氟马西尼
药理学
抗焦虑药
高架加迷宫
γ-氨基丁酸受体
苯二氮卓
抗惊厥药
开阔地
尾部悬挂试验
行为绝望测验
5-羟色胺能
荷包牡丹碱
心理学
化学
医学
抗抑郁药
内科学
癫痫
受体
神经科学
焦虑
血清素
精神科
海马体
作者
George Laylson da Silva Oliveira,José C Correia L da Silva,Ana P Dos Santos C L da Silva,Chistiane Mendes Feitosa,Fernanda Campos Sousa de Almeida
出处
期刊:Current Molecular Pharmacology
[Bentham Science]
日期:2020-12-31
卷期号:14 (1): 36-51
被引量:16
标识
DOI:10.2174/1874467213666200510004622
摘要
Central nervous system disorders such as anxiety, depression and epilepsy are characterized by sharing several molecular mechanisms in common and the involvement of the L-arginine/NO pathway in neurobehavioral studies with β-caryophyllene is still little discussed.One of the objectives of the present study was to demonstrate the anxiolytic behavioral effect of β-caryophyllene (β-CBP) in female Swiss mice, as well as to investigate the molecular mechanisms underlying the results obtained.This study evaluated the neurobehavioral effects of β-CBP using the open field test, rota- rod test, elevated plus maze test, novelty suppressed feeding test, tail suspension test and forced swim test, as well as pilocarpine, pentylenetetrazole and isoniazid-induced epileptic seizure models.The results demonstrated that the neuropharmacological activities of β-CBP may involve benzodiazepine/GABAergic receptors, since the pre-treatment of β-CBP (200 mg/kg) associated with flumazenil (5 mg/kg, benzodiazepine receptor antagonist) and bicuculline (1 mg/kg, selective GABAA receptor antagonist) reestablished the anxiety parameters in the elevated plus-maze test, as well as the results of reduced latency to consume food in the novelty suppressed feeding test. In addition to benzodiazepine/GABAergic receptors, the neuropharmacological properties of β-CBP may be related to inhibition of nitric oxide synthesis, since pre-treatment with L-arginine (500-750 mg/kg) reversed significantly the anxiolytic, antidepressant and anticonvulsant activities of β-CBP.The results obtained provide additional support in understanding the neuromolecular mechanisms underlying the anxiolytic, antidepressant and anticonvulsive properties of β-CBP in female Swiss mice.
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