保元汤治疗慢性阻塞性肺疾病的药效物质基础与作用机制研究OA
Pharmacodynamic material basis and mechanism of Baoyuan Decoction in treating chronic obstructive pulmonary disease
基于血清药物化学与网络药理学方法,探究保元汤治疗慢性阻塞性肺疾病(COPD)的药效物质基础及潜在作用机制.采用UPLC-Q-Exactive-Orbitrap-MS技术分析保元汤化学成分,共鉴定出 493 个成分(其中 174 个为首次报道),并从含药血浆中鉴定出 76 个原型成分和 44 个代谢产物(27 个成分兼具原型与代谢双重属性).通过网络药理学方法,以入血原型成分预测药物靶点,并与COPD相关疾病靶点取交集,获得 724 个共同靶点,进一步筛选出SRC、PIK3R1、HSP90AA1 等关键靶点.利用DAVID平台对交集靶点进行基因本体论(GO)功能和京都基因与基因组百科全书(KEGG)通路富集分析,GO功能分析表明,保元汤可能通过调控外源性刺激反应、肽酰酪氨酸磷酸化等生物过程发挥作用;KEGG通路分析提示其机制与钙信号通路、神经活性配体-受体相互作用通路、cAMP信号通路等密切相关.构建"成分-靶点-通路"网络,并将核心成分与关键靶点进行分子对接,结果显示二者结合活性良好.综合研究表明,保元汤中杜荆素、地榆皂苷元、6-姜酚、4-羟基肉桂酸、10-姜烯酚、甘草苷、芒柄花苷、毛蕊异黄酮-7-葡萄糖苷、人参皂苷Ro、人参皂苷Rf等成分可能为治疗COPD的主要药效物质,其作用机制可能与调控SRC、PIK3R1 等靶点,影响炎症与氧化应激过程有关.该研究初步阐明保元汤治疗COPD的药效物质基础及多靶点作用机制,为其质量标准提升和制剂开发提供参考依据.
This study aimed to investigate the pharmacodynamic material basis and potential mechanism of Baoyuan Decoction(BYD)in treating chronic obstructive pulmonary disease(COPD)based on serum pharmacochemistry and network pharmacology.UPLC-Q-Exactive-Orbitrap-MS was employed to identify the chemical constituents of BYD and its components absorbed in rat plasma.A total of 493 chemical compounds were identified in BYD,174 of which were reported for the first time.In the drug-containing plasma,76 prototype components and 44 metabolites were identified,with 27 components exhibiting both prototype and metabolic properties.Through network pharmacology approaches,potential targets of the absorbed prototype components were predicted and intersected with COPD-related targets,yielding 724 common targets.Key targets such as SRC,PIK3R1,and HSP90AA1 were further screened out.Gene Ontology(GO)and Kyoto Encyclopedia of Genes and Genomes(KEGG)pathway enrichment analyses were performed via the DAVID database,revealing that BYD may exert its effects by regulating biological processes such as response to external stimuli and peptidyl-tyrosine phosphorylation.KEGG analysis indicated involvement of key pathways including calcium signaling pathway,neuroactive ligand-receptor interaction,and cAMP signaling pathway.A component-target-pathway network was constructed,and molecular docking results demonstrated strong binding affinity between the core components of BYD and the key targets.In summary,components such as vitexin,sanguisorbigenin,6-gingerol,4-hydroxycinnamic acid,10-shogaol,liquiritin,ononin,calycosin-7-glucoside,ginsenoside Ro,and ginsenoside Rf may serve as the main pharmacodynamic material basis of BYD in treating COPD.The underlying mechanism may be associated with the regulation of targets such as SRC and PIK3R1,which influences inflammatory and oxidative stress processes.This study preliminarily clarifies the multi-component,multi-target mechanism of BYD against COPD,providing a reference for quality standard improvement and formulation development of BYD.
黄洁怡;曲丽媛;吕东峻;吕渭升;邓淙友;陈向东;王闽予
广州中医药大学,广东 广州 510405||广东一方制药有限公司 广东省中药配方颗粒企业重点实验室,广东 佛山 528244广东一方制药有限公司 广东省中药配方颗粒企业重点实验室,广东 佛山 528244广州中医药大学,广东 广州 510405||广东一方制药有限公司 广东省中药配方颗粒企业重点实验室,广东 佛山 528244广东一方制药有限公司 广东省中药配方颗粒企业重点实验室,广东 佛山 528244广州中医药大学,广东 广州 510405||广东一方制药有限公司 广东省中药配方颗粒企业重点实验室,广东 佛山 528244广东一方制药有限公司 广东省中药配方颗粒企业重点实验室,广东 佛山 528244广东一方制药有限公司 广东省中药配方颗粒企业重点实验室,广东 佛山 528244
保元汤慢性阻塞性肺疾病血清药物化学网络药理学药效物质基础
Baoyuan Decoctionchronic obstructive pulmonary diseaseserum pharmacochemistrynetwork pharmacologypharmacodynamic material basis
《中国中药杂志》 2026 (11)
3080-3104,25
广州市科学技术局重点研发计划项目(2023B01J1016)2022年佛山市南海区重点领域科技攻关专项(南科[2023]20号-18)
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