School of Mechanical, Aerospace, and Materials Engineering, Southern Illinois University Carbondale, Carbondale, IL 62901, USA.
CREOL, The College of Optics and Photonics, University of Central Florida, Orlando, FL 32816, USA.
Cells. 2023 Jan 15;12(2):326. doi: 10.3390/cells12020326.
Mechanoregulation of cell-extracellular matrix (ECM) interactions are crucial for dictating pluripotent stem cell differentiation. However, not all pluripotent cells respond homogeneously which results in heterogeneous cell populations. When cells, such as mouse epiblast stem cells (EpiSCs), are cultured in clusters, the heterogeneity effect during differentiation is even more pronounced. While past studies implicated variations in signaling pathways to be the root cause of heterogeneity, the biophysical aspects of differentiation have not been thoroughly considered. Here, we demonstrate that the heterogeneity of EpiSC differentiation arises from differences in the colony size and varying degrees of interactions between cells within the colonies and the ECM. Confocal imaging demonstrates that cells in the colony periphery established good contact with the surface while the cells in the colony center were separated by an average of 1-2 µm from the surface. Traction force measurements of the cells within the EpiSC colonies show that peripheral cells generate large tractions while the colony center cells do not. A finite element modeling of EpiSC colonies shows that tractions generated by the cells at the colony periphery lift off the colony center preventing the colony center from undergoing differentiation. Together, our results demonstrate a biophysical regulation of heterogeneous EpiSC colony differentiation.
细胞-细胞外基质(ECM)相互作用的机械调节对于决定多能干细胞分化至关重要。然而,并非所有多能细胞都均匀响应,这导致了细胞群体的异质性。当细胞(如小鼠胚胎外干细胞(EpiSCs))在簇中培养时,分化过程中的异质性效应更为明显。虽然过去的研究表明信号通路的变化是异质性的根本原因,但分化的生物物理方面尚未得到彻底考虑。在这里,我们证明 EpiSC 分化的异质性源于集落大小的差异以及集落内细胞与 ECM 之间相互作用的不同程度。共聚焦成像表明,集落边缘的细胞与表面建立了良好的接触,而集落中心的细胞与表面平均分离 1-2 µm。EpiSC 集落内细胞的牵引力测量表明,外围细胞产生较大的牵引力,而集落中心细胞则没有。EpiSC 集落的有限元模型表明,集落边缘的细胞产生的牵引力将集落中心抬起,防止集落中心发生分化。总之,我们的结果表明,EpiSC 集落异质性分化受到生物物理调节。