辐射处理细胞中siRNA对p53的调控:模拟研究

K. Puszyński, R. Jaksik, A. Świerniak
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引用次数: 16

摘要

电离辐射激活了多种细胞内机制,这些机制负责维持适当的细胞功能或激活细胞凋亡,从而从群体中消除受损细胞。这种诱导细胞死亡的机制被广泛应用于放射治疗,以消除癌细胞,尽管在某些情况下,由于恶性细胞分子调节机制的畸变导致细胞放射阻力增加,这种机制受到高度限制。尽管放疗剂量与凋亡癌细胞数量呈正相关,但由于副作用广泛,放疗必须受到限制。因此,额外的控制信号,其作用将是最大限度地提高癌细胞的死亡率,同时尽量减少辐射剂量和潜在的副作用是值得考虑的。在这项工作中,我们展示了模拟研究的结果,显示了小干扰RNA (siRNA)单基因调控的可能性,可以增加p53信号通路异常的恶性细胞的放射敏感性,p53信号通路负责DNA损伤依赖性凋亡。通过阻断p53抑制剂Mdm2的产生,放疗后的癌细胞被推入凋亡状态,达到通常只有高剂量辐射才能达到的水平。所提出的方法基于源自实验验证的调节事件的模拟研究,涉及放射治疗剂量限制的基本问题之一,如将显示的那样,可以通过使用适当的基于siRNA的控制机制部分避免。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regulation of p53 by siRNA in radiation treated cells: Simulation studies
Ionizing radiation activates a large variety of intracellular mechanisms responsible for maintaining appropriate cell functionality or activation of apoptosis which eliminates damaged cells from the population. The mechanism of such induced cellular death is widely used in radiotherapy in order to eliminate cancer cells, although in some cases it is highly limited by increased cellular radio-resistance due to aberrations in molecular regulation mechanisms of malignant cells. Despite the positive correlation between the radiation dose and the number of apoptotic cancer cells, radiation has to be limited because of extensive side effects. Therefore, additional control signals whose role will be to maximize the cancer cells death-ratio while minimizing the radiation dose and by that the potential side effects are worth considering. In this work we present the results of simulation studies showing possibilities of single gene regulation by small interfering RNA (siRNA) that can increase radio-sensitivity of malignant cells showing aberrations in the p53 signaling pathway, responsible for DNA damage-dependant apoptosis. By blocking the production of the p53 inhibitor Mdm2, radiation treated cancer cells are pushed into the apoptotic state on a level normally achievable only with high radiation doses. The presented approach, based on a simulation study originating from experimentally validated regulatory events, concerns one of the basic problems of radiotherapy dosage limitations, which, as will be shown, can be partially avoided by using the appropriate siRNA based control mechanism.
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