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Acellular Bone Marrow Extracts Significantly Enhance Engraftment Levels of Human Hematopoietic Stem Cells in Mouse Xeno-Transplantation Models

机译:在小鼠异种移植模型中,脱细胞骨髓提取物显着提高了人类造血干细胞的植入水平。

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摘要

Hematopoietic stem cells (HSC) derived from cord blood (CB), bone marrow (BM), or mobilized peripheral blood (PBSC) can differentiate into multiple lineages such as lymphoid, myeloid, erythroid cells and platelets. The local microenvironment is critical to the differentiation of HSCs and to the preservation of their phenotype in vivo. This microenvironment comprises a physical support supplied by the organ matrix as well as tissue specific cytokines, chemokines and growth factors. We investigated the effects of acellular bovine bone marrow extracts (BME) on HSC in vitro and in vivo. We observed a significant increase in the number of myeloid and erythroid colonies in CB mononuclear cells (MNC) or CB CD34+ cells cultured in methylcellulose media supplemented with BME. Similarly, in xeno-transplantation experiments, pretreatment with BME during ex-vivo culture of HSCs induced a significant increase in HSC engraftment in vivo. Indeed, we observed both an increase in the number of differentiated myeloid, lymphoid and erythroid cells and an acceleration of engraftment. These results were obtained using CB MNCs, BM MNCs or CD34+ cells, transplanted in immuno-compromised mice (NOD/SCID or NSG). These findings establish the basis for exploring the use of BME in the expansion of CB HSC prior to HSC Transplantation. This study stresses the importance of the mechanical structure and soluble mediators present in the surrounding niche for the proper activity and differentiation of stem cells.
机译:源自脐带血(CB),骨髓(BM)或动员外周血(PBSC)的造血干细胞(HSC)可以分化为多种谱系,例如淋巴样,髓样,类红细胞和血小板。局部微环境对于HSC的分化及其在体内表型的保存至关重要。该微环境包括由器官基质以及组织特异性细胞因子,趋化因子和生长因子提供的物理支持。我们在体外和体内研究了脱细胞牛骨髓提取物(BME)对HSC的影响。我们观察到在补充了BME的甲基纤维素培养基中培养的CB单核细胞(MNC)或CB CD34 +细胞中,髓样和红系集落的数量显着增加。类似地,在异种移植实验中,在HSC的离体培养过程中用BME进行预处理会导致体内HSC植入的明显增加。实际上,我们观察到分化的髓样细胞,淋巴样细胞和红系细胞数量的增加以及植入的加速。这些结果是通过将CB MNC,BM MNC或CD34 + 细胞移植到免疫功能低下的小鼠(NOD / SCID或NSG)中获得的。这些发现为在BSC移植之前探索BME在CB HSC扩增中的应用奠定了基础。这项研究强调了周围环境中存在的机械结构和可溶性介体对于干细胞正常活动和分化的重要性。

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