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Chondrogenic potential of bone marrow- and adipose tissue-derived adult human mesenchymal stem cells

机译:骨髓和脂肪组织来源的成人间充质干细胞的软骨形成潜能

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Regarding cartilage repair, tissue engineering is currently focusing on the use of adult mesenchymal stem cells (MSC) as an alternative to autologous chondrocytes. The potential of stem cells from various tissues to differentiate towards the chondrogenic phenotype has been investigated and it appears that the most common and studied sources are bone marrow (BM) and adipose tissue (AT) for historical and easy access reasons. In addition to three dimensional environment, the presence of member(s) of the transforming growth factor (TGF-β family and low oxygen tension have been reported to promote the in vitro differentiation of MSCs. Our work aimed at characterizing and comparing the degree of chondrogenic differentiation of MSCs isolated from BM and AT cultured in the same conditions. We also further aimed at and at determining whether hypoxia (2% oxygen) could affect the chondrogenic potential of AT-MSCs. Cells were first expanded in the presence of FGF-2, then harvested and centrifuged to allow formation of cell pellets, which were cultured in the presence of TGF-β3 and/or Bone Morphogenetic Protein-2 (BMP-2) and with 2 or 20% oxygen tension, for 24 days. Markers of the chondrocyte (COL2A1, AGC1, Sox9) and hypertrophic chondrocyte (COL10A1, MMP-13) were monitored by real-time PCR and/or by immunohistological staining. Our data show that BMP-2/TGF-β3 combination is the best culture condition to induce the chondrocyte phenotype in pellet cultures of BM and AT-MSCs. Particularly, a switch in the expression of the pre-chondrogenic type IIA form to the cartilage-specific type IIB form of COL2A1 was observed. A parallel increase in gene expression of COL10A1 and MMP-13 was also recorded. However when AT-MSCs were cultured in hypoxia, the expression of markers of hypertrophic chondrocytes decreased when BMP-2/TGF-β3 were present in the medium. Thus it seems that hypoxia participates to the control of AT-MSCs chondrogenesis. Altogether, these cellular model systems will help us to investigate further the potential of different adult stem cells for cartilage engineering.
机译:关于软骨修复,组织工程目前集中在使用成人间充质干细胞(MSC)作为自体软骨细胞的替代物上。已经研究了来自各种组织的干细胞分化为软骨形成表型的潜力,并且出于历史和易于获取的原因,似乎最常见和研究的来源是骨髓(BM)和脂肪组织(AT)。除三维环境外,据报道存在转化生长因子(TGF-β家族)成员和低氧张力可促进MSCs的体外分化。在相同条件下培养的分离自BM和AT的MSC的软骨形成分化我们还针对并确定缺氧(2%氧气)是否会影响AT-MSC的软骨形成潜力。如图2所示,然后收获并离心以形成细胞沉淀,将其在TGF-β3和/或骨形态发生蛋白2(BMP-2)存在下并在2%或20%的氧气张力下培养24天。实时荧光定量PCR和/或免疫组化染色监测软骨细胞(COL2A1,AGC1,Sox9)和肥大软骨细胞(COL10A1,MMP-13)的表达,我们的数据表明BMP-2 /TGF-β3组合是最佳培养诱导的条件BM和AT-MSC沉淀培养中的软骨细胞表型。特别地,观察到软骨形成前IIA型表达向COL2A1的软骨特异性IIB型表达的转变。还记录了COL10A1和MMP-13基因表达的平行增加。然而,在低氧条件下培养AT-MSCs时,培养基中存在BMP-2 /TGF-β3时,肥大软骨细胞标志物的表达降低。因此,似乎缺氧参与了AT-MSCs软骨形成的控制。总之,这些细胞模型系统将帮助我们进一步研究不同成体干细胞在软骨工程中的潜力。

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