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Human Adipose-Tissue Derived Stromal Cells in Combination with Hypoxia Effectively Support Ex Vivo Expansion of Cord Blood Haematopoietic Progenitors

机译:人脂肪组织衍生的基质细胞与缺氧相结合有效支持脐带血造血祖细胞的体外扩增。

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摘要

The optimisation of haematopoietic stem and progenitor cell expansion is on demand in modern cell therapy. In this work, haematopoietic stem/progenitor cells (HSPCs) have been selected from unmanipulated cord blood mononuclear cells (cbMNCs) due to adhesion to human adipose-tissue derived stromal cells (ASCs) under standard (20%) and tissue-related (5%) oxygen. ASCs efficiently maintained viability and supported further HSPC expansion at 20% and 5% O2. During co-culture with ASCs, a new floating population of differently committed HSPCs (HSPCs-1) grew. This suspension was enriched with СD34+ cells up to 6 (20% O2) and 8 (5% O2) times. Functional analysis of HSPCs-1 revealed cobble-stone area forming cells (CAFCs) and lineage-restricted colony-forming cells (CFCs). The number of CFCs was 1.6 times higher at tissue-related O2, than in standard cultivation (20% O2). This increase was related to a rise in the number of multipotent precursors - BFU-E, CFU-GEMM and CFU-GM. These changes were at least partly ensured by the increased concentration of MCP-1 and IL-8 at 5% O2. In summary, our data demonstrated that human ASCs enables the selection of functionally active HSPCs from unfractionated cbMNCs, the further expansion of which without exogenous cytokines provides enrichment with CD34+ cells. ASCs efficiently support the viability and proliferation of cord blood haematopoietic progenitors of different commitment at standard and tissue-related O2 levels at the expense of direct and paracrine cell-to-cell interactions.
机译:在现代细胞疗法中,需要优化造血干细胞和祖细胞的扩增。在这项工作中,由于在标准(20%)和组织相关(5)下与人脂肪组织来源的基质细胞(ASC)的粘附性,已从未操纵的脐血单核细胞(cbMNCs)中选择了造血干/祖细胞(HSPC)。 %)氧气。 ASC有效地维持了生存能力,并支持将HSPC进一步扩展到20%和5%O2。在与ASC共同培养期间,出现了新的流动的不同承诺的HSPC(HSPCs-1)。该悬浮液富含СD34 + 细胞,最多可进行6次(20%O2)和8次(5%O2)的培养。 HSPCs-1的功能分析揭示了卵石区域形成细胞(CAFC)和谱系限制菌落形成细胞(CFC)。在组织相关的O2中,CFC的数量是标准培养中(20%O2)的1.6倍。这种增加与多能前体BFU-E,CFU-GEMM和CFU-GM的数量增加有关。这些变化至少部分由5%O2下MCP-1和IL-8浓度的增加来确保。总而言之,我们的数据表明,人类ASC能够从未分级的cbMNCs中选择具有功能活性的HSPC,而无需外源细胞因子的进一步扩增可提供CD34 + 细胞的富集。 ASC有效地支持在标准O2和组织相关O2水平上具有不同承诺的脐带血造血祖细胞的生存能力和增殖,而直接和旁分泌的细胞间相互作用则代价高昂。

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