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癫痫中由突触传递和容积传递介导的神经网络的致死性相互作用提示了预防方法。

Lethal Interactions of neuronal networks in epilepsy mediated by both synaptic and volume transmission indicate approaches to prevention.

作者信息

Faingold Carl L

机构信息

Departments of Pharmacology and Neurology, Southern Illinois University, School of Medicine, Springfield, IL 62701 USA, United States.

出版信息

Prog Neurobiol. 2025 Jun;249:102770. doi: 10.1016/j.pneurobio.2025.102770. Epub 2025 Apr 19.

Abstract

Neuronal network interactions are important in normal brain physiology and also in brain disorders. Many mesoscopic networks, including the auditory and respiratory network, mediate a single brain function. Macroscopic networks, including the locomotor network, central autonomic network (CAN), and many seizure networks involve interactions among multiple mesoscopic networks. Network interactions are mediated by neuroactive substances, acting via synaptic transmission, which mediate rapid interactions between networks. Slower, but vitally important network interactions, are mediated by volume transmission. Changes in the interactions between networks, mediated by neuroactive substances, can significantly alter network function and interactions. The acoustic startle response involves interactions between auditory and locomotor networks, and also includes brainstem reticular formation (BRF) nuclei, which participate in many different networks. In the fear-potentiated startle paradigm this network interacts positively with the amygdala, induced by conditioning. Seizure networks can interact negatively with the respiratory network, which becomes lethal in sudden unexpected death in epilepsy (SUDEP), a tragic emergent property of the seizure network. SUDEP models that exhibit audiogenic seizures (AGSz) involve interactions between the auditory and locomotor networks with BRF nuclei. In the DBA/1 mouse SUDEP model the AGSz network interacts negatively with the respiratory network, resulting in postictal apnea. The apnea is lethal unless the CAN is able to initiate autoresuscitation. These network interactions involve synaptic transmission, mediated by GABA and glutamate and volume transmission mediated by adenosine, CO and serotonin. Altering these interaction mechanisms may prevent SUDEP. These epilepsy network interactions illustrate the complex mechanisms that can occur among neuronal networks.

摘要

神经元网络相互作用在正常脑生理学以及脑部疾病中都很重要。许多介观网络,包括听觉和呼吸网络,介导单一脑功能。宏观网络,包括运动网络、中枢自主网络(CAN)以及许多癫痫发作网络,涉及多个介观网络之间的相互作用。网络相互作用由神经活性物质介导,通过突触传递起作用,突触传递介导网络之间的快速相互作用。较慢但至关重要的网络相互作用则由容积传递介导。由神经活性物质介导的网络之间相互作用的变化,可显著改变网络功能和相互作用。听觉惊跳反应涉及听觉和运动网络之间的相互作用,还包括参与许多不同网络的脑干网状结构(BRF)核。在恐惧增强惊跳范式中,这个网络与杏仁核产生正向相互作用,由条件作用诱导。癫痫发作网络可与呼吸网络产生负向相互作用,这在癫痫性猝死(SUDEP)中是致命的,这是癫痫发作网络的一种悲惨的突发特性。表现出听源性癫痫发作(AGSz)的SUDEP模型涉及听觉和运动网络与BRF核之间的相互作用。在DBA/1小鼠SUDEP模型中,AGSz网络与呼吸网络产生负向相互作用,导致发作后呼吸暂停。除非CAN能够启动自动复苏,否则这种呼吸暂停是致命的。这些网络相互作用涉及由γ-氨基丁酸(GABA)和谷氨酸介导的突触传递以及由腺苷、一氧化碳和血清素介导的容积传递。改变这些相互作用机制可能预防SUDEP。这些癫痫网络相互作用说明了神经元网络之间可能发生的复杂机制。

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