Zhao Chengbowen, Wei Xiaojia, Guo Jianyou, Ding Yongsheng, Luo Jing, Yang Xue, Li Jiayuan, Wan Guohui, Yu Jiahe, Shi Jinli
School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing 102488, China.
Dongzhimen Hospital, Beijing University of Chinese Medicine, Beijing 100007, China.
Brain Sci. 2022 Apr 30;12(5):589. doi: 10.3390/brainsci12050589.
Anxiety disorder impacts the quality of life of the patients. The 95% ethanol extract of rhizomes and roots of Jones (Zhi zhu xiang, ZZX) has previously been shown to be effective for the treatment of anxiety disorder. In this study, the dose ratio of each component of the anxiolytic compounds group (ACG) in a 95% ethanol extract of ZZX was optimized by a uniform design experiment and mathematical modeling. The anxiolytic effect of ACG was verified by behavioral experiments and biochemical index measurement. Network pharmacology was used to determine potential action targets, as well as predict biological processes and signaling pathways, which were then verified by molecular docking analysis. Metabolomics was then used to screen and analyze metabolites in the rat hippocampus before and after the administration of ZZX-ACG. Finally, the results of metabolomics and network pharmacology were integrated to clarify the anti-anxiety mechanism of the ACG. The optimal dose ratio of ACG in 95% ethanol extract of ZZX was obtained, and our results suggest that ACG may regulate ALB, AKT1, PTGS2, CYP3A4, ESR1, CASP3, CYP2B6, EGFR, SRC, MMP9, IGF1, and MAPK8, as well as the prolactin signaling pathway, estrogen signaling pathway, and arachidonic acid metabolism pathway, thus affecting the brain neurotransmitters and HPA axis hormone levels to play an anxiolytic role, directly or indirectly.
焦虑症会影响患者的生活质量。之前已证明,九节香根茎的95%乙醇提取物对焦虑症的治疗有效。在本研究中,通过均匀设计实验和数学建模优化了九节香95%乙醇提取物中抗焦虑化合物组(ACG)各成分的剂量比。通过行为实验和生化指标测量验证了ACG的抗焦虑作用。利用网络药理学确定潜在作用靶点,并预测生物学过程和信号通路,随后通过分子对接分析进行验证。然后采用代谢组学方法筛选和分析给予九节香ACG前后大鼠海马体中的代谢物。最后,整合代谢组学和网络药理学的结果,阐明ACG的抗焦虑机制。获得了九节香95%乙醇提取物中ACG的最佳剂量比,我们的结果表明,ACG可能调节ALB、AKT1、PTGS2、CYP3A4、ESR1、CASP3、CYP2B6、EGFR、SRC、MMP9、IGF1和MAPK8,以及催乳素信号通路、雌激素信号通路和花生四烯酸代谢通路,从而直接或间接地影响脑内神经递质和HPA轴激素水平,发挥抗焦虑作用。