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Spatio-temporal structure of cell distribution in cortical Bone Multicellular Units: a mathematical model.

机译:皮质骨多细胞单位中细胞分布的时空结构:数学模型。

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Bone remodelling maintains the functionality of skeletal tissue by locally coordinating bone-resorbing cells (osteoclasts) and bone-forming cells (osteoblasts) in the form of Bone Multicellular Units (BMUs). Understanding the emergence of such structured units out of the complex network of biochemical interactions between bone cells is essential to extend our fundamental knowledge of normal bone physiology and its disorders. To this end, we propose a spatio-temporal continuum model that integrates some of the most important interaction pathways currently known to exist between cells of the osteoblastic and osteoclastic lineage. This mathematical model allows us to test the significance and completeness of these pathways based on their ability to reproduce the spatio-temporal dynamics of individual BMUs. We show that under suitable conditions, the experimentally observed structured cell distribution of cortical BMUs is retrieved. The proposed model admits travelling-wave-like solutions for the cell densities with tightly organised profiles, corresponding to the progression of a single remodelling BMU. The shapes of these spatial profiles within the travelling structure can be linked to the intrinsic parameters of the model such as differentiation and apoptosis rates for bone cells. In addition to the cell distribution, the spatial distribution of regulatory factors can also be calculated. This provides new insights on how different regulatory factors exert their action on bone cells leading to cellular spatial and temporal segregation, and functional coordination.
机译:骨重塑通过以骨多细胞单位(BMU)的形式局部协调骨吸收细胞(破骨细胞)和骨形成细胞(成骨细胞)来维持骨骼组织的功能。从骨骼细胞之间生化相互作用的复杂网络中了解这种结构单元的出现对于扩展我们对正常骨骼生理学及其病症的基本知识至关重要。为此,我们提出了一个时空连续体模型,该模型整合了目前已知存在于成骨细胞和破骨细胞谱系细胞之间的一些最重要的相互作用途径。这个数学模型使我们能够基于这些路径重现单个BMU的时空动态的能力来测试这些路径的重要性和完整性。我们显示,在合适的条件下,可以恢复实验观察到的皮质BMU的结构化细胞分布。所提出的模型允许具有紧密组织轮廓的细胞密度的行波状解,对应于单个重塑BMU的进展。这些行进结构内的空间轮廓的形状可以与模型的固有参数关联,例如骨细胞的分化和凋亡率。除了细胞分布,还可以计算调节因子的空间分布。这提供了有关不同调节因子如何对骨细胞发挥作用从而导致细胞时空分离和功能协调的新见解。

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