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Matrix feedback enables diverse higher-order patterning of the extracellular matrix

机译:矩阵反馈可实现细胞外矩阵的多种高阶模式

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摘要

The higher-order patterning of extra-cellular matrix in normal and pathological tissues has profound consequences on tissue function. Whilst studies have documented both how fibroblasts create and maintain individual matrix fibers and how cell migration is altered by the fibers they interact with, a model unifying these two aspects of tissue organization is lacking. Here we use computational modelling to understand the effect of this interconnectivity between fibroblasts and matrix at the mesoscale level. We created a unique adaptation to the Vicsek flocking model to include feedback from a second layer representing the matrix, and use experimentation to parameterize our model and validate model-driven hypotheses. Our two-layer model demonstrates that feedback between fibroblasts and matrix increases matrix diversity creating higher-order patterns. The model can quantitatively recapitulate matrix patterns of tissues in vivo. Cells follow matrix fibers irrespective of when the matrix fibers were deposited, resulting in feedback with the matrix acting as temporal ‘memory’ to collective behaviour, which creates diversity in topology. We also establish conditions under which matrix can be remodelled from one pattern to another. Our model elucidates how simple rules defining fibroblast-matrix interactions are sufficient to generate complex tissue patterns.
机译:正常和病理组织中细胞外基质的高阶构图对组织功能具有深远的影响。虽然研究已经记录了成纤维细胞如何产生和维持单个基质纤维,以及与它们相互作用的纤维如何改变细胞迁移,但仍缺乏统一组织组织这两个方面的模型。在这里,我们使用计算模型来了解中尺度水平上成纤维细胞与基质之间这种相互联系的影响。我们对Vicsek植绒模型进行了独特的修改,以包含来自代表矩阵的第二层的反馈,并使用实验对模型进行参数化并验证模型驱动的假设。我们的两层模型表明,成纤维细胞和基质之间的反馈增加了基质多样性,从而形成了更高阶的模式。该模型可以定量地概括体内组织的基质模式。不管基质纤维何时沉积,细胞都遵循基质纤维,从而导致基质反馈作为集体行为的暂时“记忆”,从而形成拓扑多样性。我们还建立了可将矩阵从一种模式重塑到另一种模式的条件。我们的模型阐明了定义成纤维细胞-基质相互作用的简单规则如何足以产生复杂的组织模式。

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