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Mesenchymal stem cell response to TGF-β1 in both 2D and 3D environments

机译:在2D和3D环境中,间充质干细胞对TGF-β1的反应

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Smooth muscle cells (SMC) are critical in stabilizing developing vascular networks, and transforming growth factor β1 (TGF-β1) has been shown to promote SMC differentiation from stem cells. Previously, our lab has developed a chemically modified fibrin-based hydrogel that induces endothelial cell (EC) phenotype and network formation from human mesenchymal stem cells (hMSCs) without exogenous cytokines. Additionally, we have shown that this hydrogel system is capable of releasing growth factors in a controlled manner. In the present work, the effects of TGF-β1 on hMSCs in both monolayer and fibrin-based gel culture systems were demonstrated. The objective was to enhance SMC properties through TGF-β1 signaling for vessel stability while maintaining EC gene expression and morphology. Proliferation was decreased with higher TGF-β1 concentration in both monolayer and 3D gel cultures. EC genes were predominantly downregulated in the presence of TGF-β1 in monolayer cultures, while SMC genes were generally upregulated. In fibrin-based gels, several SMC genes were significantly upregulated at high con-centrations of TGF-β1. Even at elevated TGF-β1 concentrations, no significant differences were seen in EC genes for hMSCs in gels compared to controls. Network formation and growth occurred in PEGylated fibrin gels loaded with TGF-β1 and were not significantly different from gels without loaded growth factor. Additionally, production of smooth muscle α-actin (SMA) was significantly increased in gels loaded with TGF-β1. These results demonstrate a simultaneous response of hMSCs to both the 3D biomatrix and cytokine signaling cues.
机译:平滑肌细胞(SMC)在稳定发育中的血管网络中至关重要,而转化生长因子β1(TGF-β1)已显示出可促进SMC从干细胞分化。以前,我们的实验室已经开发出一种化学修饰的基于纤维蛋白的水凝胶,可诱导人间充质干细胞(hMSCs)形成内皮细胞(EC)表型和网络形成,而无需外源性细胞因子。另外,我们已经表明该水凝胶系统能够以受控方式释放生长因子。在目前的工作中,在单层和基于纤维蛋白的凝胶培养系统中,都证明了TGF-β1对hMSC的作用。目的是通过TGF-β1信号传导增强SMC特性,以维持血管稳定,同时保持EC基因表达和形态。在单层和3D凝胶培养物中,随着TGF-β1浓度的升高,增殖减少。在单层培养中存在TGF-β1的情况下,EC基因主要被下调,而SMC基因通常被上调。在基于纤维蛋白的凝胶中,高浓度的TGF-β1会明显上调几个SMC基因。即使在升高的TGF-β1浓度下,与对照组相比,凝胶中hMSC的EC基因也没有发现显着差异。网络形成和生长发生在负载TGF-β1的PEG化纤维蛋白凝胶中,与没有负载生长因子的凝胶没有显着差异。此外,在装有TGF-β1的凝胶中,平滑肌α-肌动蛋白(SMA)的产生显着增加。这些结果证明了hMSC对3D生物基质和细胞因子信号提示信号的同时响应。

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