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Simulating plausible mechanisms for changing hepatic xenobiotic clearance patterns

机译:模拟改变肝异源清除模式的合理机制

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No concrete, causal, mechanistic theory is available to explain how different hepatic zonation patterns of P450 isozyme levels and hepatotoxicity emerge following dosing with different compounds. We used the synthetic method of modeling and simulation to discover, explore, and experimentally challenge a concrete mechanism that shows how and why biomimetic zonation patterns emerge and change within agent-based analogues. We hypothesized that those mechanisms have counterparts in rats. Mobile objects map to compounds. One analogue is comprised of a linear sequence of 20 identical, quasi-autonomous functional units called sinusoidal segments (SSs). SSs detect and respond to compound-generated response signals and the local level of a gradient. Each SS adapts to new information with the objective of improving efficiency (lowering costs). Upon compound exposure, analogues developed a variety of patterns that were strikingly similar to those reported in the literature.
机译:没有具体的,因果的,机械的理论可用来解释在使用不同的化合物后,P450同工酶水平的肝区划模式和肝毒性是如何产生的。我们使用建模和模拟的综合方法来发现,探索和实验挑战一种具体的机制,该机制显示了仿生分区模式在基于代理的类似物中如何出现以及为什么发生和发生变化。我们假设这些机制在大鼠中具有对应物。移动对象映射到化合物。一个类似物由20个相同的准自治功能单元(称为正弦曲线段(SSs))的线性序列组成。 SS检测并响应化合物生成的响应信号和局部梯度。每个SS均适应新信息,以提高效率(降低成本)。化合物暴露后,类似物会形成多种模式,与文献报道的模式极为相似。

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