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Modeling the activity of the dopamine signaling pathway by combination of analog electrical circuit and mathematical approaches

机译:模拟电路和数学方法组合模拟多巴胺信号通路的活性

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摘要

This paper demonstrates the application of the system biology principles on the example of the dopamine signaling pathway in neurons. Presented model is based on two approaches – cytomorphic electronic circuits and mathematical modeling. Transcription and phosphorylation of DARPP-32 was modeled by analog circuit, based on well-known approaches presented in [1]. It was shown that application of circuit helps to receive signal oscillations that close to described ones in real biological systems. This combination on the one hand gives possibility to simplify calculations, on another to show this signaling pathway dynamics. The expected effect of changes in the functioning of calcium channels is considered, and the mathematical model of the interaction of system components is proposed. The average frequency of calcium current oscillations due to the presence of dopamine was 30 Hz in presented model, that is consistent with the literature, where the frequency of such oscillations is up to several tens of Hz. All presented results shows good correlation with known data, which already published today.
机译:本文展示了系统生物学原理在神经元中多巴胺信号通路的实施例中的应用。呈现的模型基于两种方法 - 细胞素电子电路和数学建模。基于[1]中呈现的众所周知的方法,通过模拟电路进行DARPP-32的转录和磷酸化。结果表明,电路的应用有助于接收靠近真实生物系统中所述的信号振荡。一方面的这种组合可以提供简化计算的可能性,以显示该信号传导通路动态。考虑了钙通道功能变化的预期效果,提出了系统组件的相互作用的数学模型。由于多巴胺存在的钙电流振荡的平均频率在呈现的模型中为30Hz,这与文献一致,其中这种振荡的频率高达几十Hz。所有呈现的结果表明,与今天已经发布的已知数据表现出良好的相关性。

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