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首页> 外文期刊>The Journal of Physiology >Cannabinoid receptor agonists potentiate action potential-independent release of GABA in the dentate gyrus through a CB1 receptor-independent mechanism.
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Cannabinoid receptor agonists potentiate action potential-independent release of GABA in the dentate gyrus through a CB1 receptor-independent mechanism.

机译:大麻素受体激动剂通过不依赖CB1受体的机制增强齿状回中GABA的动作电位独立释放。

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摘要

We report a novel excitatory effect of cannabinoid agonists on action potential-independent GABAergic transmission in the rat dentate gyrus. Specifically, we find that both WIN55,212-2 and anandamide increase the frequency of miniature IPSCs (mIPSCs)recorded from hilar mossy cells without altering event amplitude, area, rise time, or decay. The effect of WIN55,212-2 on mIPSCs is insensitive to AM251 and preserved in CB1 -/- animals,indicating that it does not depend on activation of CB1 receptors. It is also insensitive to AM630 and unaffected by capsazepine suggesting that neither CB2 nor TRPV1 receptors are involved. Further, it is blocked by pre-incubation in suramin and by a selective protein kinase A inhibitor (H-89), and is mimicked (and occluded) by bath application of forskolin. Similar CB1 receptor-independent facilitation of exocytosis is not apparent when recording evoked IPSCs in the presence of AM251, suggesting that the exocytotic mechanism that produces WIN55,212-2 sensitive mIPSCs is distinct from that which produces CB1 sensitive and action potential-dependent release. Despite clear independence from action potentials, WIN55,212-2 mediated facilitation of mIPSCs requires calcium, and yet is insensitive to chelation of calcium in the postsynaptic cell. Finally, we demonstrate that both bath application of 2-arachidonoylglycerol(2-AG) and depolarization-induced release of endogenous cannabinoids have minimal effect on mIPSC frequency. Cumulatively, our results indicate that cannabinoid ligands can selectively facilitate action potential-independent exocytosis of GABA in the rat dentate gyrus, and further emphasize that this new cannabinoid sensitive signalling system is distinct from previously described CB1 receptor-dependent systems in numerous respects.
机译:我们报告了对大鼠齿状回的动作电位独立的GABA能传递的大麻素激动剂的新型兴奋作用。具体来说,我们发现WIN55,212-2和anandamide均可增加从肺门苔藓细胞记录的微型IPSC(mIPSC)的频率,而不会改变事件幅度,面积,上升时间或衰减。 WIN55,212-2对mIPSC的作用对AM251不敏感,并保留在CB1-/-动物中,表明它不依赖于CB1受体的活化。它也对AM630不敏感,不受辣椒碱的影响,表明CB2和TRPV1受体均不参与。此外,它通过在苏拉明中预温育和被选择性蛋白激酶A抑制剂(H-89)阻断,并通过涂上福司可林进行模仿(和封闭)。当在AM251存在下记录诱发的IPSC时,胞吐作用的类似CB1受体非依赖性促进作用并不明显,这表明产生WIN55,212-2敏感mIPSC的胞吐机制不同于产生CB1敏感和动作电位依赖性释放的胞吐机制。尽管与动作电位有明显的独立性,但WIN55,212-2介导的mIPSC的促进作用需要钙,但对突触后细胞中钙的螯合不敏感。最后,我们证明2-花生四烯酰甘油(2-AG)的浴应用和去极化诱导的内源性大麻素释放对mIPSC频率的影响最小。累积地,我们的结果表明,大麻素配体可以选择性促进大鼠齿状回中不依赖动作电位的GABA的胞吐作用,并进一步强调,这种新的大麻素敏感信号传导系统在许多方面均不同于先前描述的CB1受体依赖性系统。

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