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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Effect of synthetic cannabinoids on spontaneous neuronal activity: Evaluation using Ca2+ spiking and multi-electrode arrays
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Effect of synthetic cannabinoids on spontaneous neuronal activity: Evaluation using Ca2+ spiking and multi-electrode arrays

机译:合成大麻素对自发神经元活动的影响:使用Ca2 +掺加和多电极阵列进行评估

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Activation of cannabinoid receptor 1 (CB1) inhibits synaptic transmission in hippocampal neurons. The goal of this study was to evaluate the ability of benchmark and emerging synthetic cannabinoids to suppress neuronal activity in vitro using two complementary techniques, Ca2+ spiking and multi-electrode arrays (MEAs). Neuron culture and fluorescence imaging conditions were extensively optimized to provide maximum sensitivity for detection of suppression of neural activity by cannabinoids. The neuronal Ca2+ spiking frequency was significantly suppressed within 10 min by the prototypic aminoalkylindole cannabinoid, WIN 55,212-2 (10 mu M). Suppression by WIN 55,212-2 was not improved by pharmacological intervention with signaling pathways known to interfere with CB1 signaling. The naphthoylindole CB1 agonist, JWH-018 suppressed Ca2+ spiking at a lower concentration (2.5 mu M), and the CB1 antagonist rimonabant (5 mu M), reversed this suppression. In the MEA assay, the ability of synthetic CB1 agonists to suppress spontaneous electrical activity of hippocampal neurons was evaluated over 80 min sessions. All benchmark (WIN 55,212-2, HU-210, CP 55,940 and JWH-018) and emerging synthetic cannabinoids (XLR-11, JWH-250, 5F-PB-22, AB-PINACA and MAM-2201) suppressed neural activity at a concentration of 10 mu M; furthermore, several of these compounds also significantly suppressed activity at 1 mu M concentrations. Rimonabant partially reversed spiking suppression of 5F-PB-22 and, to a lesser extent, of MAM-2201, supporting CB1-mediated involvement, although the inactive WIN 55,212-3 also partially suppressed activity. Taken together, synthetic cannabinoid CB1-mediated suppression of neuronal activity was detected using Ca2+ spiking and MEAs. Crown Copyright (C) 2016 Published by Elsevier B.V. All rights reserved.
机译:大麻素受体1(CB1)的激活抑制海马神经元中的突触传递。这项研究的目的是使用两种补充技术(Ca2 +掺加和多电极阵列(MEA))评估基准和新兴合成大麻素在体外抑制神经元活性的能力。广泛优化了神经元培养和荧光成像条件,以提供最大的灵敏度来检测大麻素对神经活动的抑制作用。原型氨基烷基吲哚大麻素WIN 55,212-2(10μM)在10分钟内显着抑制了神经元Ca2 +突增频率。 WIN 55,212-2的抑制作用并未通过已知干扰CB1信号传导的信号传导途径进行药理干预而得到改善。萘甲吲哚CB1激动剂JWH-018以较低的浓度(2.5μM)抑制Ca2 +突增,而CB1拮抗剂利莫那班(5μM)则逆转了这种抑制作用。在MEA分析中,在80分钟的疗程中评估了合成CB1激动剂抑制海马神经元自发电活动的能力。所有基准测试(WIN 55,212-2,HU-210,CP 55,940和JWH-018)和新兴的合成大麻素(XLR-11,JWH-250、5F-PB-22,AB-PINACA和MAM-2201)都抑制了神经活动浓度为10μM;此外,这些化合物中的几种在1μM浓度下也显着抑制了活性。利莫那班能部分逆转5F-PB-22和MAM-2201的峰值抑制,支持CB1介导的参与,尽管无活性WIN 55,212-3也能部分抑制活性。综上所述,使用Ca2 +加标和MEAs检测到合成大麻素CB1介导的神经元活性抑制。官方版权(C)2016,由Elsevier B.V.保留所有权利。

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