Han Jeong S, Bird Gary C, Neugebauer Volker
Department of Anatomy and Neurosciences and Marine Biomedical Institute, The University of Texas Medical Branch, 301 University Boulevard, Galveston, TX 77555-1069, USA.
Neuropharmacology. 2004 Jun;46(7):918-26. doi: 10.1016/j.neuropharm.2004.01.006.
Pain has a strong emotional component. A key player in emotionality, the amygdala is also involved in pain processing. Our previous studies showed synaptic plasticity in the central nucleus of the amygdala (CeA) in a model of arthritic pain. Here, we address the role of group III metabotropic glutamate receptors (mGluRs) in the regulation of synaptic transmission in CeA neurons. Whole-cell current- and voltage-clamp recordings were made from neurons in the latero-capsular part of the CeA in brain slices from control rats and arthritic rats (>6 h postinduction). The latero-capsular part of the CeA is the target of the spino-parabrachio-amygdaloid pain pathway and is now designated as the "nociceptive amygdala". Monosynaptic excitatory postsynaptic currents (EPSCs) were evoked by electrical stimulation of afferents from the pontine parabrachial (PB) area. LAP4 decreased the amplitude of EPSCs more potently in CeA neurons from arthritic rats (EC(50)=1.2 nM) than in control animals (EC(50)=11.5 nM). The inhibitory effect of LAP4 was reversed by a selective group III mGluR antagonist (UBP1112). During the application of LAP4, paired-pulse facilitation was increased, while no significant changes in slope conductance and action potential firing rate of CeA neurons were observed. These data suggest that presynaptic group III mGluRs are involved in the regulation of synaptic plasticity in the amygdala in an arthritis pain model.
疼痛具有强烈的情感成分。杏仁核作为情感活动中的关键角色,也参与疼痛处理过程。我们之前的研究表明,在关节炎疼痛模型中,杏仁核中央核(CeA)存在突触可塑性。在此,我们探讨III组代谢型谷氨酸受体(mGluRs)在调控CeA神经元突触传递中的作用。采用全细胞电流钳和电压钳记录技术,分别对来自对照大鼠和关节炎大鼠(诱导后>6小时)脑片的CeA外侧囊部神经元进行记录。CeA外侧囊部是脊髓-臂旁-杏仁核痛觉通路的靶点,现被称为“伤害性杏仁核”。通过电刺激脑桥臂旁(PB)区域的传入神经诱发单突触兴奋性突触后电流(EPSCs)。LAP4对关节炎大鼠CeA神经元中EPSCs幅度的降低作用(EC50 = 1.2 nM)比对对照动物更强(EC50 = 11.5 nM)。LAP4的抑制作用可被选择性III组mGluR拮抗剂(UBP1112)逆转。在应用LAP4期间,配对脉冲易化增强,而CeA神经元的斜率电导和动作电位发放率未观察到显著变化。这些数据表明,在关节炎疼痛模型中,突触前III组mGluRs参与杏仁核突触可塑性的调控。