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Non-straight cell edges are important to invasion and engulfment as demonstrated by cell mechanics model

机译:细胞力学模型表明非直的细胞边缘对浸润和吞噬很重要

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摘要

Computational models of cell–cell mechanical interactions typically simulate sorting and certain other motions well, but as demands on these models continue to grow, discrepancies between the cell shapes, contact angles and behaviours they predict and those that occur in real cells have come under increased scrutiny. To investigate whether these discrepancies are a direct result of the straight cell–cell edges generally assumed in these models, we developed a finite element model that approximates cell boundaries using polylines with an arbitrary number of segments. We then compared the predictions of otherwise identical polyline and monoline (straight-edge) models in a variety of scenarios, including annealing, single- and multi-cell engulfment, sorting, and two forms of mixing—invasion and checkerboard pattern formation. Keeping cell–cell edges straight influences cell motion, cell shape, contact angle, and boundary length, especially in cases where one cell type is pulled between or around cells of a different type, as in engulfment or invasion. These differences arise because monoline cells have restricted deformation modes. Polyline cells do not face these restrictions, and with as few as three segments per edge yielded realistic edge shapes and contact angle errors one-tenth of those produced by monoline models, making them considerably more suitable for situations where angles and shapes matter, such as validation of cellular force–inference techniques. The findings suggest that non-straight cell edges are important both in modelling and in nature.Electronic supplementary materialThe online version of this article (doi:10.1007/s10237-015-0697-6) contains supplementary material, which is available to authorized users.
机译:细胞-细胞机械相互作用的计算模型通常可以很好地模拟分类和某些其他运动,但是随着对这些模型的需求不断增长,它们预测的细胞形状,接触角和行为之间的差异以及在真实细胞中发生的行为之间的差异正在减少。仔细检查。为了研究这些差异是否是这些模型中通常假定的单元格直边的直接结果,我们开发了一个有限元模型,该模型使用具有任意数量线段的折线来近似单元格边界。然后,我们在各种情况下比较了其他情况下相同的折线和单线(直边)模型的预测,包括退火,单细胞和多细胞吞噬,排序以及两种混合形式(入侵和棋盘图案形成)。保持细胞间边缘平直会影响细胞运动,细胞形状,接触角和边界长度,特别是在一种细胞类型在另一种类型的细胞之间或周围被拉动的情况下,如吞噬或入侵。这些差异的出现是因为单线单元的变形模式受到限制。折线单元不受这些限制,每个边缘只有三段,可以产生逼真的边缘形状和接触角误差,是单线模型产生的十分之一,这使得它们非常适合角度和形状很重要的情况,例如细胞力推断技术的验证。研究结果表明,非直线的细胞边缘对于建模和自然界都很重要。电子补充材料本文的在线版本(doi:10.1007 / s10237-015-0697-6)包含补充材料,授权用户可以使用。

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