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首页> 外文期刊>Biomaterials >Dynamic quantitative visualization of single cell alignment and migration and matrix remodeling in 3-D collagen hydrogels under mechanical force.
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Dynamic quantitative visualization of single cell alignment and migration and matrix remodeling in 3-D collagen hydrogels under mechanical force.

机译:动态定量可视化在机械力作用下3-D胶原水凝胶中单细胞排列和迁移以及基质重塑。

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We developed a live imaging system enabling dynamic visualization of single cell alignment induced by external mechanical force in a 3-D collagen matrix. The alignment dynamics and migration of smooth muscle cells (SMCs) were studied by time lapse differential interference contrast and/or phase contrast microscopy. Fluorescent and reflection confocal microcopy were used to study the SMC morphology and the microscale collagen matrix remodeling induced by SMCs. A custom developed program was used to quantify the cell migration and matrix remodeling. Our system enables cell concentration-independent alignment eliminating cell-to-cell interference and enables dynamic cell tracking, high magnification observation and rapid cell alignment accomplished in a few hours compared to days in traditional models. We observed that cells sense and response to the mechanical signal before cell spreading. Under mechanical stretch the migration directionality index of SMCs is 46.3% more than those cells without external stretch; the dynamic direction of cell protrusion is aligned to that of the mechanical force; SMCs showed directional matrix remodeling and the alignment index calculated from the matrix in front of cell protrusions is about 3 fold of that adjacent to cell bodies. Our results indicate that the mechanism of cell alignment is directional cell protrusion. Mechano-sensing, directionality in cell protrusion dynamics, cell migration and matrix remodeling are highly integrated. Our system provides a platform for studying the role of mechanical force on the cell matrix interactions and thus finds strategies to optimize selected properties of engineered tissues.
机译:我们开发了一种实时成像系统,能够动态可视化外部机械力在3-D胶原蛋白基质中诱导的单细胞排列。通过延时微分干涉对比和/或相衬显微镜研究了平滑肌细胞(SMCs)的排列动力学和迁移。荧光和共聚焦显微镜用于研究SMC的形态和SMC诱导的微尺度胶原基质重塑。使用定制开发的程序来量化细胞迁移和基质重塑。与传统模型中的几天相比,我们的系统能够实现与细胞浓度无关的比对,从而消除了细胞与细胞之间的干扰,并且能够在数小时内完成动态细胞追踪,高倍观察和快速细胞比对。我们观察到细胞在细胞扩散之前会感知并响应机械信号。在机械拉伸下,SMCs的迁移方向指数比没有外部拉伸的细胞高46.3%。细胞突起的动态方向与机械力的方向一致; SMCs表现出方向性的矩阵重塑,并且根据细胞突起前的矩阵计算出的比对指数约为邻近细胞体的3倍。我们的结果表明细胞排列的机制是定向细胞突出。机械感测,细胞突起动力学的方向性,细胞迁移和基质重塑高度集成。我们的系统为研究机械力在细胞基质相互作用中的作用提供了一个平台,从而找到了优化工程组织选定特性的策略。

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