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The Role of Astrocytes in the Regulation of Synaptic Plasticity and Memory Formation

机译:星形胶质细胞在调节突触可塑性和记忆形成中的作用。

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摘要

Astrocytes regulate synaptic transmission and play a role in the formation of new memories, long-term potentiation (LTP), and functional synaptic plasticity. Specifically, astroglial release of glutamate, ATP, and cytokines likely alters the survivability and functioning of newly formed connections. Among these pathways, regulation of glutamate appears to be most directly related to the promotion of LTP, which is highly dependent on the synchronization of synaptic receptors through the regulation of excitatory postsynaptic potentials. Moreover, regulation of postsynaptic glutamate receptors, particularly AMPA receptors, is dependent on signaling by ATP synthesized in astrocytes. Finally, cytokine signaling is also implicated in regulating LTP, but is likely most important in plasticity following tissue damage. Despite the role of these signaling factors in regulating LTP and functional plasticity, an integrative model of these factors has not yet been elucidated. In this review, we seek to summarize the current body of evidence on astrocytic mechanisms for regulation of LTP and functional plasticity, and provide an integrative model of the processes.
机译:星形胶质细胞调节突触传递,并在新记忆,长期增强(LTP)和功能性突触可塑性的形成中发挥作用。具体而言,谷氨酸,ATP和细胞因子的星形胶质释放可能会改变新形成连接的生存能力和功能。在这些途径中,谷氨酸的调节似乎与促进LTP最直接相关,LTP的升高高度依赖于通过兴奋性突触后电位的调节来调节突触受体的同步。而且,突触后谷氨酸受体特别是AMPA受体的调节依赖于星形胶质细胞中合成的ATP的信号传导。最后,细胞因子信号传导也参与调节LTP,但可能在组织损伤后的可塑性中最重要。尽管这些信号传导因子在调节LTP和功能可塑性中发挥了作用,但尚未阐明这些因子的整合模型。在这篇综述中,我们寻求总结有关调节LTP和功能可塑性的星形细胞机制的现有证据,并提供该过程的综合模型。

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