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多类型高尔顿-沃森过程作为源自干细胞的人类肿瘤细胞群体增殖模型:人类卵巢癌中干细胞自我更新概率的估计

Multi-type Galton-Watson process as a model for proliferating human tumour cell populations derived from stem cells: estimation of stem cell self-renewal probabilities in human ovarian carcinomas.

作者信息

Ciampi A, Kates L, Buick R, Kriukov Y, Till J E

出版信息

Cell Tissue Kinet. 1986 Mar;19(2):129-40. doi: 10.1111/j.1365-2184.1986.tb00723.x.

Abstract

A mathematical model for proliferation of tumour cell populations is developed. The cell population is assumed to be organized in a hierarchy of decreasing proliferative potential and increasing degree of differentiation. Using some elements of the theory of Multi-type Galton-Watson processes, a method is proposed for the estimation of Psr, the probability of self-renewal of tumour stem cells, from the experimental distribution of clonal unit sizes obtained in cell culture studies. Six data sets from patients with advanced adenocarcinoma of the ovary are used to demonstrate the method. Reasonable estimates are obtained, and the theoretical colony size distributions predicted by the model appear to be in good qualitative agreement with the experimental ones, and lend support to a stem cell model of tumour growth. The possible significance of Psr as a prognostic factor is briefly discussed.

摘要

建立了肿瘤细胞群体增殖的数学模型。假定细胞群体按增殖潜能递减和分化程度递增的层次结构组织。利用多类型高尔顿 - 沃森过程理论的一些元素,提出了一种从细胞培养研究中获得的克隆单位大小的实验分布来估计肿瘤干细胞自我更新概率Psr的方法。使用来自晚期卵巢腺癌患者的六个数据集来演示该方法。获得了合理的估计值,并且模型预测的理论集落大小分布似乎与实验分布在质量上有很好的一致性,这为肿瘤生长的干细胞模型提供了支持。简要讨论了Psr作为预后因素的可能意义。

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