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Modeling cell apoptosis for simulating three-dimensional multicellular morphogenesis based on a reversible network reconnection framework

机译:基于可逆网络重新连接框架的细胞凋亡建模,以模拟三维多细胞形态发生

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Morphogenesis in multicellular organisms is accompanied by apoptotic cell behaviors: cell shrinkage and cell disappearance. The mechanical effects of these behaviors are spatiotemporally regulated within multicellular dynamics to achieve proper tissue sizes and shapes in three-dimensional (3D) space. To analyze 3D multicellular dynamics, 3D vertex models have been suggested, in which a reversible network reconnection (RNR) model has successfully expressed 3D cell rearrangements during large deformations. To analyze the effects of apoptotic cell behaviors on 3D multicellular morphogenesis, we modeled cell apoptosis based on the RNR model framework. Cell shrinkage was modeled by the potential energy as a function of individual cell times during the apoptotic phase. Cell disappearance was modeled by merging neighboring polyhedrons at their boundary surface according to the topological rules of the RNR model. To establish that the apoptotic cell behaviors could be expressed as modeled, we simulated morphogenesis driven by cell apoptosis in two types of tissue topology: 3D monolayer cell sheet and 3D compacted cell aggregate. In both types of tissue topology, the numerical simulations successfully illustrated that cell aggregates gradually shrank because of successive cell apoptosis. During tissue shrinkage, the number of cells in aggregates decreased while maintaining individual cell size and shape. Moreover, in case of localizing apoptotic cells within a part of the 3D monolayer cell aggregate, the cell apoptosis caused the global tissue bending by pulling on surrounding cells. In case of localizing apoptotic cells on the surface of the 3D compacted cell aggregate, the cell apoptosis caused successive, directional cell rearrangements from the inside to the surface. Thus, the proposed model successfully provided a basis for expressing apoptotic cell behaviors during 3D multicellular morphogenesis based on an RNR model framework.
机译:多细胞生物中的形态发生伴随着凋亡细胞行为:细胞萎缩和细胞消失。这些行为的机械效应在多细胞动力学中时空调节,以在三维(3D)空间中获得合适的组织大小和形状。为了分析3D多细胞动力学,提出了3D顶点模型,其中可逆网络重新连接(RNR)模型已成功表达了大变形期间的3D细胞重排。为了分析凋亡细胞行为对3D多细胞形态发生的影响,我们基于RNR模型框架对细胞凋亡进行了建模。细胞凋亡是通过在凋亡阶段将势能作为单个细胞时间的函数来建模的。根据RNR模型的拓扑规则,通过合并相邻多面体的边界表面来模拟细胞消失。为了确定凋亡细胞的行为可以通过建模来表达,我们在两种类型的组织拓扑结构中模拟了由细胞凋亡驱动的形态发生:3D单层细胞片和3D紧密细胞聚集体。在两种类型的组织拓扑结构中,数值模拟成功地说明了由于连续的细胞凋亡,细胞聚集体逐渐收缩。在组织收缩期间,聚集物中的细胞数量减少,同时保持单个细胞的大小和形状。此外,在将凋亡细胞定位在3D单层细胞聚集体的一部分内的情况下,细胞凋亡会通过牵拉周围的细胞而引起整体组织弯曲。如果将凋亡细胞定位在3D压缩的细胞聚集体的表面,则细胞凋亡会导致细胞从内向表面连续的定向细胞重排。因此,所提出的模型成功地提供了基于RNR模型框架表达3D多细胞形态发生过程中凋亡细胞行为的基础。

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