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Density of α4β2* nAChR on the surface of neurons is modulated by chronic antagonist exposure

机译:慢性拮抗剂暴露可调节神经元表面α4β2* nAChR的密度

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摘要

The expression of high-affinity α4β2* nicotinic acetylcholine receptors (nAChR) increases following chronic exposure to nicotinic agonists. While, nAChR antagonists can also produce upregulation, these changes are often less pronounced than achieved with agonists. It is unknown if nAChR agonists and antagonists induce receptor upregulation by the same mechanisms. In this study, primary neuronal cultures prepared from cerebral cortex, hippocampus, diencephalon, and midbrain/hindbrain of C57BL/6J mouse embryos were treated chronically with nicotine (agonist), mecamylamine (noncompetitive antagonist) or dihydro-β-erythroidine (competitive antagonist) or the combination of nicotine with each antagonist. The distribution of intracellular and surface [125I]epibatidine-binding sites were subsequently measured. Treatment with 1 μmol/L nicotine upregulated intracellular and cell surface [125I]epibatidine binding after 96 h. Chronic dihydro-β-erythroidine (10 μmol/L) treatment also increased [125I]epibatidine binding on the cell surface; however, mecamylamine was ineffective in upregulating receptors by itself. The combination of 1 μmol/L nicotine plus 10 μmol/L mecamylamine elicited a significantly higher upregulation than that achieved by treatment with nicotine alone due to an increase of [125I]epibatidine binding on the cell surface. This synergistic effect of mecamylamine and nicotine was found in neuronal cultures from all four brain regions. Chronic treatment with nicotine concentrations as low as 10 nmol/L produced upregulation of [125I]epibatidine binding. However, the effect of mecamylamine was observed only after coincubation with nicotine concentrations equal to or greater than 100 nmol/L. Vesicular trafficking was required for both nicotine and nicotine plus mecamylamine-induced upregulation. Results presented here support the idea of multiple mechanisms for nAChR upregulation.
机译:长期暴露于烟碱激动剂后,高亲和力α4β2*烟碱乙酰胆碱受体(nAChR)的表达增加。尽管nAChR拮抗剂也可以产生上调,但这些变化通常不如激动剂那么明显。 nAChR激动剂和拮抗剂是否通过相同的机制诱导受体上调尚不清楚。在这项研究中,使用尼古丁(激动剂),美卡敏(非竞争性拮抗剂)或二氢-β-赤藓类药物(竞争性拮抗剂)对C57BL / 6J小鼠胚胎的大脑皮层,海马,中脑和中脑/后脑制备的原代神经元培养物进行了长期治疗。或尼古丁与每种拮抗剂的组合。随后测量细胞内和表面[ 125 I]表巴替丁结合位点的分布。 96小时后,用1μmol/ L尼古丁处理可上调细胞内和细胞表面[ 125 I]依巴替丁的结合。慢性二氢-β-赤藓类素(10μmol/ L)处理也增加了[ 125 I]依巴替丁在细胞表面的结合;然而,美卡明胺本身不能有效地调节受体。 1μmol/ L尼古丁加10μmol/ L的美加明胺的组合引起的上调明显高于单独使用尼古丁的治疗,这是由于[ 125 I]依巴替丁在细胞表面的结合增加。在所有四个大脑区域的神经元培养物中均发现了美加明胺和尼古丁的这种协同作用。尼古丁浓度低至10nmol / L的慢性处理会导致[ 125 I]依巴替丁结合的上调。但是,仅在烟碱浓度等于或大于100 nmol / L的共孵育后才观察到美甲胺的作用。尼古丁和尼古丁加美卡敏胺诱导的上调都需要囊泡运输。本文提供的结果支持nAChR上调的多种机制。

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