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ON STABILITY OF A COMBINED GLEEVEC AND IMMUNE MODEL IN CHRONIC LEUKEMIA: EXPLOITING DELAY SYSTEM STRUCTURE

机译:慢性白血病综合Gleevec和免疫模型的稳定性:利用延迟系统结构

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This paper focuses on the stability analysis of a delay-differential system encountered in modeling immune dynamics during Gleevec treatment for chronic myelogenous leukemia. A simple algorithm is proposed for the analysis of delay effects on the stability. The analysis shows that the model yields two fixed points, one stable and one unstable. The stable fixed point corresponds to some equilibrium solution in which the leukemia population is kept below the cytogenetic remission level. This result implies that, during Gleevec treatment, the resulting anti-leukemia immune response can serve to control the leukemia population. However, the rate of approach to the stable fixed point is very slow, indicating that the immune response is largely ineffective at driving the leukemia population towards the stable fixed point. Finally, a few remarks are made about possible treatment strategies that can be used to accelerate the approach of the leukemia and immune populations towards this stable equilibrium.
机译:本文重点介绍在慢性髓性白血病的Gleevec治疗期间遇到的免疫动力学遇到的延迟微分系统的稳定性分析。提出了一种简单的算法,用于分析稳定性的延迟影响。分析表明,该模型产生了两个固定点,一个稳定和一个不稳定。稳定的固定点对应于一些平衡溶液,其中白血病群体保持低于细胞遗传学缓解水平。该结果意味着,在Gleevec治疗期间,所得的抗白血病免疫应答可以用于控制白血病人群。然而,稳定的固定点的方法速度非常慢,表明免疫应答在将白血病群体朝向稳定的固定点驱动时基本上无效。最后,关于可能用于加速白血病和免疫群体朝向这种稳定平衡的方法的可能治疗策略进行了一些评论。

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