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Osteogenic differentiation of human mesenchymal stem cells on α5 integrin binding peptide hydrogels is dependent on substrate elasticity

机译:人间充质干细胞在α5整合素结合肽水凝胶上的成骨分化取决于底物弹性

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摘要

The extracellular matrix plays a crucial role in controlling human mesenchymal stem cell (hMSC) biology including differentiation, and α5β1 integrin signaling plays an important role during osteogenic differentiation of hMSCs. Here, peptide-functionalized hydrogels were used to examine the role of α5β1 integrin signaling in inducing osteogenic differentiation in hMSCs. Further, the role of substrate elasticity was also studied. A thiolene chemistry was used to functionalize poly(ethylene glycol) hydrogels with a pendant peptide moieity, c(RRETAWA), as previous studies have shown that RRETAWA containing peptides bind to the α5β1 integrin with very high specificity. Notably, hMSC attachment to c(RRETAWA)-functionalized hydrogels was found to occur primarily through α5 integrins, as the number of attached cells was significantly reduced to ~20% upon blocking the α5 integrin during culture. To investigate the interplay between stiffness and c(RRETAWA) concentration, hydrogels were formulated with Young’s moduli of ~2 kPa (soft) and ~25 kPa (stiff) and c(RRETAWA) concentrations of 0.1 mM and 1 mM. Stiff substrates led to ~3.5 fold higher hMSC attachment and ~3 fold higher cell area in comparison to soft substrates. hMSCs formed robust and larger focal adhesions on stiff substrates at 1 mM c(RRETAWA) compared to soft substrates. Alkaline phosphatase (ALP) activity in hMSCs cultured on stiff gels at 0.1 mM and 1 mM c(RRETAWA) was increased 2.5 and 3.5 fold, respectively after 14 days in growth media. hMSCs did not show an increase in ALP activity when cultured on soft gels. Further, gene expression of osteogenic related genes, core binding factor-1, osteopontin and Collagen-1a at day 14 in hMSCs cultured on stiff gels at 1 mM c(RRETAWA) were increased 10, 7 and 4 fold, respectively, while on soft gels, gene expression was at basal levels. Collectively, these results demonstrate that the combination of high substrate stiffness and α5β1 integrin signaling stimulated by c(RRETAWA) is sufficient to induce osteogenic differentiation of hMSCs without requiring the addition of soluble factors.
机译:细胞外基质在控制人类间充质干细胞(hMSC)的生物学(包括分化)中起着至关重要的作用,而α5β1整合素信号在hMSC的成骨分化中起着重要的作用。在这里,肽功能化的水凝胶被用来检查α5β1整合素信号传导在诱导hMSCs成骨分化中的作用。此外,还研究了基材弹性的作用。由于以前的研究表明,含RRETAWA的肽以非常高的特异性结合到α5β1整联蛋白上,因此使用硫醇化学方法对具有悬垂肽部分c(RRETAWA)的聚乙二醇水凝胶进行功能化。值得注意的是,hMSC与c(RRETAWA)功能化水凝胶的附着主要是通过α5整合素发生的,因为在培养过程中阻断α5整合素后,附着细胞的数量显着减少至〜20%。为了研究硬度与c(RRETAWA)浓度之间的相互作用,配制了水凝胶,其杨氏模量约为2 kPa(软)和〜25 kPa(刚度),c(RRETAWA)的浓度为0.1 mM和1 mM。与软底物相比,硬底物导致hMSC附着力高约3.5倍,细胞面积高约3倍。与软质基材相比,hMSC在1 mM c(RRETAWA)的硬质基材上形成牢固且较大的粘着力。在生长培养基中放置14天后,在0.1 mM和1 mM c(RRETAWA)的硬质凝胶上培养的hMSC中的碱性磷酸酶(ALP)活性分别增加了2.5倍和3.5倍。在软凝胶上培养时,hMSC并未显示出ALP活性的增加。此外,在第1天在1 mM c(RRETAWA)的刚性凝胶上培养的hMSC中,成骨相关基因,核心结合因子-1,骨桥蛋白和胶原-1a的基因表达分别增加了10、7和4倍,而在软凝胶,基因表达处于基础水平。总的来说,这些结果表明,高底物刚度和c(RRETAWA)刺激的α5β1整联蛋白信号传导的组合足以诱导hMSC的成骨分化,而无需添加可溶性因子。

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