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Analysis of Toxicity Effects from Molecular to Population Level: Circadian Oscillator Case Study

机译:从分子水平到总体水平的毒性效应分析:昼夜节律振荡器案例研究

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To analyze how toxic effects propagate from molecular to population level, a simple model of a circadian oscillator has been coupled with a cyanobacteria growth model. It has been assumed that the circadian oscillator synchronizes with light-dark environmental conditions and toxicants affect this synchronization reducing the population growth. Then dose-response curves have been developed. The results evidence that to understand toxic effects we have to focus our study on the interactions that a certain compound may have with proteins, and/or DNA, since the result of these interactions will determine the final mode of action at macroscopic level. Therefore an intermediate step for assessing toxic effects has been proposed.
机译:为了分析毒性作用如何从分子水平传播到种群水平,生物钟振荡器的简单模型已与蓝细菌生长模型结合在一起。已经假定昼夜节律振荡器与明暗环境条件同步,并且有毒物影响该同步,从而减少了种群的增长。然后制定了剂量反应曲线。结果证明,要了解毒性作用,我们必须将研究重点放在某种化合物可能与蛋白质和/或DNA的相互作用上,因为这些相互作用的结果将决定宏观水平的最终作用方式。因此,提出了评估毒性作用的中间步骤。

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