Hainan Provincial Key Laboratory of Resources Conservation and Development of Southern Medicine, Hainan Branch of the Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences, Peking Union Medical College, Haikou 570311, China.
Key Laboratory of State Administration of Traditional Chinese Medicine for Agarwood Sustainable Utilization, Hainan Branch of the Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences, Peking Union Medical College, Haikou 570311, China.
Molecules. 2022 May 28;27(11):3483. doi: 10.3390/molecules27113483.
Agarwood has been used for the administration of hypnotic therapy. Its aromatic scent induces a relaxed state. However, its aromatic constituents and the underlying molecular effect are still unclear. This study aims to determine the active substance and molecular mechanism of the hypnotic effect of agarwood essential oil (AEO) incense inhalation in insomniac mice. Insomnia models were induced by para-chlorophenylalanine (PCPA, 300 mg/kg) in mice. The sleep-promoting effect was evaluated. Neurotransmitter levels and its receptor were detected to explore the molecular mechanism. The effective components were analyzed by GC-Q/TOF-MS of AEO. The binding mechanisms of the core compounds and core targets were verified by molecular docking. These results showed that AEO inhalation could significantly shorten sleep latency and prolong sleep time, inhibit autonomous activity and exert good sedative and sleep-promoting effects. A mechanistic study showed that AEO inhalation increased the levels of γ-aminobutyric acid (GABA), the GABA/glutamic acid (Glu) ratio, 5-hydroxytryptamine (5-HT) and adenosine (AD), upregulated the expression levels of GluR1, VGluT1 and 5-HT1A and downregulated 5-HT2A levels. Component analysis showed that the most abundant medicinal compounds were eremophilanes, cadinanes and eudesmanes. Moreover, the docking results showed that the core components stably bind to various receptors. The study demonstrated the bioactive constituents and mechanisms of AEO in its sedative and hypnotic effects and its multicomponent, multitarget and multipathway treatment characteristics in PCPA-induced insomniac mice. These results provide theoretical evidence for insomnia treatment and pharmaceutical product development with AEO.
沉香被用于催眠治疗。它的芳香气味能使人放松。然而,其芳香成分和潜在的分子作用尚不清楚。本研究旨在确定沉香精油(AEO)熏香吸入对失眠症小鼠催眠作用的活性物质和分子机制。通过对小鼠给予对氯苯丙氨酸(PCPA,300mg/kg)来诱导失眠模型,评估其催眠作用。检测神经递质及其受体,以探讨其分子机制。通过 AEO 的 GC-Q/TOF-MS 分析有效成分。通过分子对接验证核心化合物和核心靶点的结合机制。结果表明,AEO 熏香吸入可显著缩短睡眠潜伏期,延长睡眠时间,抑制自主活动,具有良好的镇静和催眠作用。机制研究表明,AEO 熏香吸入可增加γ-氨基丁酸(GABA)、GABA/谷氨酸(Glu)比值、5-羟色胺(5-HT)和腺苷(AD)的水平,上调 GluR1、 VGluT1 和 5-HT1A 的表达水平,下调 5-HT2A 水平。成分分析表明,药用化合物中含量最丰富的是愈创木烷、卡丹烷和桉烷。此外,对接结果表明核心成分能与各种受体稳定结合。该研究表明,AEO 具有镇静和催眠作用的生物活性成分和机制,以及在 PCPA 诱导的失眠症小鼠中具有多成分、多靶点和多途径的治疗特点。这些结果为 AEO 治疗失眠症和开发药物产品提供了理论依据。