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大麻二酚及其合成类似物的分子靶点:对香草酸受体1(VR1)以及花生四烯酸乙醇胺细胞摄取和酶促水解的影响

Molecular targets for cannabidiol and its synthetic analogues: effect on vanilloid VR1 receptors and on the cellular uptake and enzymatic hydrolysis of anandamide.

作者信息

Bisogno T, Hanus L, De Petrocellis L, Tchilibon S, Ponde D E, Brandi I, Moriello A S, Davis J B, Mechoulam R, Di Marzo V

机构信息

Endocannabinoid Research Group, Istituto per la Chimica di Molecole di Interesse Biologico, Consiglio Nazionale delle Ricerche, Via Campi Flegrei 34, Comprensorio Olivetti, Fabbricato 70, 80078 Pozzuoli (Napoli), Italy.

出版信息

Br J Pharmacol. 2001 Oct;134(4):845-52. doi: 10.1038/sj.bjp.0704327.

Abstract
  1. (-)-Cannabidiol (CBD) is a non-psychotropic component of Cannabis with possible therapeutic use as an anti-inflammatory drug. Little is known on the possible molecular targets of this compound. We investigated whether CBD and some of its derivatives interact with vanilloid receptor type 1 (VR1), the receptor for capsaicin, or with proteins that inactivate the endogenous cannabinoid, anandamide (AEA). 2. CBD and its enantiomer, (+)-CBD, together with seven analogues, obtained by exchanging the C-7 methyl group of CBD with a hydroxy-methyl or a carboxyl function and/or the C-5' pentyl group with a di-methyl-heptyl (DMH) group, were tested on: (a) VR1-mediated increase in cytosolic Ca(2+) concentrations in cells over-expressing human VR1; (b) [(14)C]-AEA uptake by RBL-2H3 cells, which is facilitated by a selective membrane transporter; and (c) [(14)C]-AEA hydrolysis by rat brain membranes, which is catalysed by the fatty acid amide hydrolase. 3. Both CBD and (+)-CBD, but not the other analogues, stimulated VR1 with EC(50)=3.2 - 3.5 microM, and with a maximal effect similar in efficacy to that of capsaicin, i.e. 67 - 70% of the effect obtained with ionomycin (4 microM). CBD (10 microM) desensitized VR1 to the action of capsaicin. The effects of maximal doses of the two compounds were not additive. 4. (+)-5'-DMH-CBD and (+)-7-hydroxy-5'-DMH-CBD inhibited [(14)C]-AEA uptake (IC(50)=10.0 and 7.0 microM); the (-)-enantiomers were slightly less active (IC(50)=14.0 and 12.5 microM). 5. CBD and (+)-CBD were also active (IC(50)=22.0 and 17.0 microM). CBD (IC(50)=27.5 microM), (+)-CBD (IC(50)=63.5 microM) and (-)-7-hydroxy-CBD (IC(50)=34 microM), but not the other analogues (IC(50)>100 microM), weakly inhibited [(14)C]-AEA hydrolysis. 6. Only the (+)-isomers exhibited high affinity for CB(1) and/or CB(2) cannabinoid receptors. 7. These findings suggest that VR1 receptors, or increased levels of endogenous AEA, might mediate some of the pharmacological effects of CBD and its analogues. In view of the facile high yield synthesis, and the weak affinity for CB(1) and CB(2) receptors, (-)-5'-DMH-CBD represents a valuable candidate for further investigation as inhibitor of AEA uptake and a possible new therapeutic agent.
摘要
  1. (-)-大麻二酚(CBD)是大麻中的一种非精神活性成分,可能作为抗炎药物具有治疗用途。关于该化合物可能的分子靶点知之甚少。我们研究了CBD及其一些衍生物是否与1型香草酸受体(VR1,辣椒素受体)相互作用,或者是否与使内源性大麻素花生四烯乙醇胺(AEA)失活的蛋白质相互作用。2. CBD及其对映体(+)-CBD,以及通过将CBD的C-7甲基换成羟甲基或羧基官能团和/或将C-5'戊基换成二甲基庚基(DMH)基团得到的七种类似物,被用于以下实验:(a)在过表达人VR1的细胞中检测VR1介导的胞质Ca²⁺浓度升高;(b)检测RBL-2H3细胞对[¹⁴C]-AEA的摄取,其由一种选择性膜转运体促进;(c)检测大鼠脑膜对[¹⁴C]-AEA的水解,其由脂肪酸酰胺水解酶催化。3. CBD和(+)-CBD,但不是其他类似物,以EC₅₀ = 3.2 - 3.5微摩尔刺激VR1,且最大效应在效力上与辣椒素相似,即达到离子霉素(4微摩尔)所获效应的67 - 70%。CBD(10微摩尔)使VR1对辣椒素的作用脱敏。两种化合物最大剂量的效应并非相加。4. (+)-5'-DMH-CBD和(+)-7-羟基-5'-DMH-CBD抑制[¹⁴C]-AEA摄取(IC₅₀ = 10.0和7.0微摩尔);(-)-对映体活性稍低(IC₅₀ = 14.0和12.5微摩尔)。5. CBD和(+)-CBD也有活性(IC₅₀ = 22.0和17.0微摩尔)。CBD(IC₅₀ = 27.5微摩尔)、(+)-CBD(IC₅₀ = 63.5微摩尔)和(-)-7-羟基-CBD(IC₅₀ = 34微摩尔),但不是其他类似物(IC₅₀>100微摩尔),微弱抑制[¹⁴C]-AEA水解。6. 只有(+)-异构体对CB₁和/或CB₂大麻素受体表现出高亲和力。7. 这些发现表明VR1受体,或内源性AEA水平升高,可能介导了CBD及其类似物的一些药理作用。鉴于其易于高产合成,且对CB₁和CB₂受体亲和力弱,(-)-5'-DMH-CBD作为AEA摄取抑制剂和可能的新型治疗剂,是进一步研究的有价值候选物。

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