Kasuya Hikaru, Okada Narumi, Kubohara Mika, Satou Tadaaki, Masuo Yoshinori, Koike Kazuo
Faculty of Pharmaceutical Sciences, Toho University, Funabashi, Chiba, 274-8510, Japan.
Phytother Res. 2015 Jan;29(1):43-7. doi: 10.1002/ptr.5224. Epub 2014 Sep 17.
Essential oils are mainly administered by inhalation. Administration by inhalation is considered to occur through two pathways, neurological transfer and pharmacological transfer. However, the relationship between the two routes is not clear. To clarify this relationship, we administered α-pinene, which has an anxiolytic-like effect, to mice. Emotional behavior and accumulation and expression of relevant mRNAs in the brain (brain-derived neurotrophic factor (BDNF); tyrosine hydroxylase (TH)) were examined following inhaled administration of α-pinene (10 μL/L air for 60 or 90min). To evaluate the anxiolytic-like effect, the elevated plus maze (EPM) test was used. Inhalation of α-pinene for 60 min produced a significant increase in the total distance traveled in the EPM test compared with control (water). The concentration of α-pinene in the brain after 60 min of inhalation was significantly increased compared with that after 90 min of inhalation. The expression of BDNF mRNA in the olfactory bulb and in the hippocampus was almost the same after 60 min of inhalation compared to that after 90 min of inhalation. The expression of TH mRNA in the midbrain after 60 min of inhalation was significantly increased compared with that of the control. Thus, an increase in α-pinene in the brain induces an increase in TH mRNA expression and increases locomotor activity. The anxiolytic-like effect may be related to both neurological transfer and pharmacological transfer.
精油主要通过吸入给药。吸入给药被认为通过两种途径发生,即神经传递和药理传递。然而,这两种途径之间的关系尚不清楚。为了阐明这种关系,我们给小鼠施用了具有抗焦虑样作用的α-蒎烯。在吸入α-蒎烯(10μL/L空气,持续60或90分钟)后,检测小鼠的情绪行为以及大脑中相关mRNA的积累和表达(脑源性神经营养因子(BDNF);酪氨酸羟化酶(TH))。为了评估抗焦虑样作用,使用了高架十字迷宫(EPM)试验。与对照组(水)相比,吸入α-蒎烯60分钟后,EPM试验中的总行进距离显著增加。吸入60分钟后大脑中α-蒎烯的浓度比吸入90分钟后显著增加。吸入60分钟后嗅球和海马体中BDNF mRNA的表达与吸入90分钟后几乎相同。吸入60分钟后中脑TH mRNA的表达与对照组相比显著增加。因此,大脑中α-蒎烯的增加会诱导TH mRNA表达增加并增加运动活性。抗焦虑样作用可能与神经传递和药理传递都有关。