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首页> 外文期刊>Journal of biomedical materials research, Part A >Substrate Mineralization Stimulates Focal Adhesion Contact Redistribution and Cell Motility of Bone Marrow Stromal Cells
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Substrate Mineralization Stimulates Focal Adhesion Contact Redistribution and Cell Motility of Bone Marrow Stromal Cells

机译:基质矿化刺激骨髓基质细胞的局灶性粘附接触再分布和细胞运动性。

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Understanding the mechanisms of substrate based control of cell function is critical to the design of biomaterials. Cells interact with their extracellular matrix through cell adhesion contacts. We have previously described the self assembly of bone-like mineral onto an organic template and have shown that these biomimetic surfaces lead to an increased volume fraction of bone regenerated in vivo. In the present study, we compared the distribution of cell adhesion contacts, cell spreading, and cell motility of murine bone marrow stromal cells (BMSC) on mineralized vs. nonmineralized substrates. We developed a new approach for quantification of cell-material interactions and demonstrated that cell adhesion contacts on mineralized substrates were distributed throughout the cell surface contacting the substrate, whereas on nonmineralized substrates cell adhesion contacts were present near the cell periphery. We propose that mineralized substrates stimulate the predominant expression of fibrillar contacts, and nonmineralized substrates stimulate expression of focal adhesion contacts. Cell motility assays with colloidal gold demonstrated a statistically significant decrease in the average phagoki-netic index of migrating cells on mineralized vs. nonmineralized substrates after 90 min of cell seeding. We propose that the physical-chemical properties of the substrate, altered by mineralization, cause expression of specific types of cell contacts and, as a result, modify molecular mechanisms responsible for cell spreading, motility, and possibly differentiation
机译:了解基于基质的细胞功能控制机制对于生物材料的设计至关重要。细胞通过细胞粘附接触与其细胞外基质相互作用。我们之前已经描述了骨样矿物质到有机模板上的自组装,并显示出这些仿生表面导致体内再生的骨体积分数增加。在本研究中,我们比较了在矿化基质和非矿化基质上鼠骨髓基质细胞(BMSC)的细胞粘附接触,细胞扩散和细胞运动的分布。我们开发了一种量化细胞-材料相互作用的新方法,并证明了矿化基质上的细胞粘附接触分布在整个与基质接触的细胞表面,而在非矿化基质上,细胞粘附接触存在于细胞外围附近。我们建议矿化的底物刺激纤维状接触的主要表达,而非矿化的底物刺激粘着性接触的表达。用胶态金进行的细胞运动性分析表明,在植入细胞90分钟后,矿化基质与非矿化基质上迁移细胞的平均吞噬指数显着降低。我们建议,通过矿化作用改变底物的物理化学性质,引起特定类型的细胞接触的表达,并因此改变负责细胞扩散,运动性和可能分化的分子机制。

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