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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Bone marrow homing and engraftment of human hematopoietic stem and progenitor cells is mediated by a polarized membrane domain
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Bone marrow homing and engraftment of human hematopoietic stem and progenitor cells is mediated by a polarized membrane domain

机译:人的造血干细胞和祖细胞的骨髓归巢和植入是由极化的膜结构域介导的

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Manipulation of hematopoietic stem/progenitor cells (HSPCs) ex vivo is of clinical importance for stem cell expansion and gene therapy applications. However, most cultured HSPCs are actively cycling, and show a homing and engraftment defect compared with the predominantly quiescent noncultured HSPCs. We previously showed that HSPCs make contact with osteoblasts in vitro via a polarized membrane domain enriched in adhesion molecules such as tetraspanins. Here we show that increased cell cycling during ex vivo culture of HSPCs resulted in disruption of this membrane domain, as evidenced by disruption of polarity of the tetraspanin CD82. Chemical disruption or antibody-mediated blocking of CD82 on noncultured HSPCs resulted in decreased stromal cell adhesion, homing, and engraftment in nonobese diabetic/severe combined immunodeficiency IL-2γ null(NSG) mice compared with HSPCs with an intact domain. Most leukemic blasts were actively cycling and correspondingly displayed a loss of domain polarity and decreased homing in NSG mice compared with normal HSPCs. We conclude that quiescent cells, unlike actively cycling cells, display a polarized membrane domain enriched in tetraspanins that mediates homing and engraftment, providing a mechanistic explanation for the homing/engraftment defect of cycling cells and a potential new therapeutic target to enhance engraftment.
机译:离体造血干/祖细胞(HSPC)的操作对于干细胞扩增和基因治疗应用具有临床重要性。但是,大多数培养的HSPC都处于主动循环状态,与静止的非培养HSPC相比,它们显示出归巢和移植缺陷。我们以前的研究表明,HSPC通过富集粘附分子(如四跨膜蛋白)的极化膜结构域与体外成骨细胞接触。在这里,我们显示在HSPC的离体培养过程中,细胞周期的增加导致该膜结构域的破坏,如四跨膜蛋白CD82极性的破坏所证明。与具有完整结构域的HSPC相比,非培养的HSPC上化学破坏或抗体介导的CD82阻滞导致非肥胖型糖尿病/严重合并免疫缺陷IL-2γnull(NSG)小鼠的基质细胞粘附,归巢和植入减少。与正常的HSPC相比,NSG小鼠中的大多数白血病母细胞都活跃地循环并相应地显示出域极性丧失和归巢减少。我们得出的结论是,与主动循环的细胞不同,静态细胞显示富含四跨素的极化膜结构域,介导归巢和植入,为循环细胞的归巢/植入缺陷提供了机械学解释,并为增强植入提供了潜在的新治疗靶点。

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