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Computational quest for understanding the role of astrocyte signaling in synaptic transmission and plasticity

机译:对理解星形胶质细胞信号在突触传递和可塑性中的作用的计算探索

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摘要

The complexity of the signaling network that underlies astrocyte-synapse interactions may seem discouraging when tackled from a theoretical perspective. Computational modeling is challenged by the fact that many details remain hitherto unknown and conventional approaches to describe synaptic function are unsuitable to explain experimental observations when astrocytic signaling is taken into account. Supported by experimental evidence is the possibility that astrocytes perform genuine information processing by means of their calcium signaling and are players in the physiological setting of the basal tone of synaptic transmission. Here we consider the plausibility of this scenario from a theoretical perspective, focusing on the modulation of synaptic release probability by the astrocyte and its implications on synaptic plasticity. The analysis of the signaling pathways underlying such modulation refines our notion of tripartite synapse and has profound implications on our understanding of brain function.
机译:从理论角度出发,星形胶质细胞-突触相互作用基础的信号网络的复杂性似乎令人沮丧。计算模型受到以下事实的挑战:迄今仍不清楚许多细节,并且当考虑星形胶质信号时,描述突触功能的常规方法不适合解释实验观察。实验证据支持的可能性是,星形胶质细胞通过其钙信号传导进行真正的信息处理,并且是突触传递基础音的生理环境中的参与者。在这里,我们从理论的角度考虑这种情况的合理性,重点是星形胶质细胞对突触释放概率的调节及其对突触可塑性的影响。对这种调节基础的信号传导途径的分析完善了我们的三联突触的概念,并且对我们对脑功能的理解具有深远的意义。

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