首页> 外文期刊>The Journal of Physiology >Distinctive nicotinic acetylcholine receptor functional phenotypes of rat ventral tegmental area dopaminergic neurons.
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Distinctive nicotinic acetylcholine receptor functional phenotypes of rat ventral tegmental area dopaminergic neurons.

机译:大鼠腹侧被盖区多巴胺能神经元的独特烟碱型乙酰胆碱受体功能表型。

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Dopaminergic (DAergic) neuronal activity in the ventral tegmental area (VTA) is thought to contribute generally to pleasure, reward, and drug reinforcement and has been implicated in nicotine dependence. nAChRs expressed in the VTA exhibit diverse subunit compositions, but the functional and pharmacological properties are largely unknown. Here, using patch-clamp recordings in single DAergic neurons freshly dissociated from rat VTA, we clarified three functional subtypes of nAChRs (termed ID, IID and IIID receptors) based on whole-cell current kinetics and pharmacology. Kinetic analysis demonstrated that comparing to ID, IID receptor-mediated current had faster activation and decay constant and IIID receptor-mediated current had larger current density. Pharmacologically, ID receptor-mediated current was sensitive to the alpha4beta2-nAChR agonist RJR-2403 and antagonist dihydro-beta-erythroidine (DHbetaE); IID receptor-mediated current was sensitive to the selective alpha7-nAChR agonist choline and antagonist methyllycaconitine (MLA); while IIID receptor-mediated current was sensitive to the beta4-containing nAChR agonist cytisine and antagonist mecamylamine (MEC). The agonist concentration-response relationships demonstrated that IID receptor-mediated current exhibited the highest EC(50) value compared to ID and IIID receptors, suggesting a relatively low agonist affinity of type IID receptors. These results suggest that the type ID, IID and IIID nAChR-mediated currents are predominately mediated by activation of alpha4beta2-nAChR, alpha7-nAChR and a novel nAChR subtype(s), respectively. Collectively, these findings indicate that the VTA DAergic neurons express diversity and multiplicity of functional nAChR subtypes. Interestingly, each DAergic neuron predominantly expresses only one particularly functional nAChR subtype, which may have distinct but important roles in regulation of VTA DA neuronal function, DA transmission and nicotine dependence.
机译:人们认为腹侧被盖区(VTA)的多巴胺能(DAergic)神经元活动通常有助于愉悦,奖赏和药物增强,并且与尼古丁依赖性有关。 VTA中表达的nAChRs表现出不同的亚基组成,但在功能和药理学性质上尚不清楚。在这里,使用从大鼠VTA上新鲜分离的单个DA能神经元的膜片钳记录,我们基于全细胞电流动力学和药理学阐明了nAChR的三种功能亚型(称为ID,IID和IIID受体)。动力学分析表明,与ID相比,IID受体介导的电流具有更快的活化和衰减常数,而IIID受体介导的电流具有更大的电流密度。在药理学上,ID受体介导的电流对alpha4beta2-nAChR激动剂RJR-2403和拮抗剂二氢-β-类胡萝卜素(DHbetaE)敏感。 IID受体介导的电流对选择性α7-nAChR激动剂胆碱和拮抗剂甲基可卡因碱(MLA)敏感。而IIID受体介导的电流对含β4的nAChR激动剂胱氨酸和拮抗剂美卡明胺(MEC)敏感。激动剂浓度-反应关系表明,与ID和IIID受体相比,IID受体介导的电流表现出最高的EC(50)值,表明IID受体的激动剂亲和力相对较低。这些结果表明,分别由α4beta2-nAChR,α7-nAChR和新颖的nAChR亚型的激活来主要介导类型ID,IID和IIID nAChR介导的电流。这些发现共同表明,VTA DA能神经元表达功能性nAChR亚型的多样性和多样性。有趣的是,每个DA能神经元主要仅表达一种特别功能的nAChR亚型,它在VTA DA神经元功能,DA传递和尼古丁依赖性调节中可能具有独特但重要的作用。

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