Department of Biomedical Engineering, Cornell University, Ithaca, New York, United States of America.
PLoS One. 2012;7(11):e50190. doi: 10.1371/journal.pone.0050190. Epub 2012 Nov 21.
The following study provides new insight into how surface topography dictates directed collective epithelial cell sheet growth through the guidance of individual cell movement. Collective cell behavior of migrating human corneal limbal-epithelial cell sheets were studied on highly biocompatible flat and micro-patterned silk film surfaces. The silk film edge topography guided the migratory direction of individual cells making up the collective epithelial sheet, which resulted in a 75% increase in total culture elongation. This was due to a 3-fold decrease in cell sheet migration rate efficiency for movement perpendicular to the topography edge. Individual cell migration direction is preferred in the parallel approach to the edge topography where localization of cytoskeletal proteins to the topography's edge region is reduced, which results in the directed growth of the collective epithelial sheet. Findings indicate customized biomaterial surfaces may be created to direct both the migration rate and direction of tissue epithelialization.
以下研究深入探讨了表面形貌如何通过指导单个细胞的运动来控制定向的上皮细胞集体铺展。在高度生物相容的平整和微图案丝膜表面上,研究了迁移的人眼角膜缘上皮细胞集体的集体细胞行为。丝膜边缘形貌引导构成集体上皮片的单个细胞的迁移方向,这导致总培养物伸长率增加了 75%。这是由于垂直于形貌边缘的细胞片迁移率效率降低了 3 倍。当单个细胞迁移方向与边缘形貌平行时,细胞会优先迁移,此时细胞骨架蛋白定位到形貌边缘区域的数量减少,从而导致集体上皮片的定向生长。研究结果表明,可以创建定制的生物材料表面来指导组织上皮化的迁移率和方向。