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Dynamical modeling of chronic myeloid leukemia progression and the development of mutations

机译:慢性粒细胞白血病进展和突变发展的动力学模型

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Mathematical models have already been developed to describe the dynamics of the chronic myeloid leukemia (CML). However, most of them mainly focus on the short term dynamics and response to the treatment with drugs such as imatinib or the relapse upon cessation of treatment. In this paper, we aim to study the dynamics of CML which represents the first human cancer for the molecularly targeted therapy again. First, we propose a new mathematical model of CML which based on the known biology knowledges. And then we analyze its qualitative and dynamical properties. Combining the clinical data and theoretical analysis, we demonstrate that our model is biologically plausible and also computationally viable. Second, we demonstrate that this model can characterize the dynamics of the CML infection and the development of mutation, and is also validated by clinical data.
机译:已经开发出数学模型来描述慢性粒细胞白血病(CML)的动力学。但是,它们中的大多数主要集中于短期动态和对伊马替尼等药物治疗的反应或停止治疗后的复发。在本文中,我们旨在研究CML的动力学,CML代表了人类首次针对分子靶向治疗的癌症。首先,我们基于已知的生物学知识提出了一种新的CML数学模型。然后我们分析其定性和动力学性质。结合临床数据和理论分析,我们证明我们的模型在生物学上是合理的,并且在计算上是可行的。其次,我们证明了该模型可以表征CML感染的动力学和突变的发展,并且还通过临床数据进行了验证。

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