神经科学
谷氨酸的
扣带回前部
神经传递
红藻氨酸受体
兴奋性突触后电位
扣带皮质
心理学
谷氨酸受体
受体
化学
生物
AMPA受体
认知
中枢神经系统
抑制性突触后电位
生物化学
作者
Xu‐Hui Li,Wantong Shi,Zhi‐Xia Zhao,Takanori Matsuura,Jingshan Lu,Jingmin Che,Qi‐Yu Chen,Zhaoxiang Zhou,Man Xue,Shun Hao,Fang Xu,Guo‐Qiang Bi,Bong‐Kiun Kaang,Graham L. Collingridge,Min Zhuo
标识
DOI:10.1002/advs.202308444
摘要
Abstract The corticostriatal connection plays a crucial role in cognitive, emotional, and motor control. However, the specific roles and synaptic transmissions of corticostriatal connection are less studied, especially the corticostriatal transmission from the anterior cingulate cortex (ACC). Here, a direct glutamatergic excitatory synaptic transmission in the corticostriatal projection from the ACC is found. Kainate receptors (KAR)‐mediated synaptic transmission is increased in this corticostriatal connection both in vitro and in vivo seizure‐like activities. GluK1 containing KARs and downstream calcium‐stimulated adenylyl cyclase subtype 1 (AC1) are involved in the upregulation of KARs following seizure‐like activities. Inhibiting the activities of ACC or its corticostriatal connection significantly attenuated pentylenetetrazole (PTZ)‐induced seizure. Additionally, injection of GluK1 receptor antagonist UBP310 or the AC1 inhibitor NB001 both show antiepileptic effects. The studies provide direct evidence that KARs are involved in seizure activity in the corticostriatal connection and the KAR‐AC1 signaling pathway is a potential novel antiepileptic strategy.
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