Three-dimensional matrices often contain highly structured adhesive tracks that require cells to turn corners and bridge non-adhesive areas. Here, we investigate these complex processes using micropatterned cell adhesive frames. Spreading kinetics on these matrices depend strongly on initial adhesive position and are predicted by a cellular Potts model (CPM), which reflects a balance between adhesion and intracellular tension. As cells spread, new stress fibers (SFs) assemble periodically and parallel to the leading edge, with spatial intervals of â¼2.5 μm, temporal intervals of â¼15 min, and characteristic lifetimes of â¼50 min. By incorporating these rules into the CPM, we can successfully predict SF network architecture. Moreover, we observe broadly similar behavior when we culture cells on arrays of discrete collagen fibers. Our findings show that ECM geometry and initial cell position strongly determine cell spreading and that cells encode a memory of their spreading history through SF network organization.
Extracellular Matrix Geometry and Initial Adhesive Position Determine Stress Fiber Network Organization during Cell Spreading.
细胞外基质几何形状和初始粘附位置决定细胞铺展过程中应力纤维网络的组织结构
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作者:Kassianidou Elena, Probst Dimitri, Jäger Julia, Lee Stacey, Roguet Anne-Lou, Schwarz Ulrich Sebastian, Kumar Sanjay
| 期刊: | Cell Reports | 影响因子: | 6.900 |
| 时间: | 2019 | 起止号: | 2019 May 7; 27(6):1897-1909 |
| doi: | 10.1016/j.celrep.2019.04.035 | 研究方向: | 细胞生物学 |
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