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Heterogeneous Structure of Stem Cells Dynamics: Statistical Models and Quantitative Predictions

机译:干细胞动力学的异构结构:统计模型和定量预测

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摘要

Understanding stem cell (SC) population dynamics is essential for developing models that can be used in basic science and medicine, to aid in predicting cells fate. These models can be used as tools e.g. in studying patho-physiological events at the cellular and tissue level, predicting (mal)functions along the developmental course, and personalized regenerative medicine. Using time-lapsed imaging and statistical tools, we show that the dynamics of SC populations involve a heterogeneous structure consisting of multiple sub-population behaviors. Using non-Gaussian statistical approaches, we identify the co-existence of fast and slow dividing subpopulations, and quiescent cells, in stem cells from three species. The mathematical analysis also shows that, instead of developing independently, SCs exhibit a time-dependent fractal behavior as they interact with each other through molecular and tactile signals. These findings suggest that more sophisticated models of SC dynamics should view SC populations as a collective and avoid the simplifying homogeneity assumption by accounting for the presence of more than one dividing sub-population, and their multi-fractal characteristics.
机译:了解干细胞(SC)的种群动态对于开发可用于基础科学和医学的模型至关重要,有助于预测细胞命运。这些模型可以用作工具,例如研究细胞和组织水平的病理生理事件,预测发育过程中的(不良)功能以及个性化的再生医学。使用延时成像和统计工具,我们表明,SC种群的动力学涉及由多个亚种群行为组成的异质结构。使用非高斯统计方法,我们可以确定三种物种的干细胞中快速分裂和慢分裂亚群以及静止细胞的共存。数学分析还表明,SC并非独立发展,而是通过分子和触觉信号相互作用而表现出时间依赖性的分形行为。这些发现表明,更复杂的SC动力学模型应该将SC种群视为一个整体,并通过考虑存在多个划分的子种群及其多重分形特征来避免简化同质性假设。

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