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首页> 外文期刊>Neuro-signals >Mathematical Model for Agonist-Induced Oscillatory Calcium Waves in Non-Excitable Mammalian Cells
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Mathematical Model for Agonist-Induced Oscillatory Calcium Waves in Non-Excitable Mammalian Cells

机译:激动剂诱导的哺乳动物细胞中激动剂引起的振荡钙波的数学模型

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摘要

>Many non-excitable cells display cytosolic Ca2+ oscillations resulting from the periodic release of Ca2+ from intracellular stores. Recent observations in hepatocytes and some other cell types have shown that agonist-induced Ca2+ oscillations often display an intracellular spatial organization and do not occur synchronously within the cell. Ca2+ waves evoked by different agonists originate from the same subcellular locus and propagate through the cell with a constant rate of progress and amplitude. This indicates that Ca2+ waves are driven by a self-propagating mechanism and not by diffusion alone. We propose a simplified one-dimensional mathematical model to describe this phenomenon based on the mechanism of calcium-induced calcium release. The numerical solution of the system of two coupled non-linear partial differential equations reproduces many of the main features observed experimentally.
机译:>许多非兴奋性细胞表现出胞质Ca 2 + 振荡,这是由于Ca 2 + 从细胞内存储区周期性释放而引起的。最近在肝细胞和其他一些细胞类型中的观察表明,激动剂诱导的Ca 2 + 振荡通常表现出细胞内的空间组织,并且不会在细胞内同步发生。不同激动剂引起的Ca 2 + 波起源于相同的亚细胞基因座,并以恒定的速率和幅度在细胞中传播。这表明Ca 2 + 波是由自传播机制驱动的,而不是仅由扩散驱动的。我们提出了一种简化的一维数学模型来描述基于钙诱导的钙释放机制的这一现象。两个耦合的非线性偏微分方程系统的数值解再现了实验观察到的许多主要特征。

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