首页> 外文期刊>Anesthesia and Analgesia: Journal of the International Anesthesia Research Society >The endocannabinoid anandamide inhibits voltage-gated sodium channels Nav1.2, Nav1.6, Nav1.7, and Nav1.8 in xenopus oocytes
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The endocannabinoid anandamide inhibits voltage-gated sodium channels Nav1.2, Nav1.6, Nav1.7, and Nav1.8 in xenopus oocytes

机译:内源性大麻素anandamide抑制爪蟾卵母细胞中电压门控性钠通道Nav1.2,Nav1.6,Nav1.7和Nav1.8

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BACKGROUND:: Anandamide is an endocannabinoid that regulates multiple physiological functions by pharmacological actions, in a manner similar to marijuana. Recently, much attention has been paid to the analgesic effect of endocannabinoids in terms of identifying new pharmacotherapies for refractory pain management, but the mechanisms of the analgesic effects of anandamide are still obscure. Voltage-gated sodium channels are believed to play important roles in inflammatory and neuropathic pain. We investigated the effects of anandamide on 4 neuronal sodium channel α subunits, Nav1.2, Nav1.6, Nav1.7, and Nav1.8, to explore the mechanisms underlying the antinociceptive effects of anandamide. METHODS:: We studied the effects of anandamide on Nav1.2, Nav1.6, Nav1.7, and Nav1.8 α subunits with β1 subunits by using whole-cell, 2-electrode, voltage-clamp techniques in Xenopus oocytes. RESULTS:: Anandamide inhibited sodium currents of all subunits at a holding potential causing half-maximal current (V1/2) in a concentration-dependent manner. The half-maximal inhibitory concentration values for Nav1.2, Nav1.6, Nav1.7, and Nav1.8 were 17, 12, 27, and 40 μmol/L, respectively, indicating an inhibitory effect on Nav1.6, which showed the highest potency. Anandamide raised the depolarizing shift of the activation curve as well as the hyperpolarizing shift of the inactivation curve in all α subunits, suggesting that sodium current inhibition was due to decreased activation and increased inactivation. Moreover, anandamide showed a use-dependent block in Nav1.2, Nav1.6, and Nav1.7 but not Nav1.8. CONCLUSION:: Anandamide inhibited the function of α subunits in neuronal sodium channels Nav1.2, Nav1.6, Nav1.7, and Nav1.8. These results help clarify the mechanisms of the analgesic effects of anandamide.
机译:背景:Anandamide是一种内源性大麻素,可通过药理作用以类似于大麻的方式调节多种生理功能。最近,在确定新的难治性疼痛药物治疗方面,内源性大麻素的镇痛作用引起了人们的广泛关注,但阿南酰胺的镇痛作用机理仍不清楚。电压门控钠通道被认为在炎性和神经性疼痛中起重要作用。我们调查了anandamide对4个神经元钠通道α亚基Nav1.2,Nav1.6,Nav1.7和Nav1.8的影响,以探索潜在的机制。方法::我们通过在爪蟾卵母细胞中使用全细胞,两电极,电压钳技术研究了金刚烷酰胺对带有β1子基的Nav1.2,Nav1.6,Nav1.7和Nav1.8α亚基的影响。结果:Anandamide在保持电位下抑制所有亚基的钠电流,以浓度依赖的方式引起半最大电流(V1 / 2)。 Nav1.2,Nav1.6,Nav1.7和Nav1.8的最大半数抑制浓度分别为17、12、27和40μmol/ L,表明对Nav1.6具有抑制作用。最高的效力。阿南酰胺提高了所有α亚基的激活曲线的去极化移动以及失活曲线的超极化移动,这表明钠电流抑制是由于激活减少和失活增加所致。此外,anandamide在Nav1.2,Nav1.6和Nav1.7中显示了与使用有关的阻止,但在Nav1.8中没有。结论:Anandamide抑制神经元钠通道Nav1.2,Nav1.6,Nav1.7和Nav1.8中α亚基的功能。这些结果有助于阐明Anandamide的镇痛作用机理。

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