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造血作用的数学模型:II. 周期性中性粒细胞减少症

A mathematical model of hematopoiesis: II. Cyclical neutropenia.

作者信息

Colijn Caroline, Mackey Michael C

机构信息

Department of Mathematics and Centre for Nonlinear Dynamics, McGill University, 3655 Promenade Sir William Osler, Montreal, QC, Canada H3G 1Y6.

出版信息

J Theor Biol. 2005 Nov 21;237(2):133-46. doi: 10.1016/j.jtbi.2005.03.034. Epub 2005 Jun 21.

Abstract

Cyclical neutropenia is a dynamical disease of the hematopoietic system marked by an oscillation in circulating leukocyte (e.g. neutrophil) numbers to near zero levels and then back to normal. This oscillation is also mirrored in the platelets and reticulocytes which oscillate with the same period. Cyclical neutropenia has an animal counterpart in the grey collie. Using the mathematical model of the hematopoietic system of Colijn and Mackey [A mathematical model of hematopoiesis: I. Periodic chronic myelogenous leukemia. Companion paper to the present paper.] we have determined what parameters are necessary to mimic laboratory and clinical data on untreated grey collies and humans, and also what changes in these parameters are necessary to fit data during treatment with granulocyte colony stimulating factor (G-CSF). Compared to the normal steady-state values, we found that the major parameter changes that mimic untreated cyclical neutropenia correspond to a decreased amplification (increased apoptosis) within the proliferating neutrophil precursor compartment, and a decrease in the maximal rate of re-entry into the proliferative phase of the stem cell compartment. For the data obtained during G-CSF treatment, good fits were obtained only when parameters were altered that would imply that G-CSF led to higher amplification (lower rate of apoptosis) in the proliferating neutrophil precursors, and a elevated rate of differentiation into the neutrophil line.

摘要

周期性中性粒细胞减少症是一种造血系统的动态疾病,其特征是循环白细胞(如中性粒细胞)数量振荡至接近零水平,然后恢复正常。这种振荡也反映在血小板和网织红细胞中,它们以相同的周期振荡。在灰色柯利犬中存在与周期性中性粒细胞减少症相对应的动物疾病。使用Colijn和Mackey的造血系统数学模型[造血的数学模型:I. 周期性慢性粒细胞白血病。本文的配套论文。],我们确定了模拟未治疗的灰色柯利犬和人类的实验室及临床数据所需的参数,以及在用粒细胞集落刺激因子(G-CSF)治疗期间拟合数据所需的这些参数的变化。与正常稳态值相比,我们发现模拟未治疗的周期性中性粒细胞减少症的主要参数变化对应于增殖性中性粒细胞前体区室内扩增减少(凋亡增加),以及干细胞区室重新进入增殖期的最大速率降低。对于G-CSF治疗期间获得的数据,只有当参数改变时才能得到良好拟合,这意味着G-CSF导致增殖性中性粒细胞前体中扩增更高(凋亡率更低),以及向中性粒细胞系分化的速率升高。

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