Department of Engineering Physics, University of Wisconsin-Madison, Madison, WI, USA.
Sci Data. 2020 Jun 24;7(1):197. doi: 10.1038/s41597-020-0540-5.
Cells move in collective groups in biological processes such as wound healing, morphogenesis, and cancer metastasis. How active cell forces produce the motion in collective cell migration is still unclear. Many theoretical models have been introduced to elucidate the relationship between the cell's active forces and different observations about the collective motion such as collective swirls, oscillations, and rearrangements. Though many models share the common feature of balancing forces in the cell layer, the specific relationships between force and motion vary among the different models, which can lead to different conclusions. Simultaneous experimental measurements of force and motion can aid in testing assumptions and predictions of the theoretical models. Here, we provide time-lapse images of cells in 1 mm circular islands, which are used to compute cell velocities, cell-substrate tractions, and monolayer stresses. Additional data are included from experiments that perturbed cell number density and actomyosin contractility. We expect this data set to be useful to researchers interested in force and motion in collective cell migration.
细胞在生物过程中以集体形式移动,例如伤口愈合、形态发生和癌症转移。活跃的细胞力如何产生集体细胞迁移的运动仍不清楚。许多理论模型被引入以阐明细胞的活跃力与集体运动的不同观察结果之间的关系,例如集体漩涡、振荡和重新排列。尽管许多模型具有平衡细胞层中力的共同特征,但不同模型之间力与运动之间的具体关系有所不同,这可能导致不同的结论。同时测量力和运动的实验可以帮助测试理论模型的假设和预测。在这里,我们提供了 1mm 圆形岛屿中细胞的延时图像,用于计算细胞速度、细胞-基底物牵引力和单层应力。还包括了来自干扰细胞数密度和肌动球蛋白收缩性的实验的数据。我们希望这个数据集对有兴趣研究集体细胞迁移中力和运动的研究人员有用。