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从细胞群体模型到肿瘤控制概率:包括细胞周期效应。

From cell population models to tumor control probability: including cell cycle effects.

机构信息

Centre for Mathematical Biology, Department of Mathematical & Statistical Sciences, University of Alberta, Edmonton, AB, Canada.

出版信息

Acta Oncol. 2010 Nov;49(8):1315-23. doi: 10.3109/02841861003631487. Epub 2010 Sep 15.

Abstract

BACKGROUND

Classical expressions for the tumor control probability (TCP) are based on models for the survival fraction of cancer cells after radiation treatment. We focus on the derivation of expressions for TCP from dynamic cell population models. In particular, we derive a TCP formula for a generalized cell population model that includes the cell cycle by considering a compartment of actively proliferating cells and a compartment of quiescent cells, with the quiescent cells being less sensitive to radiation than the actively proliferating cells.

METHODS

We generalize previously derived TCP formulas of Zaider and Minerbo and of Dawson and Hillen to derive a TCP formula from our cell population model. We then use six prostate cancer treatment protocols as a case study to show how our TCP formula works and how the cell cycle affects the tumor treatment.

RESULTS

The TCP formulas of Zaider-Minerbo and of Dawson-Hillen are special cases of the TCP formula presented here. The former one represents the case with no quiescent cells while the latter one assumes that all newly born cells enter a quiescent cell phase before becoming active. From our case study, we observe that inclusion of the cell cycle lowers the TCP.

CONCLUSION

The cell cycle can be understood as the sequestration of cells in the quiescent compartment, where they are less sensitive to radiation. We suggest that our model can be used in combination with synchronization methods to optimize treatment timing.

摘要

背景

经典的肿瘤控制概率(TCP)表达式基于辐射治疗后癌细胞存活分数的模型。我们专注于从动态细胞群体模型推导出 TCP 表达式。特别是,我们通过考虑活跃增殖细胞的隔室和静止细胞的隔室,来推导包括细胞周期的广义细胞群体模型的 TCP 公式,其中静止细胞比活跃增殖细胞对辐射的敏感性更低。

方法

我们将 Zaider 和 Minerbo 以及 Dawson 和 Hillen 之前推导出的 TCP 公式推广,从我们的细胞群体模型推导出一个 TCP 公式。然后,我们使用六个前列腺癌治疗方案作为案例研究,展示我们的 TCP 公式如何工作以及细胞周期如何影响肿瘤治疗。

结果

Zaider-Minerbo 和 Dawson-Hillen 的 TCP 公式是这里提出的 TCP 公式的特例。前者表示没有静止细胞的情况,而后者则假设所有新出生的细胞在变得活跃之前都进入静止细胞阶段。从我们的案例研究中,我们观察到细胞周期的加入降低了 TCP。

结论

细胞周期可以理解为将细胞隔离在静止隔室中,使其对辐射的敏感性降低。我们建议我们的模型可以与同步方法结合使用,以优化治疗时机。

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