1. Alteration of mesenchymal stem cells polarity by laminar shear stimulation promoting β-catenin nuclear localization
- Author
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Wei Tse Hsu, Oscar K. Lee, Yu-Ju Chen, Chun A. Changou, Tzu Hao Chang, Chia Li Han, Meng Hua Yen, Wei Ta Chen, Jennifer Hui Chun Ho, and Ji-Yen Cheng
- Subjects
Angiogenesis ,Biophysics ,Bioengineering ,02 engineering and technology ,Cell junction ,Biomaterials ,03 medical and health sciences ,Paracrine signalling ,Human Umbilical Vein Endothelial Cells ,Humans ,Protein Interaction Maps ,Wnt Signaling Pathway ,Cells, Cultured ,beta Catenin ,030304 developmental biology ,Cell Nucleus ,0303 health sciences ,Chemistry ,Mesenchymal stem cell ,Wnt signaling pathway ,Cell Polarity ,Mesenchymal Stem Cells ,021001 nanoscience & nanotechnology ,Actins ,Cell biology ,Endothelial stem cell ,Mechanics of Materials ,Catenin ,Ceramics and Composites ,Mechanosensitive channels ,Stress, Mechanical ,0210 nano-technology - Abstract
Mesenchymal stem cell (MSC) is mechanosensitive and the respond to mechanical force is pattern specific. We previously reported that oscillatory shear stress at 0.5 ± 4 dyne/cm 2 guided MSCs polarity vertical to net flow direction before apolaric stage at 30 min resulting in phosphorylation of β-catenin and inhibition of Wnt signaling . This time, we explored laminar shear stress (LS) at 0.5 dyne/cm 2 polarized MSCs by guiding F-actin orientation parallel to the flow direction before apolarity at 30 min accompanied with activation of Wnt signaling. Time-dependent microarray analysis supported cell-cell junctional complex of MSCs was the major mechanosensor on MSCs to respond 0.5 dyne/cm 2 LS. Three-dimensional immunofluorescence image confirmed LS promoting β-catenin nuclear localization during 15 min to 1 h with a peak at 30 min. Functional analysis of proteomic study on MSC with 30 min LS stimulation indicated that upregulation of β-catenin downstream proteins related to cardiovascular development, endothelial cell protection and angiogenesis . Conditioned medium from MSCs with 30 min LS stimulation improved the viability of human endothelial cells from oxidative damage . In conclusion, 0.5 dyne/cm 2 LS on MSCs for 30 min guides MSCs lack of polarity and promotes β-catenin nuclear translocation favoring Wnt activation and paracrine cardiovascular support.
- Published
- 2019