Pan Yunbei, D'Orsogna Maria R, Tang Min, Stiehl Thomas, Chou Tom
Department of Computational Medicine, UCLA, Los Angeles, CA, United States.
Department of Mathematics, California State University at Northridge, Los Angeles, CA, United States.
Front Syst Biol. 2023 Feb 9;3:893366. doi: 10.3389/fsysb.2023.893366. eCollection 2023.
Hematopoiesis has been studied stem cell labeling using barcodes, viral integration sites (VISs), or methods. Subsequent proliferation and differentiation preserve the tag identity, thus defining a clone of mature cells across multiple cell type or lineages. By tracking the population of clones, measured within samples taken at discrete time points, we infer physiological parameters associated with a hybrid stochastic-deterministic mathematical model of hematopoiesis. We analyze clone population data from Koelle et al. (Koelle et al., 2017) and compare the states of clones (mean and variance of their abundances) and the state-space density of clones with the corresponding quantities predicted from our model. Comparing our model to the tagged granulocyte populations, we find parameters (stem cell carrying capacity, stem cell differentiation rates, and the proliferative potential of progenitor cells, and sample sizes) that provide reasonable fits in three out of four animals. Even though some observed features cannot be quantitatively reproduced by our model, our analyses provides insight into how model parameters influence the underlying mechanisms in hematopoiesis. We discuss additional mechanisms not incorporated in our model.
造血作用已通过使用条形码、病毒整合位点(VISs)或其他方法进行干细胞标记来研究。随后的增殖和分化保留了标签身份,从而定义了跨多种细胞类型或谱系的成熟细胞克隆。通过追踪在离散时间点采集的样本中测量的克隆群体,我们推断与造血作用的混合随机 - 确定性数学模型相关的生理参数。我们分析了来自科勒等人(Koelle等人,2017年)的克隆群体数据,并将克隆的状态(其丰度的均值和方差)以及克隆的状态空间密度与我们模型预测的相应数量进行比较。将我们的模型与标记的粒细胞群体进行比较,我们发现了一些参数(干细胞承载能力、干细胞分化率、祖细胞的增殖潜力以及样本大小),这些参数在四只动物中的三只中提供了合理的拟合。尽管我们的模型无法定量再现一些观察到的特征,但我们的分析为模型参数如何影响造血作用的潜在机制提供了见解。我们讨论了未纳入我们模型的其他机制。