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首页> 外文期刊>Neurochemistry International: The International Journal for the Rapid Publication of Critical Reviews, Preliminary and Original Research Communications in Neurochemistry >Cannabinoid receptor and WIN-55,212-2-stimulated (35S)GTPgammaS binding and cannabinoid receptor mRNA levels in several brain structures of adult male rats chronically exposed to R-methanandamide.
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Cannabinoid receptor and WIN-55,212-2-stimulated (35S)GTPgammaS binding and cannabinoid receptor mRNA levels in several brain structures of adult male rats chronically exposed to R-methanandamide.

机译:慢性暴露于R-甲烷酰胺的成年雄性大鼠大脑结构中的大麻素受体和WIN-55,212-2-刺激的(35S)GTPgammaS结合和大麻素受体mRNA水平。

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We and others have recently demonstrated that the pharmacological tolerance observed after prolonged exposure to plant and synthetic cannabinoids in adult individuals seems to have a pharmacodynamic basis, based on the observed down-regulation of cannabinoid receptors in the brain of cannabinoid-tolerant rats. However, we were unable to elicit a similar receptor down-regulation after a chronic exposure to anandamide, the first discovered endogenous cannabinoid, possibly because of its rapid metabolic breakdown in arachidonic acid and ethanolamine. The present study was designed to progress in these previous studies, by using R-methanandamide, a more stable analog, instead anandamide. In addition, we examined not only cannabinoid receptor binding, but also WIN-55,212-2-stimulated [35S]-GTPgammaS binding, by autoradiography, and cannabinoid receptor mRNA levels, by in situ hybridization. Results were as follows. The daily administration of R-methanandamide for a period of five days produced decreases in cannabinoid receptor binding in the lateral caudate-putamen, cerebellum, entopeduncular nucleus and substantia nigra. The remaining areas, the medial caudate-putamen, globus pallidus, cerebral cortex (layers I and VI), hippocampus (dentate gyrus and Ammon's horn) and several limbic structures (nucleus accumbens, septum nuclei and basolateral amygdaloid nucleus), exhibited no changes in cannabinoid receptor binding. Similarly, the levels of cannabinoid receptor mRNA expression decreased in the lateral and medial caudate-putamen and in the CA1 and CA2 subfields of the Ammon's horn in the hippocampus after the chronic exposure to R-methanandamide, whereas the remaining areas showed no changes. WIN-55,212-2-stimulated [35S]-GTPgammaS binding did not change in the lateral caudate-putamen, cerebral cortex (layer I), septum nuclei and hippocampal structures (dentate gyrus and Ammon's horn) of animals chronically exposed to R-methanandamide, whereas a certain trend to decrease could be observed in the substantia nigra and deep layer (VI) of the cerebral cortex in these animals. In summary, as reported for other cannabinoid receptor agonists, the prolonged exposure of rats to R-methanandamide, a more stable analog of anandamide, was able to produce cannabinoid receptor-related changes in contrast with the absence of changes observed early with the metabolically labile anandamide. The observed changes exhibited an evident regional pattern with areas, such as basal ganglia, cerebellum and hippocampus, responding to chronic R-methanandamide treatment while regions, such as the cerebral cortex and limbic nuclei, not responding.
机译:我们和其他人最近证明,基于观察到的大麻耐受性大鼠脑中大麻素受体的下调,成年个体长时间暴露于植物和合成大麻素后观察到的药理学耐受性似乎具有药效学基础。但是,在长期暴露于首次发现的内源性大麻素大麻素后,我们无法引起类似的受体下调,这可能是由于其在花生四烯酸和乙醇胺中的快速代谢分解所致。本研究旨在通过使用更稳定的类似物R-甲烷酰胺代替Anandamide在这些先前的研究中取得进展。此外,我们不仅检查了大麻素受体的结合,而且通过放射自显影检查了WIN-55,212-2-刺激的[35S] -GTPgammaS结合,并通过原位杂交检查了大麻素受体的mRNA水平。结果如下。每天服用R-甲酰胺5天后,外侧尾状-丘脑,小脑,上皮髓核和黑质中的大麻素受体结合减少。其余区域,内侧尾状丘脑,苍白球,大脑皮层(I和VI层),海马(齿状回和Ammon角)和几个边缘结构(伏隔核,中隔核和基底外侧杏仁核)无变化。大麻素受体结合。同样,在长期暴露于R-甲烷酰胺后,海马Ammon角的外侧和内侧尾状豆状核以及CA1和CA2子域中的大麻素受体mRNA表达水平降低,而其余区域则没有变化。 WIN-55,212-2-刺激的[35S] -GTPgammaS结合在长期暴露于R-甲二胺的动物的外侧尾状-丘脑,大脑皮层(第一层),中隔核和海马结构(齿状回和阿蒙角)中没有改变,而在这些动物的黑质和大脑皮层深层(VI)中可以观察到一定的下降趋势。综上所述,正如其他大麻素受体激动剂所报道的那样,大鼠长期暴露于更稳定的anandamide类似物R-methanandamide,能够产生与大麻素受体相关的变化,而在代谢不稳定的早期则没有变化阿南酰胺。观察到的变化表现出明显的区域模式,其中区域如基底神经节,小脑和海马对慢性R-甲氨酰胺治疗有反应,而区域如大脑皮层和边缘核则无反应。

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