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MODELING OF COLLECTIVE CELL BEHAVIORS INTERACTING WITH EXTRACELLULAR MATRIX USING DUAL FACETED LINEARIZATION

机译:双重面线性化建模与细胞外基质相互作用的集体细胞行为

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Cells interacting over an extracellular matrix (ECM) exhibit emergent behaviors, which are often observably different from single-cell dynamics. Fibroblasts embedded in a 3-D ECM, for example, compact the surrounding gel and generate an anisotropic strain field, which cannot be observed in single cell-induced gel compaction. This emergent matrix behavior results from collective intracellular mechanical interaction and is crucial to explain the large deformations and mechanical tensions that occur during embryogenesis, tissue development and wound healing. Prediction of multi-cellular interactions entails nonlinear dynamic simulation, which is prohibitively complex to compute using first principles especially as the number of cells increase. Here, we introduce a new methodology for predicting nonlinear behaviors of multiple cells interacting mechanically through a 3D ECM. In the proposed method, we first apply Dual-Faceted Linearization to nonlinear dynamic systems describing cell/matrix behavior. Using this unique linearization method, the original nonlinear state equations can be expressed with a pair of linear dynamic equations by augmenting the independent state variables with auxiliary variables which are nonlinearly dependent on the original states. Furthermore, we can find a reduced order latent space representation of the dynamic equations by orthogonal projection onto the basis of a lower dimensional linear manifold within the augmented variable space. Once converted to latent variable equations, we superpose multiple dynamic systems to predict their collective behaviors. The method is computationally efficient and accurate as demonstrated through its application for prediction of emergent cell induced ECM compaction.
机译:在细胞外基质(ECM)上相互作用的细胞表现出新出现的行为,通常可观察到与单细胞动力学不同。例如,嵌入在3-D ECM中的成纤维细胞会压紧周围的凝胶并产生各向异性应变场,这在单细胞诱导的凝胶压实中是无法观察到的。这种出现的基质行为是由细胞内的机械相互作用引起的,对于解释在胚胎发生,组织发育和伤口愈合过程中发生的大变形和机械张力至关重要。对多细胞相互作用的预测需要非线性动态仿真,使用第一原理进行计算特别是随着细胞数量的增加,这是极其复杂的。在这里,我们介绍了一种预测通过3D ECM机械交互的多个单元格的非线性行为的新方法。在提出的方法中,我们首先将Dual-Faceted线性化应用于描述单元格/矩阵行为的非线性动态系统。使用这种独特的线性化方法,可以通过使用独立于非线性的依赖于原始状态的辅助变量来扩充独立状态变量,从而用一对线性动力学方程式来表达原始非线性状态方程。此外,我们可以在增强的可变空间内的低维线性流形的基础上,通过正交投影找到动力学方程的降阶潜在空间表示。一旦转换为潜变量方程,我们将叠加多个动态系统以预测它们的集体行为。该方法在计算上有效且准确,如其在预测突发细胞诱导的ECM压实中的应用所证明的那样。

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