Tumour-Immune Interaction Model with Cell Cycle Effects Including G0 Phase

IF 0.3 Q4 MATHEMATICS
N. Awang, N. Maan, Dasuki Sul’ain
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引用次数: 0

Abstract

Tumour cells behave differently than normal cells in the body. They grow and divide in an uncontrolled manner (actively proliferating) and fail to respond to signal. However, there are cells that become inactive and reside in quiescent phase (G0). These cells are known as quiescence cells that are less sensitive to drug treatments (radiotherapy and chemotherapy) than actively proliferation cells. This paper proposes a new mathematical model that describes the interaction of tumour growth and immune response by considering tumour population that is divided into three different phases namely interphase, mitosis and G0. The model consists of a system of delay differential equations where the delay, represents the time for tumour cell to reside interphase before entering mitosis phase. Stability analysis of the equilibrium points of the system was performed to determine the dynamics behaviour of system. Result showed that the tumour population depends on number of tumour cells that enter active (interphase and mitosis) and G0phases. This study is important for treatment planning since tumour cell can resist treatment when they refuge in a quiescent state.
包括G0期在内的细胞周期效应的肿瘤-免疫相互作用模型
肿瘤细胞的行为与体内的正常细胞不同。它们以不受控制的方式生长和分裂(积极增殖),对信号没有反应。然而,也有细胞变得不活跃并停留在静止期(G0)。这些细胞被称为静止细胞,它们对药物治疗(放疗和化疗)的敏感性低于活跃增殖细胞。本文提出了一个新的数学模型来描述肿瘤生长与免疫反应的相互作用,该模型考虑了肿瘤群体分为间期、有丝分裂和G0三个不同的阶段。该模型由一个延迟微分方程系统组成,其中延迟表示肿瘤细胞在进入有丝分裂期之前停留在间期的时间。对系统的平衡点进行了稳定性分析,以确定系统的动力学行为。结果表明,肿瘤的数量取决于肿瘤细胞进入活跃期(间期和有丝分裂)和0期的数量。这项研究对治疗计划具有重要意义,因为当肿瘤细胞处于静止状态时,它们可以抵抗治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Matematika
Matematika MATHEMATICS-
自引率
25.00%
发文量
0
审稿时长
24 weeks
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