首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Membrane potential fluorescence: a rapid and highly sensitive assay for nicotinic receptor channel function.
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Membrane potential fluorescence: a rapid and highly sensitive assay for nicotinic receptor channel function.

机译:膜电位荧光:烟碱受体通道功能的快速且高度灵敏的测定。

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摘要

Seven cell lines expressing native and transfected nicotinic receptor subtypes were evaluated functionally by using fluorescent assays based on membrane potential and calcium dynamics with "no-wash" dye systems. Both assays provided the same rank orders of potency for (+/-)-epibatidine, 2S-(-)-nicotine, 7R,9S-(-)-cytisine, and 1,1-dimethyl-4-phenylpiperazinium in a cell line expressing rat alpha 3 beta 4 receptors. Nicotinic antagonists mecamylamine and dihydro-beta-erythroidine inhibited responses in both assays. Both agonist and antagonist activity were assessed within the same experiment. Agonists seemed more potent in the membrane potential assay than in the calcium assay, whereas the converse was true for antagonists. The membrane potential assay afforded robust responses in K-177 cells expressing human alpha 4 beta 2 receptors, in IMR-32 and SH-SY5Y cells expressing human ganglionic receptors, and in TE-671 cells expressing human neuromuscular receptors. These lines gave weak to modest calcium responses. Moreover, membrane potential responses were obtained in cell lines expressing rat alpha 4 beta 2 and alpha 4 beta 4 receptors, which were devoid of calcium responses. Thus, membrane potential serves as a sensitive measure of nicotinic activity, and the resulting depolarization may be as important as calcium in cell signaling.
机译:通过使用基于膜电位和“免清洗”染料系统的钙动力学的荧光测定,功能性评估了表达天然和转染的烟碱样受体亚型的七个细胞系。两种检测方法在细胞系中对(+/-)-表巴替丁,2S-(-)-烟碱,7R,9S-(-)-胱氨酸和1,1-二甲基-4-苯基哌嗪鎓的效价等级顺序相同表达大鼠α3β4受体。在这两种测定中,烟碱拮抗剂美加明和二氢-β-类胡萝卜素均抑制反应。在同一实验中评估了激动剂和拮抗剂的活性。激动剂在膜电位测定中似乎比在钙测定中更有效,而对于拮抗剂而言相反。膜电位测定法在表达人α4β2受体的K-177细胞,表达人神经节受体的IMR-32和SH-SY5Y细胞以及表达人神经肌肉受体的TE-671细胞中提供了强有力的响应。这些谱线给出了弱至中等的钙反应。此外,在表达大鼠α4β2和α4β4受体的细胞系中获得了膜电位反应,这些细胞缺乏钙反应。因此,膜电位可作为烟碱活性的敏感指标,在细胞信号转导中,产生的去极化可能与钙一样重要。

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