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Impaired expression and function of group II metabotropic glutamate receptors in pilocarpine-treated chronically epileptic rats.

机译:II型代谢型谷氨酸受体在毛果芸香碱治疗的慢性癫痫大鼠中的表达和功能受损。

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Group II metabotropic (mGlu II) receptor subtypes mGlu2 and mGlu3 are important modulators of synaptic plasticity and glutamate release in the brain. Accordingly, several pharmacological ligands have been designed to target these receptors for the treatment of neurological disorders characterized by anomalous glutamate regulation including epilepsy. In this study, we examine whether the expression level and function of mGlu2 and mGlu3 are altered in experimental epilepsy by using immunohistochemistry, Western blot analysis, RT-PCR and extracellular recordings. A down-regulation of mGlu2/3 protein expression at the mossy fiber pathway was associated with a significant reduction in mGlu2/3 protein expression in the hippocampus and cortex of chronically epileptic rats. Moreover, a reduction in mGlu2 and mGlu3 transcripts levels was noticed as early as 24 h after pilocarpine-induced status epilepticus (SE) and persisted during subsequent "latent" and chronic periods. In addition, a significant impairment of mGlu II-mediated depression of field excitatory postsynaptic potentials at mossy fiber-CA3 synapses was detected in chronically epileptic rats. Application of mGlu II agonists (2S,2'R,3'R)-2-(2',3'-dicarboxycyclopropyl)glycine (DCG-IV) induced a significant reduction of the fEPSP amplitude in control rats, but not in chronic epileptic rats. These data indicate a long-lasting impairment of mGlu2/3 expression that may contribute to abnormal presynaptic plasticity, exaggerate glutamate release and hyperexcitability in temporal lobe epilepsy.
机译:II组代谢型(mGlu II)受体亚型mGlu2和mGlu3是大脑中突触可塑性和谷氨酸释放的重要调节剂。因此,已经设计了几种药理配体以这些受体为靶标,用于治疗以谷氨酸调节异常(包括癫痫)为特征的神经系统疾病。在这项研究中,我们通过使用免疫组织化学,Western印迹分析,RT-PCR和细胞外记录,研究了实验性癫痫中mGlu2和mGlu3的表达水平和功能是否发生了改变。苔藓纤维途径中mGlu2 / 3蛋白表达的下调与慢性癫痫大鼠海马和皮层中mGlu2 / 3蛋白表达的显着降低有关。此外,早在毛果芸香碱引起的癫痫持续状态(SE)后24小时,就注意到mGlu2和mGlu3转录水平的降低,并在随后的“潜伏”和慢性期间持续存在。此外,在慢性癫痫大鼠中,在苔藓纤维-CA3突触处检测到了由mGlu II介导的场兴奋性突触后突触电位降低的显着损害。 mGlu II激动剂(2S,2'R,3'R)-2-(2',3'-二羧基环丙基)甘氨酸(DCG-IV)的应用可导致对照大鼠的fEPSP振幅显着降低,但在慢性大鼠中却没有癫痫大鼠。这些数据表明,mGlu2 / 3表达的长期损害可能会导致颞叶癫痫中异常的突触前可塑性,过度的谷氨酸释放和过度兴奋。

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