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Nectandra grandiflora essential oil and its isolated sesquiterpenoids minimize anxiety-related behaviors in mice through GABAergic mechanisms

机译:Nectandra Grandiflora精油及其孤立的倍二萜类化合物通过Gabaeric机制使小鼠中的焦虑相关行为最大限度地减少

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Nectandra grandiflora Ness (Lauraceae) essential oil (EO) main constituent, the sesquiterpenoid ( + )-dehy-drofukinone (DHF), has sedative and anticonvulsant effects through GABAergic mechanisms. Other DHF-related sesquiterpenoids have been identified in the EO, such as, dehydrofukinone epoxide (DFX), eremophil-11-en-10-ol (ERM) and selin-11-en-4-α-ol (SEL). However, the neuronal effects of these compounds in mammals remain unknown. Therefore, the aim of this study was to evaluate the anxiolytic potential of the N. grandiflora EO and the isolated compounds in in mice. For this purpose, mice were administered orally with vehicle, 10, 30 or 100mg/kg EO, DHF, DFX, ERM or SEL or 1 mg/kg diazepam. Locomotion and ethological parameters in the open field (OF) and elevated plus maze (EPM) were recorded. We also examined the effect of DFX, ERM and SEL on the membrane potential and calcium influx in synaptosomes, and the presence of the compounds in the cortical tissue using gas chromatography. EOs and isolated compounds reduced anxiety-related parameters in the EPM (open arms time and entries, end activity, head dipping) and OF (center time and entries, total rearing, unprotected rearing, sniffing, grooming) without alter ambulation or induce sedation. Flumazenil (2 mg/kg, i.p.) altered the anxiolytic-like effect of all treatments and vanished the DFX, ERM and SEL-induced changes in membrane potential. However, FMZ did not blocked the DFX-, ERM- and SEL-induced inhibition of calcium influx. Therefore, our results suggest that N. grandiflora EO and isolated compounds induced anxiolytic-like effect in mice due to positive modulation of GABAa receptors and/or inhibition of neuronal calcium influx.
机译:Nectandra Grandiflora Ness(Lauraceae)精油(EO)主要成分,Sesquiterpenoid(+)-Dehy-Drofukinone(DHF),通过加巴能机制具有镇静和抗惊厥作用。在EO中鉴定了其他DHF相关的倍二萜类化合物,例如脱氢膦酮环氧化物(DFX),EREMOPHIL-11-ZH-10-OL(ERM)和SELIN-11-EN-4-α-OL(SEL)。然而,这些化合物在哺乳动物中的神经元效应仍然是未知的。因此,本研究的目的是评估N. Grandiflora EO和小鼠中分离的化合物的抗焦虑潜力。为此目的,用载体,10,30或100mg / kg EO,DHF,DFX,ERM或SEL或1mg / kg diazepam施用小鼠。记录了开放领域(其中)和高迷宫(EPM)中的运动和道德学参数。我们还检查了DFX,ERM和SEL在突触体中膜电位和钙流入的影响,以及使用气相色谱法在皮质组织中存在化合物。 EOS和孤立的化合物在EPM中减少了焦虑相关参数(开放式臂时间和条目,最终活动,头浸)和(中心时间和条目,总饲养,无保护,嗅探,修饰),而无需改变救护或诱导镇静。 Flumazenil(2mg / kg,i.p.)改变了所有治疗的抗焦虑效果,消失了DFX,ERM和SEL诱导的膜电位变化。然而,FMZ没有阻断DFX,ERM-和SEL诱导的钙流入的抑制。因此,我们的结果表明,由于GABAA受体的阳性调节和/或神经元钙流入的抑制,N. Grandiflora EO和分离的化合物诱导了小鼠中的抗焦状效果。

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