Department of Biomedical Engineering, Boston University, Boston, MA, USA.
Ann Biomed Eng. 2010 May;38(5):1815-25. doi: 10.1007/s10439-010-9970-0. Epub 2010 Feb 27.
Cell migration is a fundamental process that is crucial to a variety of physiological events. While traditional approaches have focused on two-dimensional (2D) systems, recent efforts have shifted to studying migration in three-dimensional (3D) matrices. A major distinction that has emerged is the increased importance of cell-matrix interactions in 3D environments. In particular, cell motility in 3D matrices is more dependent on matrix metalloproteinases (MMPs) to degrade steric obstacles than in 2D systems. In this study, we implement the effects of MMP-mediated proteolysis in a force-based computational model of 3D migration, testing two matrix ligand-MMP relationships that have been observed experimentally: linear and log-linear. The model for both scenarios predicts maximal motility at intermediate matrix ligand and MMP levels, with the linear case providing more physiologically compelling results. Recent experimental results suggesting MMP influence on integrin expression are also integrated into the model. While the biphasic behavior is retained, with MMP-integrin feedback peak cell speed is observed in a low ligand, high MMP regime instead of at intermediate ligand and MMP levels for both ligand-MMP relationships. The simulation provides insight into the expanding role of cell-matrix interactions in cell migration in 3D environments and has implications for cancer research.
细胞迁移是一种基本的过程,对各种生理事件都至关重要。虽然传统方法侧重于二维(2D)系统,但最近的研究重点已转移到研究三维(3D)基质中的迁移。一个主要的区别是细胞-基质相互作用在 3D 环境中的重要性增加。特别是,3D 基质中的细胞迁移更依赖于基质金属蛋白酶(MMPs)来降解空间障碍物,而不是在 2D 系统中。在这项研究中,我们在基于力的 3D 迁移计算模型中实现了 MMP 介导的蛋白水解的影响,测试了两种在实验中观察到的基质配体-MMP 关系:线性和对数线性。对于这两种情况的模型都预测了在中间基质配体和 MMP 水平下的最大迁移率,线性情况提供了更符合生理的结果。最近的实验结果表明 MMP 对整合素表达有影响,也被整合到模型中。虽然双相行为仍然存在,但在低配体、高 MMP 状态下观察到 MMP-整合素反馈峰值细胞速度,而不是在两种配体-MMP 关系下的中间配体和 MMP 水平。该模拟提供了对细胞-基质相互作用在 3D 环境中细胞迁移中扩展作用的深入了解,并对癌症研究具有重要意义。