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神经元网络与星形胶质细胞网络相互作用的计算模型:星形胶质细胞在神经元放电频率稳定性中的作用

A Computational Model of Interactions Between Neuronal and Astrocytic Networks: The Role of Astrocytes in the Stability of the Neuronal Firing Rate.

作者信息

Lenk Kerstin, Satuvuori Eero, Lallouette Jules, Ladrón-de-Guevara Antonio, Berry Hugues, Hyttinen Jari A K

机构信息

BioMediTech, Faculty of Medicine and Health Technology, Tampere University, Tampere, Finland.

Institute for Complex Systems (ISC), National Research Council (CNR), Sesto Fiorentino, Italy.

出版信息

Front Comput Neurosci. 2020 Jan 22;13:92. doi: 10.3389/fncom.2019.00092. eCollection 2019.

Abstract

Recent research in neuroscience indicates the importance of tripartite synapses and gliotransmission mediated by astrocytes in neuronal system modulation. Although the astrocyte and neuronal network functions are interrelated, they are fundamentally different in their signaling patterns and, possibly, the time scales at which they operate. However, the exact nature of gliotransmission and the effect of the tripartite synapse function at the network level are currently elusive. In this paper, we propose a computational model of interactions between an astrocyte network and a neuron network, starting from tripartite synapses and spanning to a joint network level. Our model focuses on a two-dimensional setup emulating a mixed neuron-astrocyte cell culture. The model depicts astrocyte-released gliotransmitters exerting opposing effects on the neurons: increasing the release probability of the presynaptic neuron while hyperpolarizing the post-synaptic one at a longer time scale. We simulated the joint networks with various levels of astrocyte contributions and neuronal activity levels. Our results indicate that astrocytes prolong the burst duration of neurons, while restricting hyperactivity. Thus, in our model, the effect of astrocytes is homeostatic; the firing rate of the network stabilizes to an intermediate level independently of neuronal base activity. Our computational model highlights the plausible roles of astrocytes in interconnected astrocytic and neuronal networks. Our simulations support recent findings in neurons and astrocytes and suggesting that astrocytic networks provide a modulatory role in the bursting of the neuronal network.

摘要

神经科学领域的最新研究表明,三方突触和星形胶质细胞介导的胶质递质传递在神经元系统调节中具有重要意义。尽管星形胶质细胞和神经元网络的功能相互关联,但它们在信号传导模式以及可能的运作时间尺度上存在根本差异。然而,目前胶质递质传递的确切性质以及三方突触功能在网络层面的作用仍不明确。在本文中,我们从三方突触出发,构建了一个星形胶质细胞网络与神经元网络相互作用的计算模型,并将其扩展到联合网络层面。我们的模型聚焦于模拟混合神经元 - 星形胶质细胞细胞培养的二维设置。该模型描述了星形胶质细胞释放的胶质递质对神经元产生相反的作用:在较长时间尺度上,增加突触前神经元的释放概率,同时使突触后神经元超极化。我们模拟了具有不同星形胶质细胞贡献水平和神经元活动水平的联合网络。我们的结果表明,星形胶质细胞延长了神经元的爆发持续时间,同时限制了过度活跃。因此,在我们的模型中,星形胶质细胞的作用是稳态的;网络的放电率稳定在一个中间水平,而与神经元的基础活动无关。我们的计算模型突出了星形胶质细胞在相互连接的星形胶质细胞网络和神经元网络中可能发挥的作用。我们的模拟结果支持了最近在神经元和星形胶质细胞方面的研究发现,并表明星形胶质细胞网络在神经元网络的爆发中起到调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/331b/6987305/d798093922e6/fncom-13-00092-g0001.jpg

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