首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Role of extracellular signal-regulated kinase in synaptic transmission and plasticity of a nociceptive input on capsular central amygdaloid neurons in normal and acid-induced muscle pain mice.
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Role of extracellular signal-regulated kinase in synaptic transmission and plasticity of a nociceptive input on capsular central amygdaloid neurons in normal and acid-induced muscle pain mice.

机译:细胞外信号调节激酶在正常和酸诱导的肌肉痛小鼠中,在荚膜中央杏仁核神经元上的伤害性输入的突触传递和可塑性中的作用。

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摘要

Application of phorbol 12,13-diacetate (PDA) caused marked enhancement of synaptic transmission of nociceptive parabrachio-amygdaloid (PBA) input onto neurons of the capsular central amygdaloid (CeAC) nucleus. The potentiation of PBA-CeAC EPSCs by PDA involved a presynaptic protein kinase C (PKC)-dependent component and a postsynaptic PKC-extracellular-regulated kinase (ERK)-dependent component. NMDA glutamatergic receptor (NMDAR)-dependent long-term potentiation (LTP) of PBA-CeAC EPSCs, which was also dependent on the PKC-ERK signaling pathway, was induced by tetanus stimulation at 100 Hz. In slices from mice subjected to acid-induced muscle pain (AIMP), phosphorylated ERK levels in the CeAC increased, and PBA-CeAC synaptic transmission was postsynaptically enhanced. The enhanced PBA-CeAC synaptic transmission in AIMP mice shared common mechanisms with the postsynaptic potentiation effect of PDA and induction of NMDAR-dependent LTP by high-frequency stimulation in normal slices, both of which required ERK activation. Since the CeAC plays an important role in the emotionality of pain, enhanced synaptic function of nociceptive (PBA) inputs onto CeAC neurons might partially account for the supraspinal mechanisms underlying central sensitization.
机译:佛波醇12,13-二乙酸酯(PDA)的使用显着增强了伤害性副臂臂-杏仁状(PBA)输入到荚膜中央杏仁状(CeAC)核神经元的突触传递。 PDA对PBA-CeAC EPSC的增强作用涉及突触前蛋白激酶C(PKC)依赖的组件和突触后PKC细胞外调节激酶(ERK)依赖的组件。 PBA-CeAC EPSC的NMDA谷氨酸能受体(NMDAR)依赖性长期增强(LTP),也依赖于PKC-ERK信号通路,是由100 Hz的破伤风刺激引起的。在小鼠遭受酸诱导的肌肉疼痛(AIMP)的切片中,CeAC中的磷酸化ERK水平升高,并且突触后增强了PBA-CeAC突触传递。 AIMP小鼠中增强的PBA-CeAC突触传递与PDA的突触后增强作用以及通过正常切片中的高频刺激诱导NMDAR依赖性LTP诱导具有共同的机制,这两者都需要ERK激活。由于CeAC在疼痛的情绪中起着重要作用,因此增强输入到CeAC神经元上的伤害感受(PBA)的突触功能可能部分解释了中枢敏化的脊髓上机制。

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