Department of Biomedical Engineering, Rowan University, Glassboro, NJ, 08028, USA.
The New York Stem Cell Foundation Research Institute, New York, NY, 10019, USA.
Sci Rep. 2022 May 19;12(1):8483. doi: 10.1038/s41598-022-12143-2.
The clinical translation of mesenchymal stem cells (MSCs) is limited by population heterogeneity and inconsistent responses to engineered signals. Specifically, the extent in which MSCs respond to mechanical cues varies significantly across MSC lines. Although induced pluripotent stem cells (iPSCs) have recently emerged as a novel cell source for creating highly homogeneous MSC (iMSC) lines, cellular mechanosensing of iMSCs on engineered materials with defined mechanics is not well understood. Here, we tested the mechanosensing properties of three human iMSC lines derived from iPSCs generated using a fully automated platform. Stiffness-driven changes in morphology were comparable between MSCs and iMSCs cultured atop hydrogels of different stiffness. However, contrary to tissue derived MSCs, no significant changes in iMSC morphology were observed between iMSC lines atop different stiffness hydrogels, demonstrating a consistent response to mechanical signals. Further, stiffness-driven changes in mechanosensitive biomarkers were more pronounced in iMSCs than MSCs, which shows that iMSCs are more adaptive and responsive to mechanical cues than MSCs. This study reports that iMSCs are a promising stem cell source for basic and applied research due to their homogeneity and high sensitivity to engineered mechanical signals.
间充质干细胞(MSCs)的临床转化受到群体异质性和对工程化信号不一致响应的限制。具体来说,MSCs 对机械线索的响应程度在 MSC 系之间存在显著差异。尽管诱导多能干细胞(iPSCs)最近作为一种新型细胞来源出现,用于创建高度同质的 MSC(iMSC)系,但对于具有明确定义力学特性的工程材料上 iMSC 的细胞力学感知仍了解甚少。在这里,我们测试了三种源自使用全自动平台生成的 iPSCs 的人 iMSC 系的力学感知特性。在不同硬度的水凝胶上培养的 MSC 和 iMSC 之间,形态的刚度驱动变化具有可比性。然而,与组织来源的 MSC 不同,在不同硬度的水凝胶上,iMSC 系之间的 iMSC 形态没有观察到明显变化,表明对机械信号的一致响应。此外,iMSC 中的机械敏感生物标志物的刚度驱动变化比 MSC 更明显,这表明 iMSC 比 MSC 更适应和响应机械线索。这项研究表明,由于 iMSC 的均一性和对工程化机械信号的高灵敏度,它们是基础和应用研究的有前途的干细胞来源。