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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >The CB1 cannabinoid receptor mediates glutamatergic synaptic suppression in the hippocampus.
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The CB1 cannabinoid receptor mediates glutamatergic synaptic suppression in the hippocampus.

机译:CB1大麻素受体介导海马中的谷氨酸能突触抑制。

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摘要

Cannabinoids have profound effects on synaptic function and behavior. Of the two cloned cannabinoid receptors, cannabinoid receptor 1 (CB1) is widely distributed in the CNS and accounts for most of the neurological effects of cannabinoids, while cannabinoid receptor 2 (CB2) expression in the CNS is very limited. The presence of additional receptors [i.e. cannabinoid receptor 3 (CB3)] is suggested by growing evidence of cannabinoid effects that are not mediated by CB1 or CB2. The most direct functional evidence for a CB3 comes from a study in hippocampus where deletion of CB1 was shown to have no effect on cannabinoid-mediated suppression of the excitatory synapse between Schaffer collateral/commissural fibers and CA1 pyramidal cells [Novel cannabinoid-sensitive receptor mediates inhibition of glutamatergic synaptic transmission in the hippocampus. Neuroscience 106:1-4]. In contrast, we report here that in extracellular field recordings, the cannabinoid agonist WIN 55,212-2 (5 microM) had no effect on Schaffer collateral/commissural fiber-CA1 pyramidal cell (Sch-CA1) synaptic transmission in slices from two independently made cannabinoid receptor 1-/- lines [Zimmer et al 1999 and Ledent et al 1999] while strongly suppressing Sch-CA1 synaptic transmission in CB1+/+ mice of the background strains. Also, we observed robust cannabinoid-mediated suppression of the Sch-CA1 synapse in pure C57BL/6 mice, contradicting a recent report that cannabinoid suppression of this synapse is absent in this strain [Hoffman AF, Macgill AM, Smith D, Oz M, Lupica CR (2005) Species and strain differences in the expression of a novel glutamate-modulating cannabinoid receptor in the rodent hippocampus. Eur J Neurosci 22:2387-2391]. Our results strongly suggest that cannabinoid-induced suppression of the Sch-CA1 synapse is mediated by CB1. Non-canonical cannabinoid receptors do not seem to play a major role in inhibiting transmitter release at this synapse.
机译:大麻素对突触功能和行为具有深远的影响。在这两个克隆的大麻素受体中,大麻素受体1(CB1)广泛分布在CNS中,并解释了大麻素的大多数神经系统作用,而在CNS中大麻素受体2(CB2)的表达却非常有限。其他受体的存在[即大麻素作用的证据不是由CB1或CB2介导的,这提示了大麻素受体3(CB3)的出现。 CB3的最直接的功能证据来自海马的一项研究,其中删除CB1被证明对大麻素介导的Schaffer侧支/连合纤维和CA1锥体细胞之间的兴奋性突触的抑制没有作用[新颖的大麻素敏感受体介导抑制海马谷氨酸能突触传递。神经科学106:1-4]。相反,我们在这里报告说,在细胞外野外记录中,大麻素激动剂WIN 55,212-2(5 microM)对来自两个独立制造的大麻素的切片中的沙弗侧支/连合纤维-CA1锥体细胞(Sch-CA1)突触传递没有影响。受体1-/-系[Zimmer等1999和Ledent等1999],同时强烈抑制背景菌株的CB1 + / +小鼠中的Sch-CA1突触传递。此外,我们在纯C57BL / 6小鼠中观察到了由大麻素介导的Sch-CA1突触的强力抑制,这与最近的报道相反,该菌株中没有大麻素对该突触的抑制作用[霍夫曼AF,麦吉尔AM,史密斯D,奥兹·M Lupica CR(2005)在啮齿类动物海马中表达新型谷氨酸的大麻素受体表达的物种和菌株差异。 Eur J Neurosci 22:2387-2391]。我们的结果强烈表明,大麻素诱导的Sch-CA1突触抑制作用是由CB1介导的。非规范性大麻素受体似乎在抑制该突触中的递质释放中没有起主要作用。

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