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在定向红系祖细胞中加入自我更新能力可提高红细胞生成数学模型的生物学相关性。

Adding self-renewal in committed erythroid progenitors improves the biological relevance of a mathematical model of erythropoiesis.

作者信息

Crauste Fabien, Pujo-Menjouet Laurent, Génieys Stéphane, Molina Clément, Gandrillon Olivier

机构信息

Université de Lyon, Université Lyon 1, CNRS, UMR 5208, Institut Camille Jordan, Btiment du Doyen Jean Braconnier, 43, blvd du 11 novembre 1918, F - 69222 Villeurbanne Cedex, France.

出版信息

J Theor Biol. 2008 Jan 21;250(2):322-38. doi: 10.1016/j.jtbi.2007.09.041. Epub 2007 Oct 6.

Abstract

We propose a new mathematical model of erythropoiesis that takes a positive feedback of erythrocytes on progenitor apoptosis into account, and incorporates a negative feedback of erythrocytes on progenitor self-renewal. The resulting model is a system of age-structured equations that reduces to a system of delay differential equations where the delays account for progenitor compartment duration and cell cycle length. We compare this model with experimental data on an induced-anemia in mice that exhibit damped oscillations of the hematocrit before it returns to equilibrium. When we assume no self-renewal of progenitors, we obtain an inaccurate fitting of the model with experimental data. Adding self-renewal in the progenitor compartment gives better approximations, with the main features of experimental data correctly fitted. Our results indicate the importance of progenitor self-renewal in the modelling of erythropoiesis. Moreover, the model makes testable predictions on the lifespan of erythrocytes confronted to a severe anemia, and on the progenitors behavior.

摘要

我们提出了一种新的红细胞生成数学模型,该模型考虑了红细胞对祖细胞凋亡的正反馈,并纳入了红细胞对祖细胞自我更新的负反馈。由此产生的模型是一个年龄结构方程组,它简化为一个延迟微分方程组,其中延迟反映了祖细胞区室持续时间和细胞周期长度。我们将该模型与小鼠诱导性贫血的实验数据进行比较,这些数据显示血细胞比容在恢复平衡之前呈现出阻尼振荡。当我们假设祖细胞没有自我更新时,模型与实验数据的拟合不准确。在祖细胞区室中加入自我更新能得到更好的近似结果,实验数据的主要特征得到了正确拟合。我们的结果表明祖细胞自我更新在红细胞生成建模中的重要性。此外,该模型对严重贫血情况下红细胞的寿命以及祖细胞的行为做出了可检验的预测。

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