Department of Translational Bioscience, Human Health Therapeutics, National Research Council, 1200 Montreal Road, Ottawa, Ontario, Canada K1A 0R6.
Department of Translational Bioscience, Human Health Therapeutics, National Research Council, 1200 Montreal Road, Ottawa, Ontario, Canada K1A 0R6.
Eur J Pharmacol. 2018 Mar 15;823:96-104. doi: 10.1016/j.ejphar.2018.01.043. Epub 2018 Feb 4.
Synthetic cannabinoids are marketed as legal alternatives to Δ-THC, and are a growing worldwide concern as these drugs are associated with severe adverse effects. Unfortunately, insufficient information regarding the physiological and pharmacological effects of emerging synthetic cannabinoids (ESCs) makes their regulation by government authorities difficult. One strategy used to evade regulation is to distribute isomers of regulated synthetic cannabinoids. This study characterized the pharmacological properties of a panel of ESCs in comparison to Δ-THC, as well as six JWH-122 isomers relative to its parent compound (JWH-122-4). Two cell-based assays were used to determine the potency and efficacy of ESCs and a panel of reference cannabinoids. HEK293T cells were transfected with human cannabinoid receptor 1 (CB) and pGloSensor-22F, and the inhibition of forskolin-stimulated cyclic adenosine monophosphate (cAMP) levels was monitored in live cells. All ESCs examined were classified as agonists, with the following rank order of potency: Win 55,212-2 > CP 55,940 > JWH-122-4 > Δ-THC ≈ RCS-4 ≈ THJ-2201 > JWH-122-5 > JWH-122-7 > JWH-122-2 ≈ AB-CHMINACA > JWH-122-8 > JWH-122-6 > JWH-122-3. Evaluation of ESC-stimulated Ca transients in cultured rat primary hippocampal neurons confirmed the efficacy of four of the most potent ESCs (JWH-122-4, JWH-122-5, JWH-122-7 and AB-CHMINACA). This work helps regulatory agencies make informed decisions concerning these poorly characterized recreational drugs.
合成大麻素被宣传为 Δ-THC 的合法替代品,由于这些药物与严重的不良反应有关,因此在全球范围内引起了越来越多的关注。不幸的是,关于新兴合成大麻素(ESC)的生理和药理学作用的信息不足,使得政府当局难以对其进行监管。一种规避监管的策略是分发受管制合成大麻素的异构体。本研究比较了 Δ-THC 以及相对于其母体化合物 JWH-122-4 的六种 JWH-122 异构体,对一组 ESC 的药理学特性进行了表征。两种基于细胞的测定法用于确定 ESC 和一组参考大麻素的效力和功效。HEK293T 细胞转染了人大麻素受体 1(CB)和 pGloSensor-22F,并在活细胞中监测 forskolin 刺激的环磷酸腺苷(cAMP)水平的抑制作用。所有检查过的 ESC 都被归类为激动剂,其效力顺序如下:Win 55,212-2>CP 55,940>JWH-122-4>Δ-THC≈RCS-4≈THJ-2201>JWH-122-5>JWH-122-7>JWH-122-2≈AB-CHMINACA>JWH-122-8>JWH-122-6>JWH-122-3。在培养的大鼠原代海马神经元中评估 ESC 刺激的钙瞬变证实了四种最有效 ESC(JWH-122-4、JWH-122-5、JWH-122-7 和 AB-CHMINACA)的功效。这项工作有助于监管机构就这些特征较差的娱乐药物做出明智的决策。