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Two-way regulation between cells and aligned collagen fibrils: local 3D matrix formation and accelerated neural differentiation of human decidua parietalis placental stem cells

机译:细胞与对齐的胶原纤维之间的双向调节:局部3D基质形成和人壁蜕膜胎盘胎盘干细胞的加速神经分化

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摘要

It has been well established that an aligned matrix provides structural and signaling cues to guide cell polarization and cell fate decision. However, the modulation role of cells in matrix remodeling and the feedforward effect on stem cell differentiation have not been studied extensively. In this study, we report on the concerted changes of human decidua parietalis placental stem cells (hdpPSCs) and the highly ordered collagen fibril matrix in response to cell-matrix interaction. With high-resolution imaging, we found the hdpPSCs interacted with the matrix by deforming the cell shape, harvesting the nearby collagen fibrils, and reorganizing the fibrils around the cell body to transform a 2D matrix to a localized 3D matrix. Such a unique 3D matrix prompted high expression of β-1 integrin around the cell body that mediates and facilitates the stem cell differentiation toward neural cells. The study offers insights into the coordinated, dynamic changes at the cell-matrix interface and elucidates cell modulation of its matrix to establish structural and biochemical cues for effective cell growth and differentiation.
机译:公认的是,对准的矩阵提供结构和信号提示来指导细胞极化和细胞命运决定。但是,尚未广泛研究细胞在基质重塑中的调节作用以及对干细胞分化的前馈作用。在这项研究中,我们报告了人类蜕膜蜕膜胎盘干细胞(hdpPSCs)和高度有序的胶原原纤维基质对细胞-基质相互作用的一致变化。通过高分辨率成像,我们发现hdpPSC通过变形细胞形状,收集附近的胶原原纤维并重组细胞周围的原纤维以将2D矩阵转换为局部3D矩阵而与基质相互作用。这种独特的3D矩阵促使β-1整联蛋白在细胞周围高表达,介导并促进干细胞向神经细胞的分化。这项研究提供了对细胞-基质界面协调动态变化的见解,并阐明了其基质的细胞调节作用,从而为有效的细胞生长和分化建立了结构和生化线索。

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