Department of Mechanical and Aerospace Engineering.
Department of Mechanical and Aerospace Engineering; Department of Biomedical Engineering, New York University, Brooklyn, New York.
Biophys J. 2019 Nov 19;117(10):1795-1804. doi: 10.1016/j.bpj.2019.10.015. Epub 2019 Oct 23.
Cells in vivo encounter and exert forces as they interact with the extracellular matrix (ECM) and neighboring cells during migration. These mechanical forces play crucial roles in regulating cell migratory behaviors. Although a variety of studies have focused on describing single-cell or the collective cell migration behaviors, a fully mechanistic understanding of how the cell-cell (intercellular) and cell-ECM (extracellular) traction forces individually and cooperatively regulate single-cell migration and coordinate multicellular movement in a cellular monolayer is still lacking. Here, we developed an integrated experimental and analytical system to examine both the intercellular and extracellular traction forces acting on individual cells within an endothelial cell colony as well as their roles in guiding cell migratory behaviors (i.e., cell translation and rotation). Combined with force, multipole, and moment analysis, our results revealed that traction force dominates in regulating cell active translation, whereas intercellular force actively modulates cell rotation. Our findings advance the understanding of the intricacies of cell-cell and cell-ECM forces in regulating cellular migratory behaviors that occur during the monolayer development and may yield deeper insights into the single-cell dynamic behaviors during tissue development, embryogenesis, and wound healing.
细胞在体内迁移过程中与细胞外基质(ECM)和相邻细胞相互作用时会遇到并施加力。这些机械力在调节细胞迁移行为方面起着至关重要的作用。尽管许多研究都集中于描述单细胞或集体细胞迁移行为,但对于细胞-细胞(细胞间)和细胞-ECM(细胞外)牵引力如何单独和协同调节单细胞迁移以及协调细胞单层中的多细胞运动,仍缺乏全面的力学理解。在这里,我们开发了一个集成的实验和分析系统,以研究内皮细胞群体中单个细胞上的细胞间和细胞外牵引力及其在指导细胞迁移行为(即细胞平移和旋转)中的作用。结合力、多极和力矩分析,我们的结果表明牵引力在调节细胞主动平移中起主导作用,而细胞间力则积极调节细胞旋转。我们的发现增进了对细胞间和细胞-ECM 力在调节细胞迁移行为中的复杂性的理解,这些行为发生在单层发育过程中,可能深入了解组织发育、胚胎发生和伤口愈合过程中单细胞的动态行为。