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Modeling Dose-response at Low Dose: A Systems Biology Approach for Ionization Radiation

机译:低剂量时的剂量反应模型:电离辐射的系统生物学方法

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摘要

For ionization radiation (IR) induced cancer, a linear non-threshold (LNT) model at very low doses is the default used by a number of national and international organizations and in regulatory law. This default denies any positive benefit from any level of exposure. However, experimental observations and theoretical biology have found that both linear and J-shaped IR dose-response curves can exist at those very low doses. We develop low dose J-shaped dose-response, based on systems biology, and thus justify its use regarding exposure to IR. This approach incorporates detailed, molecular and cellular descriptions of biological/toxicological mechanisms to develop a dose-response model through a set of nonlinear, differential equations describing the signaling pathways and biochemical mechanisms of cell cycle checkpoint, apoptosis, and tumor incidence due to IR. This approach yields a J-shaped dose response curve while showing where LNT behaviors are likely to occur. The results confirm the hypothesis of the J-shaped dose response curve: the main reason is that, at low-doses of IR, cells stimulate protective systems through a longer cell arrest time per unit of IR dose. We suggest that the policy implications of this approach are an increasingly correct way to deal with precautionary measures in public health.
机译:对于电离辐射(IR)诱发的癌症,许多国家和国际组织以及法规均默认使用非常低剂量的线性非阈值(LNT)模型。此默认值拒绝任何级别的暴露都带来任何积极好处。但是,实验观察和理论生物学发现,线性和J形IR剂量反应曲线可以在非常低的剂量下存在。基于系统生物学,我们开发了低剂量J形剂量反应,因此证明了其在暴露于IR时的合理性。该方法结合了生物学/毒理学机理的详细分子和细胞描述,以通过一组非线性的微分方程式建立剂量反应模型,该方程式描述了细胞周期检查点,细胞凋亡和IR引起的肿瘤发生的信号传导途径和生化机制。这种方法会产生一个J形的剂量反应曲线,同时显示出LNT行为可能发生的位置。结果证实了J形剂量反应曲线的假设:主要原因是,在低剂量IR下,细胞通过每单位IR剂量更长的细胞停滞时间来刺激保护系统。我们建议,这种方法的政策含义是处理公共卫生中预防措施的一种越来越正确的方法。

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