基于 LC-MS 和网络药理学分析的甘草的药效物质基础以及调节顺铂诱导肝损伤中胆汁酸代谢和肠道微生物群的机制

IF 4.8 2区 医学 Q1 CHEMISTRY, MEDICINAL Journal of ethnopharmacology Pub Date : 2025-01-31 DOI:10.1016/j.jep.2024.119293
Jie Li , Xiaolong Lian , Baojian Li , Quhuan Ma , Lingling Yang , Guangmiao Gao , Tingmei Yin , Xiaoyan Fu , Yi Deng , Zhijun Yang , Xiujuan Yang
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引用次数: 0

摘要

民族药理学相关性:顺铂(CP)是一种广泛使用的抗肿瘤药物,由于其肝毒性作用而成为药物性肝损伤(DILI)的主要原因。甘草(GC)是一种成熟的中药,在治疗肝脏疾病和DILI方面显示出希望。尽管如此,GC减轻cp诱导的肝损伤的具体活性成分和潜在机制仍未得到充分研究。研究目的:本研究考察了GC的有效成分及其对cp肝毒性的治疗作用,重点探讨了其与胆汁酸代谢和肠道菌群调节相关的机制。材料和方法:本研究利用cp诱导的大鼠肝损伤模型,在评估GC预防和治疗cp诱导的肝损伤的作用的同时,评估肝系数、肝功能指标和病理形态学的变化。随后,UPLC-Q-TOF-MS对GC的入血成分进行定性分析,阐明其药效学物质基础。网络药理学分析确定了GC血液成分与cp诱导肝损伤相关的潜在途径和靶点。此外,通过代谢组学和16S rRNA测序,阐明了GC调节胆汁酸代谢和肠道微生物群的药效学机制,为其预防和治疗作用提供了新的思路。结果:药效学结果显示,GC可显著降低肝功能生物标志物,改善肝组织病理改变。UPLC-Q-TOF-MS分析鉴定出16种进入血液成分为GC预防和治疗cp诱导的肝损伤的潜在药效学因子。网络药理学分析表明,GC的功效与胆汁酸代谢途径有关。此外,代谢组学分析、免疫印迹和16S rRNA测序表明,GC调节肝脏和粪便中的胆汁酸代谢物,增强肝脏中FXR和BSEP的表达,降低CYP27A1的表达。此外,GC通过改变肠道菌群的丰度来减轻cp诱导的肠道生态失调。结论:UPLC-Q-TOF-MS对16种与气相色谱相关的入血成分进行了定性分析,为进一步探索气相色谱的药效学基础物质提供了基础。GC在cp诱导的肝损伤中的保护作用似乎与增强胆汁酸代谢和恢复肠道菌群平衡有关。
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Pharmacodynamic material basis of licorice and mechanisms of modulating bile acid metabolism and gut microbiota in cisplatin-induced liver injury based on LC-MS and network pharmacology analysis

Ethnopharmacological relevance

Cisplatin (CP), a widely used antineoplastic agent, is a leading cause of drug-induced liver injury (DILI) due to its hepatotoxic effects. Licorice (GC), an established remedy in traditional Chinese medicine (TCM), has shown promise in addressing liver diseases and DILI. Nonetheless, the specific active components and underlying mechanisms of GC in mitigating CP-induced liver injury remain inadequately investigated.

Aim of the study

This study examined the active components and efficacy of GC in addressing CP-induced hepatotoxicity, focusing on its mechanisms related to bile acid metabolism and gut microbiota regulation.

Materials and methods

Utilizing a CP-induced rat liver injury model, this study evaluated changes in liver coefficient, liver function indices, and pathological morphology while assessing the efficacy of GC for both prevention and treatment of CP-induced liver injury. Subsequently, UPLC-Q-TOF-MS qualitatively analyzed GC's blood-entering components, elucidating its pharmacodynamic material basis. Network pharmacology analysis identified potential pathways and targets of GC's blood components in relation to CP-induced liver injury. Furthermore, metabolomics and 16S rRNA sequencing were employed to clarify the pharmacodynamic mechanisms of GC in modulating bile acid metabolism and gut microbiota, offering insights into its preventive and therapeutic roles.

Results

The pharmacodynamic results revealed that GC significantly reduced liver function biomarkers and improved pathological changes in liver tissue. UPLC-Q-TOF-MS analysis identified 16 blood-entering components as potential pharmacodynamic agents of GC for preventing and treating CP-induced liver injury. Network pharmacology analysis suggested a link between GC's efficacy and the bile acid metabolic pathway. Furthermore, metabolomics analysis, immunoblotting, and 16S rRNA sequencing demonstrated that GC regulated bile acid metabolites in both liver and feces, enhanced FXR and BSEP expressions in the liver, and decreased CYP27A1 expression. Additionally, GC mitigated CP-induced intestinal dysbiosis by altering the abundance of gut microbiota.

Conclusions

UPLC-Q-TOF-MS performed a qualitative analysis of 16 blood-entering components linked to GC, providing a basis for further exploration of the pharmacodynamic material underpinning GC. The protective role of GC in CP-induced liver injury appears connected to enhanced bile acid metabolism and restoration of gut microbiota balance.
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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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