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用于治疗血管疾病的脐血循环内皮祖细胞。

Cord blood-circulating endothelial progenitors for treatment of vascular diseases.

机构信息

ABCell-Bio, Paris, France.

出版信息

Cell Prolif. 2011 Apr;44 Suppl 1(Suppl 1):44-7. doi: 10.1111/j.1365-2184.2010.00722.x.

Abstract

Adult peripheral blood (PB) endothelial progenitor cells (EPC) are produced in the bone marrow and are able to integrate vascular structures in sites of neoangiogenesis. EPCs thus represent a potential therapeutic tool for ischaemic diseases. However, use of autologous EPCs in cell therapy is limited by their rarity in adult PB. Cord blood (CB) contains more EPCs than PB, and they are functional after expansion. They form primary colonies that give rise to secondary colonies, each yielding more than 10(7) cells after few passages. The number of endothelial cells obtained from one unit of CB is compatible with potential clinical application. EPC colonies can be securely produced, expanded and cryopreserved in close culture devices and endothelial cells produced in these conditions are functional as shown in different in vitro and in vivo assays. As CB EPC-derived endothelial cells would be allogeneic to patients, it would be of interest to prepare them from ready-existing CB banks. We show that not all frozen CB units from a CB bank are able to generate EPC colonies in culture, and when they do so, number of colonies is lower than that obtained with fresh CB units. However, endothelial cells derived from frozen CB have the same phenotypical and functional properties than those derived from fresh CB. This indicates that CB cryopreservation should be improved to preserve integrity of stem cells other than haematopoietic ones. Feasibility of using CB for clinical applications will be validated in porcine models of ischaemia.

摘要

成人外周血 (PB) 内皮祖细胞 (EPC) 产生于骨髓,并能够整合新血管生成部位的血管结构。因此,EPC 代表了缺血性疾病的一种潜在治疗工具。然而,由于成人 PB 中 EPC 的稀有性,自体 EPC 在细胞治疗中的应用受到限制。脐血 (CB) 中含有比 PB 更多的 EPC,并且在扩增后具有功能。它们形成初级集落,进而产生次级集落,每个集落在经过几次传代后产生超过 10^7 个细胞。从一个单位的 CB 中获得的内皮细胞数量与潜在的临床应用相兼容。EPC 集落可以在紧密的培养装置中安全地产生、扩增和冷冻保存,并且在这些条件下产生的内皮细胞在不同的体外和体内试验中表现出功能。由于 CB EPC 衍生的内皮细胞将是异基因的,因此从现有的 CB 库中制备它们将是有趣的。我们表明,并非 CB 库中的所有冷冻 CB 单位都能够在培养中产生 EPC 集落,而且当它们这样做时,集落的数量低于新鲜 CB 单位获得的数量。然而,从冷冻 CB 衍生的内皮细胞具有与从新鲜 CB 衍生的内皮细胞相同的表型和功能特性。这表明 CB 冷冻保存应得到改善,以保持除造血细胞以外的干细胞的完整性。将 CB 用于临床应用的可行性将在缺血性猪模型中得到验证。

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