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Cell Elongation and Migration on Asymmetric Grooved Topography

机译:不对称沟槽形貌上的细胞伸长和迁移

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Spreading, elongation and migration are well-recognized processes that occur when a cell first adheres to a substrate. These processes facilitate an individual cell's ability to explore and further associate with its surroundings. Previous studies have shown that placing cells on grooved substrates causes elongation and migration to occur parallel to the pattern itself. However, there has been limited research examining whether cells exhibit a chiral bias during their initial elongation and migration on a substrate. Information such as this can be used in formulating effective procedures to predict movement of cells, which can lead to improvements in cellular based therapies such as tissue engineering and regenerative medicine. Using a PDMS casting of grooved surfaces coated in fibronectin, C2C12 mouse myoblasts were seeded with a low density and observed over the first 24 hours of exposure to the patterned surface using phase contrast microscopy and time lapse imaging techniques. In this preliminary experiment, no significant bias was discovered as to a "left/right" preference in initial cell elongation and migration.
机译:铺展,伸长和迁移是众所周知的过程,发生在细胞首次粘附到基质上时。这些过程有助于单个细胞探索周围环境并与周围环境进一步联系的能力。先前的研究表明,将单元放置在带凹槽的基板上会导致与图案本身平行地发生伸长和迁移。但是,研究细胞在其最初的延伸和在底物上迁移过程中是否表现出手征性偏差的研究还很有限。这样的信息可以用于制定有效的程序来预测细胞的运动,从而可以改善基于细胞的疗法,例如组织工程学和再生医学。使用用纤连蛋白包被的沟槽表面的PDMS铸件,以低密度播种C2C12小鼠成肌细胞,并使用相差显微镜和延时成像技术在暴露于图案化表面的最初24小时内进行观察。在该初步实验中,未发现初始细胞延长和迁移中“左/右”偏好的明显偏倚。

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