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无基质液培养体系从脐带血中高效生成多能间充质干细胞。

Efficient generation of multipotent mesenchymal stem cells from umbilical cord blood in stroma-free liquid culture.

机构信息

Clinic of Oncology, University Hospital of Zurich, Zurich, Switzerland.

出版信息

PLoS One. 2010 Dec 30;5(12):e15689. doi: 10.1371/journal.pone.0015689.

Abstract

BACKGROUND

Haematopoiesis is sustained by haematopoietic (HSC) and mesenchymal stem cells (MSC). HSC are the precursors for blood cells, whereas marrow, stroma, bone, cartilage, muscle and connective tissues derive from MSC. The generation of MSC from umbilical cord blood (UCB) is possible, but with low and unpredictable success. Here we describe a novel, robust stroma-free dual cell culture system for long-term expansion of primitive UCB-derived MSC.

METHODS AND FINDINGS

UCB-derived mononuclear cells (MNC) or selected CD34(+) cells were grown in liquid culture in the presence of serum and cytokines. Out of 32 different culture conditions that have been tested for the efficient expansion of HSC, we identified one condition (DMEM, pooled human AB serum, Flt-3 ligand, SCF, MGDF and IL-6; further denoted as D7) which, besides supporting HSC expansion, successfully enabled long-term expansion of stromal/MSC from 8 out of 8 UCB units (5 MNC-derived and 3 CD34(+) selected cells). Expanded MSC displayed a fibroblast-like morphology, expressed several stromal/MSC-related antigens (CD105, CD73, CD29, CD44, CD133 and Nestin) but were negative for haematopoietic cell markers (CD45, CD34 and CD14). MSC stemness phenotype and their differentiation capacity in vitro before and after high dilution were preserved throughout long-term culture. Even at passage 24 cells remained Nestin(+), CD133(+) and >95% were positive for CD105, CD73, CD29 and CD44 with the capacity to differentiate into mesodermal lineages. Similarly we show that UCB derived MSC express pluripotency stem cell markers despite differences in cell confluency and culture passages. Further, we generated MSC from peripheral blood (PB) MNC of 8 healthy volunteers. In all cases, the resulting MSC expressed MSC-related antigens and showed the capacity to form CFU-F colonies.

CONCLUSIONS

This novel stroma-free liquid culture overcomes the existing limitation in obtaining MSC from UCB and PB enabling so far unmet therapeutic applications, which might substantially affect clinical practice.

摘要

背景

造血是由造血(HSC)和间充质干细胞(MSC)维持的。HSC 是血细胞的前体,而骨髓、基质、骨骼、软骨、肌肉和结缔组织则来自 MSC。从脐带血(UCB)中产生 MSC 是可能的,但成功率低且不可预测。在这里,我们描述了一种新颖的、强大的无基质双细胞培养系统,用于长期扩增原始 UCB 来源的 MSC。

方法和发现

从 UCB 中分离出的单核细胞(MNC)或选择的 CD34+细胞在含有血清和细胞因子的液体培养中生长。在为有效扩增 HSC 而测试的 32 种不同的培养条件中,我们确定了一种条件(DMEM、混合人 AB 血清、Flt-3 配体、SCF、MGDF 和 IL-6;进一步表示为 D7),除了支持 HSC 扩增外,还成功地从 8 个 UCB 单位中的 8 个(5 个 MNC 衍生和 3 个 CD34+选择细胞)中长期扩增基质/MSC。扩增的 MSC 表现出成纤维细胞样形态,表达几种基质/MSC 相关抗原(CD105、CD73、CD29、CD44、CD133 和 Nestin),但对造血细胞标记物(CD45、CD34 和 CD14)呈阴性。MSC 干性表型及其在高稀释前后的体外分化能力在长期培养过程中得以保留。即使在第 24 代,细胞仍保持 Nestin+,CD133+,>95%对 CD105、CD73、CD29 和 CD44 呈阳性,具有向中胚层谱系分化的能力。同样,我们表明,尽管细胞汇合度和培养传代存在差异,UCB 衍生的 MSC 仍表达多能干细胞标记物。此外,我们从 8 名健康志愿者的外周血(PB)MNC 中生成了 MSC。在所有情况下,生成的 MSC 均表达 MSC 相关抗原,并具有形成 CFU-F 集落的能力。

结论

这种新颖的无基质液体培养克服了从 UCB 和 PB 中获得 MSC 的现有局限性,从而实现了迄今尚未满足的治疗应用,这可能会对临床实践产生重大影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2856/3012708/2140f80cd0e0/pone.0015689.g001.jpg

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