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首页> 外文期刊>Neuropharmacology >Biochemical and electrophysiological studies on (S)-(+)-2-(3'-carboxybicyclo(1.1.1)pentyl)-glycine (CBPG), a novel mGlu5 receptor agonist endowed with mGlu1 receptor antagonist activity.
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Biochemical and electrophysiological studies on (S)-(+)-2-(3'-carboxybicyclo(1.1.1)pentyl)-glycine (CBPG), a novel mGlu5 receptor agonist endowed with mGlu1 receptor antagonist activity.

机译:生化和电生理研究(S)-(+)-2-(3'-羧基双环(1.1.1)戊基)-甘氨酸(CBPG),一种具有mGlu1受体拮抗剂活性的新型mGlu5受体激动剂。

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摘要

The pharmacological profile of (S)-(+)-2-(3'-carboxybicyclo[1.1.1]pentyl)-glycine (CBPG) and of other group 1 metabotropic glutamate (mGlu) receptor agents were studied in BHK cells transfected with mGlu receptor subtypes or in native receptors in brain slices by measuring second messenger responses. The mGlu receptor-mediated changes in the electrophysiological properties of CA1 pyramidal cells of the hippocampus were also evaluated. In mGlu5a receptor transfected cells, CBPG behaved as a partial agonist, while in mGlu1alpha receptor transfected cells, it behaved as a glutamate antagonist. No effect was found on cAMP formation in cells transfected with mGlu2 receptors or mGlu4 receptors. In brain slices, CBPG neither affected phospholipase D-coupled glutamate receptors nor did it modify the responses to ionotropic receptor stimulation (at concentrations up to 1 mM). When tested in CA1 pyramidal cells of the hippocampus, CBPG (50-100 microM) caused depolarization, increased cell input resistance, and decreased action potential frequency adaptation and afterhyperpolarization. DHPG (3-100 microM), an agonist of both mGlu1 and mGlu5 receptors, and CHPG (1000 microM), a low affinity mGlu5 agonist, produced qualitatively similar effects. The actions of CBPG or CHPG were not modified by AIDA (300 microM), a selective mGlu1 receptor antagonist. Our results suggest that CBPG could be a useful tool for discriminating between mGlu1 receptor and mGlu5 receptor effects and that mGlu5 receptors are the receptors which are mainly responsible for the direct excitatory effects of mGlu receptor agonists on CA1 pyramidal cells.
机译:研究了(S)-(+)-2-(3'-羧基双环[1.1.1]戊基)-甘氨酸(CBPG)和其他1组代谢型谷氨酸(mGlu)受体药物在转染BHK细胞中的药理作用通过测量第二信使响应,mGlu受体亚型或脑切片中的天然受体。还评估了mGlu受体介导的海马CA1锥体细胞电生理特性的变化。在mGlu5a受体转染的细胞中,CBPG表现为部分激动剂,而在mGlu1alpha受体转染的细胞中,其表现为谷氨酸拮抗剂。在用mGlu2受体或mGlu4受体转染的细胞中,对cAMP的形成没有影响。在脑片中,CBPG既不影响磷脂酶D偶联的谷氨酸受体,也不改变对离子型受体刺激的反应(浓度高达1 mM)。在海马CA1锥体细胞中进行测试时,CBPG(50-100 microM)引起去极化,细胞输入阻力增加,动作电位频率适应性和超极化减少。 DHPG(3-100 microM)是mGlu1和mGlu5受体的激动剂,而CHPG(1000 microM)是低亲和力的mGlu5激动剂,产生了定性相似的效果。选择性mGlu1受体拮抗剂AIDA(300 microM)并未改变CBPG或CHPG的作用。我们的结果表明,CBPG可能是区分mGlu1受体和mGlu5受体作用的有用工具,并且mGlu5受体是主要负责mGlu受体激动剂对CA1锥体细胞直接兴奋作用的受体。

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