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首页> 外文期刊>Journal of Mathematical Biology >From single cells to tissue architecture-a bottom-up approach to modelling the spatio-temporal organisation of complex multi-cellular systems
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From single cells to tissue architecture-a bottom-up approach to modelling the spatio-temporal organisation of complex multi-cellular systems

机译:从单细胞到组织结构-一种自下而上的方法来建模复杂的多细胞系统的时空组织

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摘要

Collective phenomena in multi-cellular assemblies can be approached on different levels of complexity. Here, we discuss a number of mathematical models which consider the dynamics of each individual cell, so-called agent-based or individual-based models (IBMs). As a special feature, these models allow to account for intracellular decision processes which are triggered by biomechanical cell-cell or cell-matrix interactions. We discuss their impact on the growth and homeostasis of multi-cellular systems as simulated by lattice-free models. Our results demonstrate that cell polarisation subsequent to cell-cell contact formation can be a source of stability in epithelial monolayers. Stroma contact-dependent regulation of tumour cell proliferation and migration is shown to result in invasion dynamics in accordance with the migrating cancer stem cell hypothesis. However, we demonstrate that different regulation mechanisms can equally well comply with present experimental results. Thus, we suggest a panel of experimental studies for the in-depth validation of the model assumptions.
机译:多细胞装配体中的集体现象可以以不同的复杂度进行研究。在这里,我们讨论了许多数学模型,这些模型考虑了每个单独单元的动态,所谓的基于代理的模型或基于个人的模型(IBM)。作为一个特殊功能,这些模型可以解释由生物力学细胞间或细胞间相互作用引起的细胞内决策过程。我们讨论了它们对无细胞模型模拟的多细胞系统生长和动态平衡的影响。我们的结果表明,细胞-细胞接触形成后的细胞极化可能是上皮单层细胞稳定的来源。根据迁移的癌症干细胞假说,基质接触对肿瘤细胞增殖和迁移的调节被证明可导致侵袭动力学。但是,我们证明了不同的调节机制同样可以很好地符合目前的实验结果。因此,我们建议进行一组实验研究,以深入验证模型假设。

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