Steinbach K H, Raffler H, Pabst G, Fliedner T M
J Math Biol. 1980 Aug;10(1):1-12. doi: 10.1007/BF00276392.
The granulocyte cell renewal system of the dog is represented by a mathematical model consisting of the following compartments: The pool of pluripotential stem cells, the committed stem cell pool, divided into a blood and a bone marrow compartment, the proliferation pool, the maturation pool, the reserve pool and the blood pool of functional granulocytes. This chain of compartments is described by a system of non-linear differential equations. Cell losses anyplace in the system provoke increased production in all pools containing cells capable to divide. A reduced number of granulocytes in the blood pool stimulates production of a "granulocyte releasing factor" which mobilizes a rising number of cells to transit from the marrow reserve into the blood pool. The model was simulated on a digital computer. It was found to be capable to reproduce the steady state conditions and it also fits the data of two distinct experimental perturbations of the system both equally well. These perturbations are a loss of proliferating cells as it occurs after the administration of cytostatic drugs and losses of functional cells as they are induced by leukapheresis experiments of differing leukapheresis rates.
犬的粒细胞更新系统由一个数学模型表示,该模型由以下区室组成:多能干细胞池、定向干细胞池(分为血液和骨髓区室)、增殖池、成熟池、储备池和功能性粒细胞血池。这一系列区室由一个非线性微分方程组描述。系统中任何一处的细胞损失都会促使所有包含可分裂细胞的池中的细胞生成增加。血池中粒细胞数量减少会刺激“粒细胞释放因子”的产生,该因子促使越来越多的细胞从骨髓储备池转运至血池。该模型在数字计算机上进行了模拟。结果发现它能够重现稳态条件,并且同样很好地拟合了该系统两种不同实验性扰动的数据。这些扰动分别是在给予细胞抑制药物后发生的增殖细胞损失,以及不同白细胞去除率的白细胞去除实验所诱导的功能性细胞损失。