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Bone metastasis treatment modeling via optimal control

机译:骨转移处理通过最佳控制进行造型

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摘要

Metastatic disease is a lethal stage of cancer progression. It is characterized by the spread of aberrant cells from a primary tumor to distant tissues like the bone. Several treatments are used to deal with bone metastases formation, but they are palliative since the disease is considered incurable. Computational and mathematical models are used to understand the underlying mechanisms of how bone metastasis evolves. In this way, new therapies aiming to reduce or eliminate the metastatic burden in the bone tissue may be proposed. We present an optimal control approach to analyze some common treatments for bone metastasis. In particular, we focus on denosumab treatment, an anti-resorptive therapy, and radiotherapy treatment which has a cell killing action. We base our work in a variant of an existing model introduced by Komarova. The new model incorporates a logistic equation in order to describe the bone metastasis evolution. We provide proofs of existence and uniqueness of solutions to the corresponding optimal control problems for each treatment. Moreover, we present some numerical simulations to analyze the effectiveness of both treatments when different interactions between cancer and bone cells occur. A discussion of the obtained results is provided.
机译:转移性疾病是癌症进展的致命阶段。其特征在于使异常细胞从原主肿瘤扩散到像骨骼的远处组织。几种治疗方法用于处理骨转移形成,但由于该疾病被认为是可恢复性的,因此它们是姑息性的。计算和数学模型用于了解骨转移如何发展的潜在机制。以这种方式,可以提出旨在减少或消除骨组织中转移负荷的新疗法。我们提出了一种最佳的控制方法来分析骨转移的一些常见治疗方法。特别是,我们专注于Denosumab治疗,抗复苏治疗和具有细胞杀灭作用的放射治疗。我们将我们的工作基于Komarova引入的现有模式的变体。新模型包含一个物流方程,以描述骨转移的进化。我们提供对每个治疗的相应最佳控制问题的解决方案存在和唯一性。此外,当发生癌症和骨细胞之间的不同相互作用时,我们展示了一些数值模拟以分析两种治疗的有效性。提供了对所得结果的讨论。

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