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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Role of bone marrow transplantation for correcting hemophilia A in mice
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Role of bone marrow transplantation for correcting hemophilia A in mice

机译:骨髓移植在纠正小鼠血友病A中的作用

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摘要

To better understand cellular basis of hemophilia, cell types capable of producing FVIII need to be identified. We determined whether bone marrow (BM)-derived cells would produce cells capable of synthesizing and releasing FVIII by transplanting healthy mouse BM into hemophilia A mice. To track donor-derived cells, we used genetic reporters. Use of multiple coagulation assays demonstrated whether FVIII produced by discrete cell populations would correct hemophilia A. We found that animals receiving healthyBMcells survived bleeding challenge with correction of hemophilia, although donor BM-derived hepatocytes or endothelial cells were extremely rare, and these cells did not account for therapeutic benefits. By contrast, donor BM-derived mononuclear and mesenchymal stromal cells were more abundant and expressed FVIII mRNAas well as FVIII protein. Moreover, injection of healthy mouse Kupffer cells (liver macrophage/mononuclear cells), which predominantly originate from BM, or of healthy BM-derived mesenchymal stromal cells, protected hemophilia A mice from bleeding challenge with appearance of FVIII in blood. Therefore, BM transplantation corrected hemophilia A through donor-derived mononuclear cells and mesenchymal stromal cells. These insights into FVIII synthesis and production in alternative cell types will advance studies of pathophysiological mechanisms and therapeutic development in hemophilia A.
机译:为了更好地了解血友病的细胞基础,需要确定能够产生FVIII的细胞类型。我们确定了通过将健康小鼠BM移植到A型血友病小鼠中,骨髓(BM)衍生的细胞是否会产生能够合成和释放FVIII的细胞。为了追踪供体来源的细胞,我们使用了遗传报告基因。多次凝血测定法的使用证明了离散细胞群产生的FVIII是否会纠正A型血友病。我们发现接受健康BM细胞的动物在纠正血友病后仍能经受出血挑战,尽管供体BM来源的肝细胞或内皮细胞极为罕见,而这些细胞并未占治疗益处。相比之下,供体BM来源的单核和间充质基质细胞更为丰富,并表达FVIII mRNA和FVIII蛋白。此外,注射主要来源于BM的健康小鼠Ku​​pffer细胞(肝巨噬细胞/单核细胞)或健康BM来源的间充质基质细胞,可以保护血友病A小鼠免受血液中FVIII出现的出血挑战。因此,BM移植通过供体来源的单核细胞和间充质基质细胞纠正了血友病A。这些关于FVIII合成和在其他细胞类型中产生的见解将推动A型血友病的病理生理机制和治疗发展的研究。

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