首页> 美国卫生研究院文献>Tissue Engineering. Part A >Fibroblast Growth Factor-2 Enhances Proliferation and Delays Loss of Chondrogenic Potential in Human Adult Bone-Marrow-Derived Mesenchymal Stem Cells
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Fibroblast Growth Factor-2 Enhances Proliferation and Delays Loss of Chondrogenic Potential in Human Adult Bone-Marrow-Derived Mesenchymal Stem Cells

机译:成纤维细胞生长因子2增强人成体骨髓源间充质干细胞的增殖并延缓其软骨生成潜能的丧失。

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摘要

We compared human mesenchymal stem cells (hMSCs), expanded long term with and without fibroblast growth factor (FGF) supplementation, with respect to proliferation, and the ability to undergo chondrogenesis in vitro. hMSCs expanded in FGF-supplemented medium proliferated more rapidly than the control cells. Aggregates of FGF-treated cells exhibited chondrogenic differentiation at all passages tested although, in some preparations, differentiation was diminished after seventh passage. Aggregates made with control cells differentiated along the chondrogenic lineage after first passage but exhibited only marginal differentiation after fourth and failed to form cartilage after seventh passage. Microarray analysis of gene expression identified 334 transcripts differentially expressed in fourth passage control cells that had reduced chondrogenic potential, compared with the fourth passage FGF-treated cells that retained this capacity, and 243 transcripts that were differentially expressed when comparing them to the first passage control cells that were also capable of differentiating into chondrocytes. The intersection of these analyses yielded 49 transcripts differentially expressed in cells that exhibited chondrogenic differentiation in vitro compared with the cells that did not. Among these, angiopoietin 1, secreted frizzled-related protein 1, and six transmembrane epithelial antigen of the prostate 1 appear to be of higher relevance. These preliminary data must now be validated to verify whether different gene expression profiles translate into functional differences. In summary, these findings suggest that the chondrogenic potential of hMSCs is vulnerable to cell expansion and that care should be exercised when expanding these cells for cartilage tissue engineering applications. Supplementation with FGF-2 allows reaching target cell numbers more rapidly and extends the level of expansion within which these cells are useful for tissue-engineered cartilage repair.
机译:我们比较了人类间充质干细胞(hMSCs),在有和没有成纤维细胞生长因子(FGF)的情况下长期扩展,关于增殖和体外软骨形成的能力。在添加了FGF的培养基中扩增的hMSC比对照细胞增殖更快。尽管在某些制剂中,经过第七次传代后分化减弱,但经FGF处理的细胞的聚集体在所有传代中均显示出软骨分化。用对照细胞制成的聚集体在第一次传代后沿软骨生成谱系分化,但在第四次传代后仅表现出边缘分化,而在第七次传代后未能形成软骨。基因表达的微阵列分析确定了与保持这种能力的第四代FGF处理细胞相比,在第四代控制细胞中软骨生成潜能降低的334个转录物,以及与第一代对照相比差异表达的243个转录物也能够分化成软骨细胞的细胞这些分析的交叉产生了在体外表现出软骨分化的细胞中与未表达软骨分化的细胞中差异表达的49个转录物。其中,血管生成素1,分泌的卷曲相关蛋白1和前列腺1的6种跨膜上皮抗原似乎具有较高的相关性。现在必须验证这些初步数据,以验证不同的基因表达谱是否转化为功能差异。总而言之,这些发现表明,hMSC的软骨形成潜能容易受到细胞扩增的影响,因此在扩增这些细胞用于软骨组织工程应用时应格外小心。补充FGF-2可以更快地达到靶细胞数量,并扩展了这些细胞可用于组织工程软骨修复的扩增水平。

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