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Discrete Models of Autocrine Cell Communication in Epithelial Layers

机译:上皮层自分泌细胞通讯的离散模型

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摘要

Pattern formation in epithelial layers heavily relies on cell communication by secreted ligands. Whereas the experimentally observed signaling patterns can be visualized at single-cell resolution, a biophysical framework for their interpretation is currently lacking. To this end, we develop a family of discrete models of cell communication in epithelial layers. The models are based on the introduction of cell-to-cell coupling coefficients that characterize the spatial range of intercellular signaling by diffusing ligands. We derive the coupling coefficients as functions of geometric, cellular, and molecular parameters of the ligand transport problem. Using these coupling coefficients, we analyze a nonlinear model of positive feedback between ligand release and binding. In particular, we study criteria of existence of the patterns consisting of clusters of a few signaling cells, as well as the onset of signal propagation. We use our model to interpret recent experimental studies of the EGFR/Rhomboid/Spitz module in Drosophila development.
机译:上皮层中的模式形成很大程度上依赖于分泌的配体之间的细胞通讯。尽管可以在单细胞分辨率下可视化实验观察到的信号传导模式,但目前缺乏对其进行解释的生物物理框架。为此,我们开发了上皮层细胞通信的离散模型家族。该模型基于引入的细胞间耦合系数,这些系数通过扩散配体来表征细胞间信号传导的空间范围。我们推导耦合系数作为配体运输问题的几何,细胞和分子参数的函数。使用这些耦合系数,我们分析了配体释放和结合之间的正反馈非线性模型。特别是,我们研究了由几个信号单元簇组成的模式的存在标准,以及信号传播的开始。我们使用我们的模型来解释果蝇发展中EGFR /菱形/斯皮茨模块的最新实验研究。

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