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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Humanized large-scale expanded endothelial colony-forming cells function in vitro and in vivo.
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Humanized large-scale expanded endothelial colony-forming cells function in vitro and in vivo.

机译:人源化的大规模扩增的内皮集落形成细胞在体外和体内均起作用。

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摘要

Endothelial progenitor cells are critically involved in essential biologic processes, such as vascular homeostasis, regeneration, and tumor angiogenesis. Endothelial colony-forming cells (ECFCs) are endothelial progenitor cells with robust proliferative potential. Their profound vessel-forming capacity makes them a promising tool for innovative experimental, diagnostic, and therapeutic strategies. Efficient and safe methods for their isolation and expansion are presently lacking. Based on the previously established efficacy of animal serum-free large-scale clinical-grade propagation of mesenchymal stromal cells, we hypothesized that endothelial lineage cells may also be propagated efficiently following a comparable strategy. Here we demonstrate that human ECFCs can be recovered directly from unmanipulated whole blood. A novel large-scale animal protein-free humanized expansion strategy preserves the progenitor hierarchy with sustained proliferation potential of more than 30 population doublings. By applying large-scale propagated ECFCs in various test systems, we observed vascular networks in vitro and perfused vessels in vivo. After large-scale expansion and cryopreservation phenotype, function, proliferation, and genomic stability were maintained. For the first time, proliferative, functional, and storable ECFCs propagated under humanized conditions can be explored in terms of their therapeutic applicability and risk profile.
机译:内皮祖细胞关键参与重要的生物学过程,例如血管稳态,再生和肿瘤血管生成。内皮集落形成细胞(ECFC)是具有强大增殖潜能的内皮祖细胞。强大的血管形成能力使其成为创新性实验,诊断和治疗策略的有前途的工具。当前缺乏隔离和扩展它们的有效和安全的方法。基于先前建立的动物的无血清间充质基质细胞大规模临床级繁殖的功效,我们假设在可比的策略下内皮谱系细胞也可能有效繁殖。在这里,我们证明了人类ECFC可以直接从未经处理的全血中回收。一种新颖的大规模无动物蛋白的人源化扩增策略可保留祖细胞等级,并具有超过30倍的种群倍增的持续增殖潜力。通过在各种测试系统中应用大规模传播的ECFC,我们观察了体外血管网络和体内灌注血管。在大规模扩展和冷冻保存表型后,功能,增殖和基因组稳定性得以维持。首次可以在人源化条件下传播的增殖性,功能性和可储存ECFC的治疗适用性和风险状况方面进行研究。

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