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CB₁ 受体激活抑制大鼠海马神经元和星形胶质细胞的中间代谢。

CB₁ receptor activation inhibits neuronal and astrocytic intermediary metabolism in the rat hippocampus.

机构信息

Center for Neurosciences and Cell Biology of Coimbra, University of Coimbra, Coimbra, Portugal.

出版信息

Neurochem Int. 2012 Jan;60(1):1-8. doi: 10.1016/j.neuint.2011.10.019. Epub 2011 Nov 9.

Abstract

Cannabinoid CB₁ receptor (CB₁R) activation decreases synaptic GABAergic and glutamatergic transmission and it also controls peripheral metabolism. Here we aimed at testing with ¹³C NMR isotopomer analysis whether CB₁Rs could have a local metabolic role in brain areas having high CB₁R density, such as the hippocampus. We labelled hippocampal slices with the tracers [2-¹³C]acetate, which is oxidized in glial cells, and [U-¹³C]glucose, which is metabolized both in glia and neurons, to evaluate metabolic compartmentation between glia and neurons. The synthetic CB₁R agonist WIN55212-2 (1 μM) significantly decreased the metabolism of both [2-¹³C]acetate (-11.6±2.0%) and [U-¹³C]glucose (-11.2±3.4%) in the tricarboxylic acid cycle that contributes to the glutamate pool. WIN55212-2 also significantly decreased the metabolism of [U-¹³C]glucose (-11.7±4.0%) but not that of [2-¹³C]acetate contributing to the pool of GABA. These effects of WIN55212-2 were prevented by the CB₁R antagonist AM251 (500 nM). These results thus suggest that CB₁Rs might be present also in hippocampal astrocytes besides their well-known neuronal localization. Indeed, confocal microscopy analysis revealed the presence of specific CB₁R immunoreactivity in astrocytes and pericytes throughout the hippocampus. In conclusion, CB₁Rs are able to control hippocampal intermediary metabolism in both neuronal and glial compartments, which suggests new alternative mechanisms by which CB₁Rs control cell physiology and afford neuroprotection.

摘要

大麻素 CB₁ 受体(CB₁R)的激活会降低突触 GABA 能和谷氨酸能传递,还会控制外周代谢。在这里,我们旨在通过 ¹³C NMR 同位素分析来测试 CB₁R 是否在海马等 CB₁R 密度高的脑区具有局部代谢作用。我们用示踪剂[2-¹³C]乙酸盐(在神经胶质细胞中被氧化)和[U-¹³C]葡萄糖(在神经胶质细胞和神经元中都被代谢)标记海马切片,以评估神经胶质细胞和神经元之间的代谢分隔。合成的 CB₁R 激动剂 WIN55212-2(1 μM)显著降低了三羧酸循环中谷氨酸池的[2-¹³C]乙酸盐代谢(-11.6±2.0%)和[U-¹³C]葡萄糖代谢(-11.2±3.4%)。WIN55212-2 还显著降低了 GABA 池的[U-¹³C]葡萄糖代谢(-11.7±4.0%),但不影响[2-¹³C]乙酸盐代谢。这些 WIN55212-2 的作用被 CB₁R 拮抗剂 AM251(500 nM)所阻断。因此,这些结果表明,除了众所周知的神经元定位外,CB₁R 可能也存在于海马星形胶质细胞中。事实上,共聚焦显微镜分析显示,在整个海马中,星形胶质细胞和周细胞都存在特异性的 CB₁R 免疫反应性。总之,CB₁R 能够控制神经元和神经胶质细胞中都存在的海马中间代谢,这表明 CB₁R 控制细胞生理学并提供神经保护的新的替代机制。

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