Department of Biomedical Engineering, Zonguldak Bulent Ecevit University, 67100 Zonguldak, Turkey.
Department of Physics, University of Ottawa, Ottawa, Ontario K1N 6N5, Canada.
Chaos. 2022 May;32(5):051101. doi: 10.1063/5.0093234.
Mounting evidence in recent years suggests that astrocytes, a sub-type of glial cells, not only serve metabolic and structural support for neurons and synapses but also play critical roles in the regulation of proper functioning of the nervous system. In this work, we investigate the effect of astrocytes on the spontaneous firing activity of a neuron through a combined model that includes a neuron-astrocyte pair. First, we show that an astrocyte may provide a kind of multistability in neuron dynamics by inducing different firing modes such as random and bursty spiking. Then, we identify the underlying mechanism of this behavior and search for the astrocytic factors that may have regulatory roles in different firing regimes. More specifically, we explore how an astrocyte can participate in the occurrence and control of spontaneous irregular spiking activity of a neuron in random spiking mode. Additionally, we systematically investigate the bursty firing regime dynamics of the neuron under the variation of biophysical facts related to the intracellular environment of the astrocyte. It is found that an astrocyte coupled to a neuron can provide a control mechanism for both spontaneous firing irregularity and burst firing statistics, i.e., burst regularity and size.
近年来越来越多的证据表明,星形胶质细胞作为神经胶质细胞的一种亚型,不仅为神经元和突触提供代谢和结构支持,而且在调节神经系统的正常功能方面也起着至关重要的作用。在这项工作中,我们通过一个包含神经元-星形胶质细胞对的组合模型,研究了星形胶质细胞对神经元自发性放电活动的影响。首先,我们表明星形胶质细胞可以通过诱导不同的放电模式,如随机和爆发性尖峰,为神经元动力学提供一种多稳定性。然后,我们确定了这种行为的潜在机制,并寻找可能在不同放电模式中具有调节作用的星形胶质细胞因子。更具体地说,我们探讨了星形胶质细胞如何参与随机放电模式下神经元自发性不规则放电活动的发生和控制。此外,我们系统地研究了在与星形胶质细胞细胞内环境相关的生物物理事实变化下,神经元爆发式放电模式的动力学。结果发现,与神经元偶联的星形胶质细胞可以为自发性放电不规则性和爆发式放电统计,即爆发式规则性和大小提供一种控制机制。