Serena Boccella, Antimo Fusco, Federica Ricciardi, Andrea Maria Morace, Roozbe Bonsale, Michela Perrone, Ida Marabese, Danilo De Gregorio, Carmela Belardo, Luca Posa, Laura Rullo, Fabiana Piscitelli, Vincenzo di Marzo, Alessandro Nicois, Brenda Marfella, Luigia Cristino, Livio Luongo, Francesca Guida, Sanzio Candeletti, Gabriella Gobbi, Patrizia Romualdi, Sabatino Maione
{"title":"急性 Kappa 阿片受体阻断会破坏大麻二酚对神经病理性大鼠的认知促进作用。","authors":"Serena Boccella, Antimo Fusco, Federica Ricciardi, Andrea Maria Morace, Roozbe Bonsale, Michela Perrone, Ida Marabese, Danilo De Gregorio, Carmela Belardo, Luca Posa, Laura Rullo, Fabiana Piscitelli, Vincenzo di Marzo, Alessandro Nicois, Brenda Marfella, Luigia Cristino, Livio Luongo, Francesca Guida, Sanzio Candeletti, Gabriella Gobbi, Patrizia Romualdi, Sabatino Maione","doi":"10.1016/j.neuropharm.2024.110265","DOIUrl":null,"url":null,"abstract":"<p><p>Cannabidiol has been shown to ameliorate neuropathic pain and its affective components. Previous studies highlighted the pharmacological interaction between the CBD and opioid system, particularly the MOR, but the understanding of the interaction between CBD and kappa opioid receptor (KOR), physiologically stimulated by the endogenous opioid dynorphin, remains elusive. 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Noteworthy, the acute blockade of the KOR carried out after CBD repeated administration causes the re-installment of some neuropathic condition symptoms. 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引用次数: 0
摘要
研究表明,大麻二酚可改善神经性疼痛及其影响因素。以前的研究强调了大麻二酚与阿片系统(尤其是 MOR)之间的药理相互作用,但对大麻二酚与卡巴阿片受体(KOR)之间的相互作用(KOR 在生理上受到内源性阿片类物质达因吗啡的刺激)的理解仍然模糊不清。我们在大鼠神经病理性疼痛模型中评估了 CBD 与选择性 KOR 拮抗剂 nor-BNI 之间的药理相互作用。我们发现,神经病理性大鼠海马齿状回(DG)中的达诺啡肽及其 KOR 受体增加,表现出异痛症和记忆障碍。与这些发现一致的是,神经性疼痛与内侧皮层-牙状回(也称为外侧穿孔通路(LPP))的长期电位(LTP)受损有关。此外,在神经病理性疼痛动物体内检测到了内源性大麻素 2-AG 的下调和 DG 中大麻素 CB1 受体的上调。急性 KOR 拮抗剂给药或一周的 CBD 治疗均可使达吗啡水平恢复正常,并改善情感症状、LTP 和受体表达,而只有 CBD 显示出抗镇痛作用。此外,CBD 还能使 SNI 诱导的神经可塑性变化以及 DG 中的内源性大麻素和 GABA 水平恢复正常。值得注意的是,CBD 重复给药后对 KOR 的急性阻断会导致一些神经病理性症状的重新出现。总之,这些原创性结果表明,CBD 在海马中产生的适应性变化与维持恢复生理的达因啡肽张力以保持 CBD 对神经病理性大鼠的治疗效果之间存在着重要关系。
Acute kappa opioid receptor blocking disrupts the pro-cognitive effect of cannabidiol in neuropathic rats.
Cannabidiol has been shown to ameliorate neuropathic pain and its affective components. Previous studies highlighted the pharmacological interaction between the CBD and opioid system, particularly the MOR, but the understanding of the interaction between CBD and kappa opioid receptor (KOR), physiologically stimulated by the endogenous opioid dynorphin, remains elusive. We assessed the pharmacological interactions between CBD and nor-BNI, a selective KOR antagonist in a rat neuropathic pain model. We show an increase in dynorphin peptide and its KOR receptors in the hippocampus' dentate gyrus (DG) of neuropathic rats showing allodynia, and memory deficits. Consistent with these findings, neuropathic pain was associated with long-term potentiation (LTP) impairment in the entorhinal cortex-DG, also referred to as the lateral perforant pathway (LPP). Moreover, a downregulation of the endocannabinoid 2-AG and an upregulation of the cannabinoid CB1 receptors in the DG were detected in neuropathic pain animals. Either an acute KOR antagonist administration or one-week CBD treatment normalized dynorphin levels and improved affective symptoms, LTP and receptor expression, whereas only CBD showed an anti-allodynic effect. In addition, CBD normalized the SNI-induced changes in neuroplasticity as well as endocannabinoid and GABA levels in the DG. Noteworthy, the acute blockade of the KOR carried out after CBD repeated administration causes the re-installment of some neuropathic condition symptoms. As a whole, these original results indicate a critical relationship between the adaptive changes in the hippocampus produced by CBD and the need to maintain the recovered physiological dynorphin tone to preserve the therapeutic effect of CBD in neuropathic rats.
期刊介绍:
Neuropharmacology publishes high quality, original research and review articles within the discipline of neuroscience, especially articles with a neuropharmacological component. However, papers within any area of neuroscience will be considered. The journal does not usually accept clinical research, although preclinical neuropharmacological studies in humans may be considered. The journal only considers submissions in which the chemical structures and compositions of experimental agents are readily available in the literature or disclosed by the authors in the submitted manuscript. Only in exceptional circumstances will natural products be considered, and then only if the preparation is well defined by scientific means. Neuropharmacology publishes articles of any length (original research and reviews).