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Matrix elasticity, replicative senescence and DNA methylation patterns of mesenchymal stem cells

机译:间充质干细胞的基质弹性,复制衰老和DNA甲基化模式

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Matrix elasticity guides differentiation of mesenchymal stem cells (MSCs) but it is unclear if these effects are only transient - while the cells reside on the substrate - or if they reflect persistent lineage commitment. In this study, MSCs were continuously culture-expanded in parallel either on tissue culture plastic (TCP) or on polydimethylsiloxane (PDMS) gels of different elasticity to compare impact on replicative senescence, invitro differentiation, gene expression, and DNA methylation (DNAm) profiles. The maximal number of cumulative population doublings was not affected by matrix elasticity. Differentiation towards adipogenic and osteogenic lineage was increased on soft and rigid biomaterials, respectively - but this propensity was no more evident if cells were transferred to TCP. Global gene expression profiles and DNAm profiles revealed relatively few differences in MSCs cultured on soft or rigid matrices. Furthermore, only moderate DNAm changes were observed upon culture on very soft hydrogels of human platelet lysate. Our results support the notion that matrix elasticity influences cellular behavior while the cells reside on the substrate, but it does not have major impact on cell-intrinsic lineage determination, replicative senescence or DNAm patterns.
机译:基质弹性指导间充质干细胞(MSC)的分化,但尚不清楚这些作用是否只是短暂的-当细胞位于基质上时-还是反映出持久的血统承诺。在这项研究中,MSC在具有不同弹性的组织培养塑料(TCP)或聚二甲基硅氧烷(PDMS)凝胶上连续平行培养扩展,以比较其对复制衰老,体外分化,基因表达和DNA甲基化(DNAm)谱图的影响。累积种群倍增的最大数量不受矩阵弹性的影响。在软和刚性生物材料上,分别向成脂和成骨谱系的分化增加了,但是如果将细胞转移到TCP,这种倾向就不再明显。全局基因表达图谱和DNAm图谱显示在软或刚性基质上培养的MSC的差异相对较小。此外,在人血小板裂解物的非常软的水凝胶上培养时,仅观察到适度的DNAm变化。我们的研究结果支持这样一种观点,即当细胞位于基质上时基质弹性会影响细胞行为,但对细胞内源性谱系测定,复制衰老或DNAm模式没有重大影响。

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