The murine stromal cells were isolated from the AGM region of 12 days postcoitum (dpc) murine embryos and bone marrow( BM) of 6 weeks old mice, respectively. After identification with flow cytometry and immunocytochemistry, the stromal cells were co-cultured with ESCs-derived, cytokines-induced HSCs. The maintenance and expansion of ESCs-derived HSCs were evaluated by detecting the population of CD_(34)~+ and CD_(34)~+ Sca-1~+ cells with flow cytometry and the blast colony-forming cells (BL-CFCs) , high proliferative potential colony-forming cells ( HPP-CFCs) by using semi-solid medium colonial culture. Finally, the homing and hematopoietic reconstruction abilities of HSCs were evaluated using a murine model of HSC transplantation in vivo. Results AGM and BM-derived stromal cells were morphologically and phenotypically similar, and had the features of stromal cells. When co-cultured with AGM or BM stromal cells, more primitive progenitor cells (HPP-CFCs ) could be detected in ESCs derived hematopoietic precursor cells, but BL-CFC' s expansion could be detected only when co-cultured with AGM-derived stromal cells. The population of CD_(34)~+ hematopoietic stem/ progenitor cells were expanded 3 times, but no significant expansion in the population of CD_(34)~+ Sca-1~+ cells was noted when co-cultured with BM stromal cells. While both CD_(34)~+ hematopoietic stem/progenitor cells and CD_(34)~+ Sca-1~+ cells were expanded 4 to 5 times respectively when co-cultured with AGM stromal cells. AGM region-derived stromal cells, like BM-derived stromal cells, could promote hematopoietic reconstruction and HSCs' homing to BM in vivo. Conclusions AGM-derived stromal cells in comparison with the BM-derived stromal cells could not only support the expansion of HSCs but also maintain the self-renewal and multi-lineage differentiation more effectively. They are promising in HSC transplantation.
机译:背景造血干细胞(HSC)产生所有血液和免疫细胞,并在临床移植方案中用于治疗多种难治性疾病,但在体外很难实现HSC的扩增。在本研究中,探讨了从主动脉-性腺-中肾(AGM)区衍生的基质细胞对HSC的扩展作用,试图在临床实践中提高HSC移植的效率。方法分别从大鼠骨髓间充质干(dpc)12天后的AGM区和6周龄小鼠的骨髓(BM)中分离出鼠基质细胞。用流式细胞仪和免疫细胞化学鉴定后,将基质细胞与ESCs衍生的细胞因子诱导的HSCs共培养。通过流式细胞仪检测CD_(34)〜+和CD_(34)〜+ Sca-1〜+细胞以及原始集落形成细胞(BL-CFCs)的数量来评估ESCs造血干细胞的维持和扩增。 ,通过使用半固体培养基菌落培养,获得高增殖潜能的菌落形成细胞(HPP-CFC)。最后,使用体内HSC移植的小鼠模型评估HSC的归巢和造血重建能力。结果AGM和BM来源的基质细胞在形态和表型上相似,并具有基质细胞的特征。当与AGM或BM基质细胞共培养时,可以在源自ESC的造血前体细胞中检测到更多原始祖细胞(HPP-CFCs),但只有与AGM衍生的基质一起共培养时才能检测到BL-CFC的扩增。细胞。 CD_(34)〜+造血干/祖细胞群体扩增了3倍,但与BM基质细胞共培养时,CD_(34)〜+ Sca-1〜+细胞群体没有明显的扩增。与AGM基质细胞共培养时,CD_(34)〜+造血干/祖细胞和CD_(34)〜+ Sca-1〜+细胞分别扩增4至5倍。像BM衍生的基质细胞一样,AGM区域衍生的基质细胞可以促进体内造血重建和HSCs向BM归巢。结论与源自BM的基质细胞相比,源自AGM的基质细胞不仅可以支持HSC的扩增,而且可以更有效地维持自我更新和多系分化。它们在HSC移植中很有前途。

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