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首页> 外文期刊>Journal of Biological Physics >A mathematical model of the tripartite synapse: Astrocyte-induced synaptic plasticity
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A mathematical model of the tripartite synapse: Astrocyte-induced synaptic plasticity

机译:三重突触的数学模型:星形胶质细胞诱导的突触可塑性

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摘要

In this paper, we present a biologically detailed mathematical model of tripartite synapses, where astrocytes modulate short-term synaptic plasticity. The model consists of a pre-synaptic bouton, a post-synaptic dendritic spine-head, a synaptic cleft and a perisynaptic astrocyte controlling Ca ~(2+) dynamics inside the synaptic bouton. This in turn controls glutamate release dynamics in the cleft. As a consequence of this, glutamate concentration in the cleft has been modeled, in which glutamate reuptake by astrocytes has also been incorporated. Finally, dendritic spine-head dynamics has been modeled. As an application, this model clearly shows synaptic potentiation in the hippocampal region, i.e., astrocyte Ca ~(2+) mediates synaptic plasticity, which is in conformity with the majority of the recent findings (Perea and Araque (Science 317, 1083-1086, 2007); Henneberger et al. (Nature 463, 232-236, 2010); Navarrete et al. (PLoS Biol. 10, e1001259, 2012)).
机译:在本文中,我们介绍了三方突触的生物学详细数学模型,其中星形胶质细胞调节短期突触可塑性。该模型由突触前钮扣,突触后树突状脊柱头部,突触裂隙和控制突触钮扣内Ca〜(2+)动态的突触周星形胶质细胞组成。这进而控制了谷氨酸在缝隙中的释放动力学。结果,已经模拟了裂缝中谷氨酸的浓度,其中星形胶质细胞也吸收了谷氨酸。最后,树突状脊柱动力学已建模。作为一种应用,该模型清楚地显示了海马区的突触增强,即星形胶质细胞Ca〜(2+)介导突触可塑性,这与最近的大多数研究结果一致(Perea和Araque(Science 317,1083-1086 ,2007); Henneberger等(自然463,232-236,2010); Navarrete等(PLoS Biol。10,e1001259,2012)。

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