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造血祖细胞分化的随机分支模型。

Stochastic branching model for hemopoietic progenitor cell differentiation.

作者信息

Kurnit D M, Matthysse S, Papayannopoulou T, Stamatoyannopoulos G

出版信息

J Cell Physiol. 1985 Apr;123(1):55-63. doi: 10.1002/jcp.1041230110.

Abstract

We present algebraic expressions describing the predictions of a stochastic branching model for differentiation of hemopoietic progenitor cells. The model assumes that there is a fixed probability, p (0 less than or equal to p less than or equal to 1), that commitment to a differentiative event occurs per progenitor cell division for each daughter cell. The model describes properties of in vitro hemopoietic cell differentiation including the population structure at the time the first progenitor cell becomes committed, the number of committed progenitor cells engendered by a single progenitor cell, and the probability of eventual commitment of all daughter cells derived from a single progenitor or stem cell. Application of the model to experimental data obtained from erythroid cultures suggests that the observed data can be explained by the stochastic branching model alone without making the deterministic assumption that there is a differentiative hierarchy in the lineage of the progenitors of erythropoiesis (BFU-E). The qualitative and quantitative aspects of the proposed stochastic model are discussed in conjunction with other analogous stochastic branching models.

摘要

我们给出了描述造血祖细胞分化的随机分支模型预测结果的代数表达式。该模型假定,每个祖细胞分裂时,每个子细胞发生分化事件的固定概率为p(0≤p≤1)。该模型描述了体外造血细胞分化的特性,包括第一个祖细胞开始分化时的群体结构、单个祖细胞产生的已分化祖细胞数量,以及源自单个祖细胞或干细胞的所有子细胞最终分化的概率。将该模型应用于从红系培养物中获得的实验数据表明,仅通过随机分支模型就能解释观察到的数据,而无需做出确定性假设,即红细胞生成祖细胞(BFU-E)谱系中存在分化层次结构。结合其他类似的随机分支模型,对所提出的随机模型的定性和定量方面进行了讨论。

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