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Modelling of Cell Division and Proliferation Control in Eukaryotic Cell Populations

机译:真核细胞群细胞分裂和增殖对照的建模

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Research in the biological sciences has tremendously increased our understanding of bacterial and mammalian cell populations. Simultaneously, considerable research has been undertaken into the development of mathematical models of important phenomena such as cell metabolism, cell cycle progression and signal transduction through various pathways. However, there is a dearth of mathematical models that integrate our understanding of these phenomena into a comprehensive model of these cells. To this end, in this paper, a first model is presented accounting for key aspects of cell biology such as the metabolism of substrate, the growth, division, differentiation and death of cells, as well as cell senescence and the extra-cellular regulation of these processes by signalling cascades. The various cellular phenomena are taken into consideration to facilitate a quantitative analysis of the interactions between these processes. Thus, this model represents a first step in the development of more detailed models of these cell populations. Such models will have wide-ranging applications from bioreactor design, optimisation and control, to the study of diseases and their cures.
机译:生物科学的研究大幅增加了对细菌和哺乳动物细胞群的理解。同时,已经进行了相当大的研究,以通过各种途径的重要现象,细胞周期进展和信号转导等重要现象的发展的发展。然而,有一种缺乏的数学模型,将我们的理解整合到这些细胞的综合模型中。为此,本文提出了第一模型,占细胞生物学的关键方面,例如底物的代谢,细胞的生长,分裂,分化和死亡,以及细胞衰老以及细胞的细胞调节这些过程通过信号级联。考虑各种细胞现象,以促进这些过程之间的相互作用的定量分析。因此,该模型代表了开发这些小区群体的更详细模型的第一步。这些模型将具有来自生物反应器设计,优化和控制的广泛应用,对疾病的研究及其治疗。

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