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内源性大麻素介导的对纹状体中棘状神经元兴奋性突触传递的短期抑制。

Endocannabinoid-mediated short-term suppression of excitatory synaptic transmission to medium spiny neurons in the striatum.

作者信息

Narushima Madoka, Hashimoto Kouichi, Kano Masanobu

机构信息

Department of Cellular Neurophysiology, Graduate School of Medical Science, Kanazawa University, Takara-machi, Kanazawa 920-8640, Japan.

出版信息

Neurosci Res. 2006 Mar;54(3):159-64. doi: 10.1016/j.neures.2005.12.004. Epub 2006 Jan 18.

Abstract

Medium spiny neurons in the dorsal striatum receive glutamatergic excitatory synaptic inputs from the cerebral cortex. These synapses undergo long-term depression that requires release of endocannabinoids from medium spiny neurons and activation of cannabinoid CB1 receptors. However, it remains unclear how cortico-striatal synapses exhibit endocannabinoid-mediated short-term suppression, which has been found in various brain regions including the hippocampus and cerebellum. Endocannabinoids are released from postsynaptic neurons by strong depolarization and resultant Ca2+ elevation or activation of postsynaptic Gq/11-coupled receptors such as group I metabotropic glutamate receptors (mGluRs) and M1/M3 muscarinic acetylcholine receptors. Moreover, endocannabioids are effectively released when weak depolarization is combined with Gq/11-coupled receptor activation. We found that muscarinic activation induced transient suppression of excitatory synaptic transmission to medium spiny neurons, which was independent of retrograde endocannabinoid signaling but was mediated directly by presynaptic muscarinic receptors. Neither postsynaptic depolarization alone nor depolarization and muscarinic activation caused suppression of cortico-striatal synapses. In contrast, activation of group I mGluRs readily suppressed cortico-striatal excitatory synaptic transmission. Furthermore, postsynaptic depolarization induced clear suppression when combined with group I mGluR activation. These results indicate that group I mGluRs but not muscarinic receptors contribute to endocannabinoid-mediated short-term suppression of cortico-striatal excitatory synaptic transmission.

摘要

背侧纹状体中的中等棘状神经元接收来自大脑皮层的谷氨酸能兴奋性突触输入。这些突触会经历长时程抑制,这需要从中等棘状神经元释放内源性大麻素并激活大麻素CB1受体。然而,目前尚不清楚皮质-纹状体突触如何表现出内源性大麻素介导的短期抑制,这种抑制在包括海马体和小脑在内的各种脑区中都已被发现。内源性大麻素通过强烈的去极化以及由此导致的Ca2+升高或突触后Gq/11偶联受体(如I型代谢型谷氨酸受体(mGluRs)和M1/M3毒蕈碱型乙酰胆碱受体)的激活而从突触后神经元释放。此外,当弱去极化与Gq/11偶联受体激活相结合时,内源性大麻素会有效释放。我们发现,毒蕈碱激活会诱导对中等棘状神经元兴奋性突触传递的短暂抑制,这与逆行性内源性大麻素信号传导无关,而是直接由突触前毒蕈碱受体介导。单独的突触后去极化或去极化与毒蕈碱激活均不会导致皮质-纹状体突触的抑制。相反,I型mGluRs的激活很容易抑制皮质-纹状体兴奋性突触传递。此外,当与I型mGluR激活相结合时,突触后去极化会诱导明显的抑制。这些结果表明,I型mGluRs而非毒蕈碱受体有助于内源性大麻素介导的皮质-纹状体兴奋性突触传递的短期抑制。

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