保元煎通过 AMPK/CRY2/PER1 信号通路抑制炎症和氧化应激,从而缓解疲劳。

IF 5.4 2区 医学 Q1 CHEMISTRY, MEDICINAL
Yuan Zheng , Xueyang Ren , Xiaodan Qi , Ruolan Song , Chongjun Zhao , Jiamu Ma , Xianxian Li , Qingyue Deng , Yingyu He , Lingmei Kong , Liyan Qian , Feng Zhang , Mingxia Li , Mengyu Sun , Wei Liu , Haibin Liu , Gaimei She
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引用次数: 0

摘要

民族药理学意义:宝元煎》最早见于明代《博爱心鉴》。传统用于治疗虚劳怯弱、元气不足。在抗疲劳作用的相关研究中,AMPK 和昼夜节律钟的相互调控可能在抗疲劳机制中发挥重要作用,但尚未被揭示。因此,我们通过AMPK/CRY2/PER1途径阐明了比亚迪的抗疲劳机制:通过AMPK/CRY2/PER1信号通路,利用药效学、网络药理学和转录组学研究比亚迪的抗疲劳作用和机制:首先,通过UHPLC-Q-Exactive Orbitrap/MS对比亚迪中的化学成分进行定性鉴定,建立了一个由内部文库、Xcalibur软件和Pubchem相结合的综合策略。其次,建立了Na2SO3诱导的疲劳模型和2,2'-偶氮双(2-甲基丙脒)二盐酸盐(AAPH)诱导的氧化应激模型,利用AB斑马鱼评价了汤臣倍健的抗疲劳和抗氧化活性。用 CuSO4 诱导的和切尾诱导的 Tg(lyz: dsRed)转基因斑马鱼炎症模型评估了比亚迪的抗炎活性。然后,利用瑞士 ADME、GeneCards、OMIM 和 DrugBank 数据库进行了靶标筛选,并使用 Cytoscape 3.9.0 构建了网络。利用转录组和网络药理学技术研究了比亚迪治疗后的相关信号通路和潜在机制,并通过实时定量 PCR(RT-qPCR)进行了验证:结果:比亚迪水提取物中共鉴定出 114 种主要化合物。Na₂SO₃诱导的疲劳模型和 AAPH 诱导的氧化应激模型表明,比亚迪具有显著的抗疲劳和抗氧化作用。同时,汤臣倍健对 CuSO4 诱导的斑马鱼炎症模型和切尾诱导的斑马鱼炎症模型具有明显的抗炎作用。网络药理学的 KEGG 结果表明,比亚迪的抗疲劳作用主要是通过 AMPK 信号通路实现的。此外,转录组分析表明,昼夜节律、AMPK和IL-17信号通路被推荐为比亚迪抗疲劳作用的主要相关通路之一。RT-qPCR 结果表明,与模型对照组相比,比亚迪能显著提高 AMPK、CRY2 和 PER1 的 mRNA 表达:通过网络药理学和转录组学的研究,我们鉴定了比亚迪的114种化学成分,并进行了斑马鱼活性验证,同时证明了比亚迪可通过AMPK/CRY2/PER1信号通路缓解疲劳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Bao Yuan decoction alleviates fatigue by restraining inflammation and oxidative stress via the AMPK/CRY2/PER1 signaling pathway

Bao Yuan decoction alleviates fatigue by restraining inflammation and oxidative stress via the AMPK/CRY2/PER1 signaling pathway

Ethnopharmacological relevance

Baoyuan Decoction (BYD) was initially recorded in the classic of “Bo Ai Xin Jian” in the Ming dynasty. It is traditionally used for treating weakness and cowardice, and deficiency of vital energy. In researches related to anti-fatigue effects, the reciprocal regulation of AMPK and circadian clocks likely plays an important role in anti-fatigue mechanism, while it has not yet been revealed. Therefore, we elucidated the anti-fatigue mechanism of BYD through AMPK/CRY2/PER1 pathway.

Aim of the study

To investigate the effect and mechanism of BYD in reducing fatigue, using pharmacodynamics, network pharmacology and transcriptomics through the AMPK/CRY2/PER1 signaling pathway.

Materials and methods

Firstly, the chemical constituents of BYD were qualitatively identified by UHPLC-Q-Exactive Orbitrap/MS, establishing a comprehensive strategy with an in-house library, Xcalibur software and Pubchem combined. Secondly, a Na2SO3-induced fatigue model and 2,2′-Azobis (2-methylpropionamidine) dihydrochloride (AAPH)-induced oxidative stress model were developed to evaluate the anti-fatigue and anti-oxidant activities of BYD using AB zebrafish. The anti-inflammatory activity of BYD was evaluated using CuSO4-induced and tail cutting-induced Tg (lyz: dsRed) transgenic zebrafish inflammation models. Then, target screening was performed by Swiss ADME, GeneCards, OMIM and DrugBank databases, the network was constructed using Cytoscape 3.9.0. Transcriptome and network pharmacology technology were used to investigate the related signaling pathways and potential mechanisms after treatment with BYD, which were verified by real-time quantitative PCR (RT-qPCR).

Results

In total, 114 compounds from the water extract of BYD were identified as major compounds. Na₂SO₃-induced fatigue model and AAPH-induced oxidative stress model indicated that BYD has significant anti-fatigue and antioxidant effects. Meanwhile, BYD showed significant anti-inflammatory effects on CuSO4-induced and tail cutting-induced zebrafish inflammation models. The KEGG result of network pharmacology showed that the anti-fatigue function of BYD was mainly effected through AMPK signaling pathway. Besides, transcriptome analysis indicated that the circadian rhythm, AMPK and IL-17 signaling pathways were recommended as the main pathways related to the anti-fatigue effect of BYD. The RT-qPCR results showed that compared with a model control group, the treatment of BYD significantly elevated the expression mRNA of AMPK, CRY2 and PER1.

Conclusion

Herein, we identified 114 chemical constituents of BYD, performed zebrafish activity validation, while demonstrated that BYD can relieve fatigue by AMPK/CRY2/PER1 signaling pathway through network pharmacology and transcriptome.

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来源期刊
Journal of ethnopharmacology
Journal of ethnopharmacology 医学-全科医学与补充医学
CiteScore
10.30
自引率
5.60%
发文量
967
审稿时长
77 days
期刊介绍: The Journal of Ethnopharmacology is dedicated to the exchange of information and understandings about people''s use of plants, fungi, animals, microorganisms and minerals and their biological and pharmacological effects based on the principles established through international conventions. Early people confronted with illness and disease, discovered a wealth of useful therapeutic agents in the plant and animal kingdoms. The empirical knowledge of these medicinal substances and their toxic potential was passed on by oral tradition and sometimes recorded in herbals and other texts on materia medica. Many valuable drugs of today (e.g., atropine, ephedrine, tubocurarine, digoxin, reserpine) came into use through the study of indigenous remedies. Chemists continue to use plant-derived drugs (e.g., morphine, taxol, physostigmine, quinidine, emetine) as prototypes in their attempts to develop more effective and less toxic medicinals.
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