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基于网络药理学的肉桂油-龙脑镇静催眠作用机制研究。

A Study on the Mechanism of the Sedative-hypnotic Effect of Cinnamomum camphora chvar. Borneol Essential Oil Based on Network Pharmacology.

机构信息

State Key Laboratory of Food Science and Technology, Jiangnan University.

School of Food Science and Technology, Jiangnan University.

出版信息

J Oleo Sci. 2022 Jul 1;71(7):1063-1073. doi: 10.5650/jos.ess21278. Epub 2022 Jun 10.

Abstract

In this paper, we investigated the sedative-hypnotic effect of Cinnamomum camphora chvar. Borneol essential oil (BEO, 16.4% borneol), a by-product of steam distillation of Cinnamomum camphora chvar. Borneol, from which natural crystalline borneol (NCB, 98.4% borneol) is obtained. Using locomotor activity tests and pentobarbital sodium-induced sleep test, it was found that BEO significantly reduced locomotor activity (p < 0.05), shortened sleep latency (p < 0.0001), prolonged sleep duration (p < 0.05), and had a sedative-hypnotic effect. We constructed the "components-targets-signaling pathways" and "proteinprotein interaction" (PPI) network of BEO using network pharmacology. The results show that the 24 active components of BEO acted on 17 targets, mainly through response to alkaloid and catecholamine transport, and neuroactive ligand-receptor interaction. The PPI network identified 12 key proteins, mainly dopamine receptor (DR)D2, opioid receptor mu 1 (OPRM1), and opioid receptor kappa 1 (OPRK1), and we further analyzed the active components and targets of BEO through molecular docking. The results showed that the active components and targets obtained by network pharmacology analyses had good binding activity, which reflected their multi-component, multi-target, multi-pathway action characteristics. This paper provides a theoretical basis for further study of the mechanism of action of BEO in the treatment of insomnia.

摘要

在本文中,我们研究了樟科樟属植物龙脑香精油(BEO,16.4%龙脑)的镇静催眠作用,BEO 是从樟科樟属植物龙脑香中提取天然结晶龙脑(NCB,98.4%龙脑)的水蒸气蒸馏的副产物。通过运动活性测试和戊巴比妥钠诱导的睡眠试验,发现 BEO 显著降低运动活性(p<0.05),缩短睡眠潜伏期(p<0.0001),延长睡眠时间(p<0.05),具有镇静催眠作用。我们使用网络药理学构建了 BEO 的“成分-靶点-信号通路”和“蛋白质-蛋白质相互作用”(PPI)网络。结果表明,BEO 的 24 种活性成分作用于 17 个靶点,主要通过响应生物碱和儿茶酚胺转运,以及神经活性配体-受体相互作用。PPI 网络确定了 12 个关键蛋白,主要是多巴胺受体(DR)D2、阿片受体 mu 1(OPRM1)和阿片受体 kappa 1(OPRK1),我们进一步通过分子对接分析了 BEO 的活性成分和靶点。结果表明,网络药理学分析得到的活性成分和靶点具有良好的结合活性,反映了其多成分、多靶点、多途径的作用特点。本文为进一步研究 BEO 治疗失眠的作用机制提供了理论依据。

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