长时程增强
神经科学
去极化
突触可塑性
NMDA受体
神经元
星形胶质细胞
谷氨酸受体
LTP诱导
化学
强直刺激
生物
兴奋性突触后电位
生物物理学
受体
中枢神经系统
抑制性突触后电位
生物化学
作者
Woo‐Ping Ge,Shumin Duan
标识
DOI:10.1152/jn.00146.2006
摘要
Neuron–glia signaling is important for neural development and functions. This signaling may be regulated by neuronal activity and undergo modification similar to long-term potentiation (LTP) of neuronal synapses, a hallmark of neuronal plasticity. We found that tetanic stimulation of Schaffer collaterals (Sc) in the hippocampus that induced LTP in neurons also resulted in LTP-like persistent elevation of Sc-evoked slow depolarization in perisynaptic astrocytes. The elevated slow depolarization in astrocytes was abolished by NMDA receptor antagonist and K + channel inhibitors, but not by Ca 2+ chelator BAPTA loaded in the recorded astrocytes, suggesting involvement of an increased extracellular K + accumulation accompanying LTP of neuronal synapses. The increased K + accumulation and astrocyte depolarization after LTP induction may reduce the efficiency of glial glutamate transporters, which may contribute to the enhanced synaptic efficacy. The neuronal activity–induced persistent enhancement of neuron–glia signaling may thus have important physiological relevance.
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