Allena R, Scianna M, Preziosi L
Arts et Metiers ParisTech, LBM/Institut de Biomecanique Humaine Georges Charpak, 151 bd de l'Hopital, 75013 Paris, France.
Dipartimento di Scienze Mathematiche, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Torino, Italy.
Math Biosci. 2016 May;275:57-70. doi: 10.1016/j.mbs.2016.02.011. Epub 2016 Mar 9.
Cell migration is a fundamental biological phenomenon during which cells sense their surroundings and respond to different types of signals. In presence of durotaxis, cells preferentially crawl from soft to stiff substrates by reorganizing their cytoskeleton from an isotropic to an anisotropic distribution of actin filaments. In the present paper, we propose a Cellular Potts Model to simulate single cell migration over flat substrates with variable stiffness. We have tested five configurations: (i) a substrate including a soft and a stiff region, (ii) a soft substrate including two parallel stiff stripes, (iii) a substrate made of successive stripes with increasing stiffness to create a gradient and (iv) a stiff substrate with four embedded soft squares. For each simulation, we have evaluated the morphology of the cell, the distance covered, the spreading area and the migration speed. We have then compared the numerical results to specific experimental observations showing a consistent agreement.
细胞迁移是一种基本的生物学现象,在此过程中细胞感知周围环境并对不同类型的信号做出反应。在存在趋硬性的情况下,细胞通过将其细胞骨架从各向同性的肌动蛋白丝分布重新组织为各向异性分布,优先从柔软底物向坚硬底物爬行。在本文中,我们提出了一种细胞Potts模型,以模拟单个细胞在具有可变刚度的平坦底物上的迁移。我们测试了五种配置:(i)一个包含柔软区域和坚硬区域的底物,(ii)一个包含两条平行坚硬条纹的柔软底物,(iii)一个由刚度逐渐增加的连续条纹制成的底物以创建梯度,以及(iv)一个带有四个嵌入式软方块的坚硬底物。对于每次模拟,我们评估了细胞的形态、覆盖的距离、铺展面积和迁移速度。然后,我们将数值结果与特定的实验观察结果进行了比较,显示出一致的一致性。