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Scaling Dynamic Response and Destructive Metabolism in an Immunosurveillant Anti-Tumor System Modulated by Different External Periodic Interventions

机译:在不同外部定期干预的免疫监测抗肿瘤系统中扩展动态响应和破坏性代谢

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摘要

On the basis of two universal power-law scaling laws, i.e. the scaling dynamic hysteresis in physics and the allometric scaling metabolism in biosystem, we studied the dynamic response and the evolution of an immunosurveillant anti-tumor system subjected to a periodic external intervention, which is equivalent to the scheme of a radiotherapy or chemotherapy, within the framework of the growth dynamics of tumor. Under the modulation of either an abrupt or a gradual change external intervention, the population density of tumors exhibits a dynamic hysteresis to the intervention. The area of dynamic hysteresis loop characterizes a sort of dissipative-therapeutic relationship of the dynamic responding of treated tumors with the dose consumption of accumulated external intervention per cycle of therapy. Scaling the area of dynamic hysteresis loops against the intensity of an external intervention, we deduced a characteristic quantity which was defined as the theoretical therapeutic effectiveness of treated tumor and related with the destructive metabolism of tumor under treatment. The calculated dose-effectiveness profiles, namely the dose cumulant per cycle of intervention versus the therapeutic effectiveness, could be well scaled into a universal quadratic formula regardless of either an abrupt or a gradual change intervention involved. We present a new concept, i.e., the therapy-effect matrix and the dose cumulant matrix, to expound the new finding observed in the growth and regression dynamics of a modulated anti-tumor system.
机译:基于两个普遍的幂律定标定律,即物理学中的定标动态滞后和生物系统中的异形定标代谢,我们研究了受到周期性外部干预的免疫监视抗肿瘤系统的动态响应和演化。在肿瘤生长动力学的框架内,相当于放射疗法或化学疗法的方案。在突然或逐渐变化的外部干预的调节下,肿瘤的种群密度表现出对干预的动态滞后。动态磁滞回线的区域表征了治疗肿瘤的动态响应与每个治疗周期累积的外部干预的剂量消耗之间的耗散-治疗关系。相对于外部干预的强度,按比例缩放动态磁滞回线的面积,我们推导出了一个特征量,该特征量被定义为治疗的肿瘤的理论治疗效果,并与治疗中的肿瘤的破坏性代谢有关。计算得出的剂量效果图,即每个干预周期的剂量累积量与治疗效果之间的关系,可以很好地按比例缩放成一个通用的二次公式,而不管涉及的是突然的还是逐步的变化干预。我们提出了一种新的概念,即治疗效果矩阵和剂量累积矩阵,以阐明在调制抗肿瘤系统的生长和回归动力学中观察到的新发现。

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