Norwegian Center for Stem Cell Research, Oslo University Hospital Rikshospitalet.
J Cell Physiol. 2011 Nov;226(11):2908-15. doi: 10.1002/jcp.22637.
Human mesenchymal stem cells (hMSCs) may be used for therapeutic applications. Culture conditions such as the serum source may impact on cell quality and the onset of replicative senescence. We have examined the effect of culturing hMSCs in autologous serum (AS) versus fetal bovine serum (FBS) on factors involved in in vitro replicative senescence. hMSCs from four donors were cultured in 10% FBS or 10% AS until they reached senescence. Cells were harvested at early passage and near senescence to study factors known to be involved in cellular senescence. The number of population doublings till senescence was similar for cells cultured in FBS, but varied greatly for hMSCs cultured in AS. FBS cells accumulated in S phase of cell cycle. This could not be explained by increased expression of cell cycle inhibitor proteins. Heat shock proteins were upregulated in AS compared to FBS cells. Reactive oxygen species and nitric oxide were upregulated in senescent FBS cells. Telomeres were shorter in senescent cells, more significantly in FBS cells. The source of serum was a determinant for the time till senescence in cultured hMSC. Serum source affected aspects of cell cycle regulation and the levels of heat shock proteins. Several mechanisms are likely to be responsible for replicative senescence in hMSC. Insight into the molecular details of how serum factors impacts on these mechanisms is important for the safe use of hMSCs in clinical applications.
人骨髓间充质干细胞(hMSCs)可用于治疗应用。培养条件,如血清来源,可能会影响细胞质量和复制性衰老的发生。我们研究了在自体血清(AS)与胎牛血清(FBS)中培养 hMSC 对体外复制性衰老相关因素的影响。从四位供体中分离的 hMSC 在 10% FBS 或 10% AS 中培养至衰老。在早期传代和接近衰老时收获细胞,以研究已知与细胞衰老相关的因素。在 FBS 中培养的细胞达到衰老所需的倍增数相似,但在 AS 中培养的 hMSC 差异很大。FBS 细胞在细胞周期的 S 期积累。这不能用细胞周期抑制剂蛋白表达增加来解释。与 FBS 细胞相比,热休克蛋白在 AS 中上调。衰老的 FBS 细胞中活性氧和一氧化氮上调。端粒在衰老细胞中缩短,在 FBS 细胞中更显著。血清来源是培养的 hMSC 达到衰老时间的决定因素。血清来源影响细胞周期调节和热休克蛋白的水平。几种机制可能导致 hMSC 的复制性衰老。了解血清因子如何影响这些机制的分子细节对于 hMSC 在临床应用中的安全使用至关重要。