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Current clinical therapy drugs are limited by significant adverse effects and the development of drug resistance. Qinjiao (Gentianae Macrophyllae Radix), a well-known herb for dispelling wind-dampness in traditional Chinese medicine, has been historically used to treat RA with confirmed efficacy. Phytochemical studies have identified iridoids, triterpenoids, and flavonoids as the primary anti-RA constituents, with gentiopicroside, swertiamarin, ursolic acid, and kaempferol serving as key active monomers. These compounds exert multifaceted pharmacological effects through modulation of core signaling pathways including nuclear factor--κB (NF-κB), Janus kinase (JAK)/signal transducer and activator of transcription (STAT), and nuclear factor erythroid 2-related factor 2 (Nrf2)/heme oxygenase-1 (HO-1), leading to anti-inflammatory activity, immune regulation, inhibition of fibroblast-like synoviocyte (FLS) proliferation and invasion, antioxidant effects, suppression of angiogenesis, and protection against bone destruction and cartilage damage. In clinical practice, Qinjiao is commonly combined with other botanicals such as Fangji (Stephaniae Tetrandrae Radix), Sangjisheng (Taxilli Herba), and Duhuo (Angelicae Pubescentis Radix) in composite formulas (e.g., Juanbi Tang and Compound Qixiong Granules), achieving synergistic multi-component and multi-target effects tailored to different TCM syndromes of RA. This review summarizes the comprehensive regulatory mechanisms through which Qinjiao intervenes in RA pathogenesis via multiple pathways, highlighting its promising therapeutic potential and providing a theoretical basis for further investigation of its pharmacodynamic material basis and clinical development., authors=REN Zhenpeng, WANG Jiatong, ZHAO Fuqi, CHEN Ruixi, CUI Hongxun, LI Huan, YANG Guang, authorsList=REN Zhenpeng, WANG Jiatong, ZHAO Fuqi, CHEN Ruixi, CUI Hongxun, LI Huan, YANG Guang, authorCompany=null, correspAuthors=null, authorNote=null, correspAuthorsNote=null, copyrightStatement=null, copyrightOwner=null, extLink=null, articleAbsUrl=null, sourceXml=null, magXml=null, pdfUrl=null, pdf=null, pdfFileSize=null, pdfExtLink=null, richHtmlUrl=null, mobilePdfUrl=null, reviewReport=null, pdfFirstPage=null, abstractGraph=null, abstractGraphContent=null, abstractVideo=null, citation=null, cebUrl=null, magXmlContent=null, mapNumber=null, fund=null), CN=ArticleExt(id=1304735431304696470, articleId=1304735431040455317, tenantId=1146029695717560320, journalId=1302319053441957962, language=CN, title=秦艽有效成分及其复方治疗类风湿性关节炎作用机制研究进展, columnId=1304140194685415572, journalTitle=中草药, columnName=综述, runingTitle=null, highlight=null, articleAbstract=类风湿性关节炎(rheumatoid arthritis,RA)是一种以慢性滑膜炎和进行性关节破坏为特征的自身免疫性疾病,现有临床治疗药物存在不良反应显著、易产生耐药性等临床局限。秦艽Gentianae Macrophyllae Radix作为传统祛风湿要药,在RA治疗中历史悠久且疗效确切。研究表明,秦艽中发挥抗RA作用的核心成分为环烯醚萜类、三萜类及黄酮类化合物,其中龙胆苦苷、獐牙菜苦苷、熊果酸、山柰酚等为关键活性单体成分,这些成分通过调控核因子-κB、Janus激酶/信号转导与转录激活因子、核因子-红细胞2相关因子2/血红素氧合酶1等核心信号通路,实现抗炎、调节免疫、抑制滑膜成纤维细胞异常增殖与侵袭、抗氧化、抑制血管新生、抗骨破坏与软骨保护的多维度药理作用。临床上,秦艽常与防己、桑寄生、独活等药物配伍组成复方(如蠲痹汤、复方芪芎颗粒),针对RA不同中医证型实现多成分、多靶点的网络协同增效。综述秦艽通过多机制、多途径的整体调节模式干预RA病理进程,展现出良好应用前景,以期为其药效物质基础及开发利用提供理论依据。, authors=任振朋1,2, 王嘉桐1,2, 赵富起1,2, 陈瑞汐2, 崔宏勋1,3, 李欢2, 杨洸1,3, authorsList=任振朋, 王嘉桐, 赵富起, 陈瑞汐, 崔宏勋, 李欢, 杨洸, authorCompany=1 河南中医药大学骨伤学院, 河南 郑州 450046;
2 河南中医药大学, 河南 郑州 450046;
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Rheumatoid arthritis [J]. Lancet, 2023, 402(10416): 2019-2033.
Ma Y N, Chen H Y, Lv W H, et al. Global, regional and national burden of rheumatoid arthritis from 1990 to 2021, with projections of incidence to 2050: A systematic and comprehensive analysis of the Global Burden of Disease study 2021[J]. Biomark Res, 2025, 13(1): 47.
Misra D P. Clinical manifestations of rheumatoid arthritis, including comorbidities, complications, and long-term follow-up [J]. Best Pract Res Clin Rheumatol, 2025, 39(1): 102020.
Wang Y, Chen S J, Du K Z, et al. Traditional herbal medicine: Therapeutic potential in rheumatoid arthritis [J]. J Ethnopharmacol, 2021, 279: 114368.
宝钢, 图诺木拉, 朝格巴达拉夫, 等. 龙胆属秦艽组植物化学成分及药理作用研究进展[J]. 中成药, 2024, 46(8): 2689-2697.
史睿, 伍镝, 刘新. 蠲痹汤辅助艾拉莫德、甲氨蝶呤治疗类风湿关节炎疗效分析[J]. 中华中医药学刊, 2025, 43(10): 58-61.
李娜, 白建英, 李付平, 等. 经典名方大秦艽汤的历史沿革与关键信息考证[J]. 中国实验方剂学杂志, 2025(7): 201-211.
杨飞霞, 王玉, 夏鹏飞, 等. 秦艽化学成分和药理作用研究进展及质量标志物(Q-marker)的预测分析[J]. 中草药, 2020, 51(10): 2718-2731.
梁国成, 段文贵, 陈舒茵. 秦艽化学成分及药理活性研究进展[J]. 中草药, 2024, 55(7): 2472-2490.
徐艳, 张宏, 陈姚, 等. 秦艽分离有效部位对胶原诱导性关节炎的作用研究[J]. 中药药理与临床, 2017, 33(3): 83-87.
李霞, 何志鹏, 王仕宝, 等. 基于HPLC的秦艽药材特征指纹图谱构建及主成分分析[J]. 甘肃农业大学学报, 2023, 58(3): 115-124.
中国药典[S]. 一部. 2020: 331.
孙建国, 李慧娟, 宝文萍, 等. 网络药理学、分子动力学和实验验证探究秦艽环烯醚萜苷抗类风湿性关节炎关键成分和作用机制[J]. 中草药, 2024, 55(17): 5853-5866.
白永峰, 曹乌吉斯古楞. 麻花艽6个成分对类风湿性关节炎滑膜成纤维样细胞的影响及机制[J]. 中华中医药杂志, 2024, 39(7): 3680-3684.
王诗婷, 孔伟华, 温乐乐, 等. 中药三萜类成分防治膝骨关节炎作用机制研究进展[J]. 中草药, 2023, 54(18): 6128-6138.
范铭婕, 林龙飞, 汤如莹, 等. 中药黄酮类化合物治疗类风湿性关节炎的研究进展[J]. 中国实验方剂学杂志, 2025, 31(17): 244-251.
沈章阳, 关若晴, 都孟然, 等. 诺丽果中化学成分及其抑制滑膜成纤维细胞增殖活性研究[J]. 中国中药杂志, 2023, 48(1): 105-113.
Brown P, Pratt A G, Hyrich K L. Therapeutic advances in rheumatoid arthritis [J]. Bmj, 2024, 384: e070856.
Zhang F, Jonsson A H, Nathan A, et al. Deconstruction of rheumatoid arthritis synovium defines inflammatory subtypes [J]. Nature, 2023, 623(7987): 616-624.
贾娜, 崔佳, 文爱东. 藏药麻花秦艽醇提物对胶原诱导型关节炎模型小鼠滑膜组织中NF-κBp65表达的影响[J]. 中国药房, 2018, 29(15): 2082-2085.
马晓辉, 张可锋, 朱田田, 等. 基于TLR2/4-NF-κB/iNOS-NO信号通路研究秦艽水提物对胶原诱导型关节炎大鼠的影响及作用机制[J]. 中药药理与临床, 2020, 36(5): 110-114.
Jia N, Chu W, Li Y W, et al. Iridoid glycosides from the flowers of Gentiana macrophylla Pall. ameliorate collagen-induced arthritis in rats [J]. J Ethnopharmacol, 2016, 189: 1-9.
杨琳, 林万程, 邓龙飞. 秦艽对佐剂性关节炎大鼠JAK2/STAT3信号通路的调控作用[J]. 中医药临床杂志, 2016, 28(6): 848-852.
Grillet B, Pereira R V S, Van Damme J, et al. Matrix metalloproteinases in arthritis: Towards precision medicine [J]. Nat Rev Rheumatol, 2023, 19(6): 363-377.
贾娜, 崔佳, 赵超, 等. 大叶秦艽花环烯醚萜类成分对胶原诱导性关节炎小鼠的治疗作用及相关机制探讨[J]. 中国免疫学杂志, 2018, 34(10): 1483-1486.
Mueller A L, Payandeh Z, Mohammadkhani N, et al. Recent advances in understanding the pathogenesis of rheumatoid arthritis: New treatment strategies [J]. Cells, 2021, 10(11): 3017.
Weyand C M, Goronzy J J. The immunology of rheumatoid arthritis [J]. Nat Immunol, 2021, 22(1): 10-18.
Scherer H U, Häupl T, Burmester G R. The etiology of rheumatoid arthritis [J]. J Autoimmun, 2020, 110: 102400.
鲜瑶瑶, 周俭, 曾光, 等. 熊果酸对胶原诱导性关节炎大鼠外周血Th17/Treg细胞比例失衡的影响[J]. 中华中医药学刊, 2019, 37(5): 1110-1114.
焦宁, 陈迎, 常利华. 芹菜素通过miR-181a-5p/SOCS3信号通路调节Treg/Th17细胞平衡减轻类风湿关节炎进展[J]. 中国医科大学学报, 2024, 53(12): 1080-1087.
Li N, Yi Y K, Zhao J, et al. Kaempferol improved rheumatoid arthritis by regulating the immune imbalance of treg/Th17[J]. Curr Med Sci, 2024, 44(6): 1259-1269.
张洁, 刘巍, 朱新辉, 等. 针刺配合芹菜素治疗对胶原诱导性关节炎小鼠Th1/Th2细胞亚群的影响[J]. 中国老年学杂志, 2015, 35(5): 1353-1354.
Choi J K, Kim S W, Kim D S, et al. Oleanolic acid acetate inhibits rheumatoid arthritis by modulating T cell immune responses and matrix-degrading enzymes [J]. Toxicol Appl Pharmacol, 2016, 290: 1-9.
Cutolo M, Campitiello R, Gotelli E, et al. The role of M1/M2 macrophage polarization in rheumatoid arthritis synovitis [J]. Front Immunol, 2022, 13: 867260.
Jia N, Gao Y Z, Li M, et al. Metabolic reprogramming of proinflammatory macrophages by target delivered roburic acid effectively ameliorates rheumatoid arthritis symptoms [J]. Signal Transduct Target Ther, 2023, 8: 280.
López-Armada M J, Fernández-Rodríguez J A, Blanco F J. Mitochondrial dysfunction and oxidative stress in rheumatoid arthritis [J]. Antioxidants, 2022, 11(6): 1151.
Zamudio-Cuevas Y, Martínez-Flores K, Martínez-Nava G A, et al. Rheumatoid arthritis and oxidative stress, a review of a decade [J]. Cell Mol Biol (Noisy-le-grand), 2022, 68(6): 174-184.
Guazelli C F S, Staurengo-Ferrari L, Zarpelon A C, et al. Quercetin attenuates zymosan-induced arthritis in mice [J]. Biomed Pharmacother, 2018, 102: 175-184.
El Bakary N M, Thabet N M, Rashed L A, et al. Beta-sitosterol alleviates inflammatory culprits and disease severity in arthritic irradiated rat’s model: Role of brain-spleen axis [J]. Immunopharmacol Immunotoxicol, 2026, 48(1): 11-33.
Hajizadeh A, Abtahi Froushani S M, Tehrani A A, et al. Effects of naringenin on experimentally induced rheumatoid arthritis in wistar rats [J]. Arch Razi Inst, 2021, 76(4): 903-912.
Nygaard G, Firestein G S. Restoring synovial homeostasis in rheumatoid arthritis by targeting fibroblast-like synoviocytes [J]. Nat Rev Rheumatol, 2020, 16(6): 316-333.
白永峰, 曹乌吉斯古楞. 麻花艽6个成分对类风湿性关节炎滑膜成纤维样细胞的影响及机制[J]. 中华中医药杂志, 2024, 39(7): 3680-3684.
吴晨, 魏昀, 葛珊, 等. 獐牙菜苦苷、龙胆苦苷和獐牙菜苷对类风湿关节炎成纤维样滑膜细胞促凋亡作用及Bcl-2表达情况的影响[J]. 中国中药杂志, 2021, 46(2): 406-411.
周兴悦, 却翎, 丁雄, 等. 金铁锁三萜类成分对衣霉素诱导RA-FLS细胞内质网应激的影响[J]. 中成药, 2024, 46(5): 1499-1507.
谷慧敏, 孟庆良, 左瑞庭, 等. β-谷甾醇对类风湿性关节炎滑膜成纤维细胞功能的影响及机制[J]. 中国药房, 2023, 34(15): 1847-1852.
梁舒, 左淑飞, 崔玉荣, 等. 槲皮素通过调控miR-431-5p/鼠双微基因4信号通路抑制类风湿关节炎成纤维样滑膜细胞侵袭和促进凋亡[J]. 实用临床医药杂志, 2023, 27(12): 50-56.
Caliogna L, Berni M, Torriani C, et al. Pathogenesis of osteoarthritis, rheumatoid arthritis, and hemophilic arthropathy: The role of angiogenesis [J]. Haemophilia, 2024, 30(6): 1256-1264.
李琪, 陈秀, 徐艳, 等. 基于多元统计分析对秦艽中环烯醚萜苷抗胶原诱导型关节炎作用机制的研究[J]. 中药药理与临床, 2019, 35(2): 46-52.
Jing R Y, Chen Y Y, Xu M M, et al. Investigating the mechanism of gentiopicroside in rheumatoid arthritis through network pharmacology, molecular docking, and experimental validation [J]. Sci Rep, 2025, 15: 19871.
褚小磊, 柴继侠, 郭帅, 等. 槲皮素对胶原诱导性关节炎大鼠滑膜血管新生的影响[J]. 山西医科大学学报, 2021, 52(3): 301-309.
李飒, 葛珊, 郑丽霞, 等. 秦艽-威灵仙配伍对类风湿关节炎模型大鼠血清学指标及HIF-1α、VEGF表达的影响[J]. 时珍国医国药, 2023, 34(5): 1044-1048.
苏杉, 王蓉, 赵敏, 等. 秦艽不同配伍药对对风寒湿痹型类风湿关节炎大鼠踝关节核因子κB、血管内皮生长因子表达及病理学改变的影响[J]. 辽宁中医杂志, 2020, 47(3): 179-182.
Komatsu N, Takayanagi H. Mechanisms of joint destruction in rheumatoid arthritis-immune cell-fibroblast-bone interactions [J]. Nat Rev Rheumatol, 2022, 18(7): 415-429.
Schneider A H, Taira T M, Públio G A, et al. Neutrophil extracellular traps mediate bone erosion in rheumatoid arthritis by enhancing RANKL-induced osteoclastogenesis [J]. Br J Pharmacol, 2024, 181(3): 429-446.
Wei S X, Cheng R J, Li S J, et al. MSC–microvesicles protect cartilage from degradation in early rheumatoid arthritis via immunoregulation [J]. J Nanobiotechnol, 2024, 22(1): 673.
Ilchovska D (, Barrow D M. An Overview of the NF-κB mechanism of pathophysiology in rheumatoid arthritis, investigation of the NF-κB ligand RANKL and related nutritional interventions [J]. Autoimmun Rev, 2021, 20(2): 102741.
周俭, 曾光, 鲜瑶瑶, 等. 熊果酸对CIA大鼠关节软组织RANKL、RANK、OPG mRNA表达的影响[J]. 亚太传统医药, 2020, 16(3): 28-30.
Hairul-Islam M I, Saravanan S, Thirugnanasambantham K, et al. Swertiamarin, a natural steroid, prevent bone erosion by modulating RANKL/RANK/OPG signaling [J]. Int Immunopharmacol, 2017, 53: 114-124.
Yamaguchi M, Weitzmann M N. Quercetin, a potent suppressor of NF-κB and Smad activation in osteoblasts [J]. Int J Mol Med, 2011, 28(4): 521-525.
Xia C M, Chang T, Gong X, et al. Qingre Huoxue Decoction and its active compound quercetin modulate bone remodeling by inhibiting ATF4 hyperactivation to attenuate bone erosion in rheumatoid arthritis [J]. J Orthop Surg Res, 2025, 20(1): 949.
Dehnavi S, Sadeghi M, Tavakol Afshari J, et al. Interactions of mesenchymal stromal/stem cells and immune cells following MSC-based therapeutic approaches in rheumatoid arthritis [J]. Cell Immunol, 2023, 393: 104771.
刘耀辉, 黄振明, 何精选, 等. 熊果酸干预骨髓间充质干细胞增殖与成骨分化[J]. 中国组织工程研究, 2019, 23(17): 2665-2671.
钱佳佳, 许奇, 许炜民, 等. 山柰酚调控白细胞介素-1β诱导的软骨细胞的药理学研究[J]. 中国临床药理学杂志, 2023, 39(22): 3311-3315.
占龙, 孟农钦, 农桔安, 等. 原儿茶酸可减轻退变软骨细胞的损伤[J]. 中国组织工程研究, 2020, 24(8): 1149-1154.
姜泉, 巩勋, 焦娟, 等. 类风湿关节炎病证结合诊疗指南(2025年) [J]. 中医杂志, 2025, 66(17): 1842-1856.
申钲瑶, 李晶涛, 杨煜辰, 等. 2506例类风湿关节炎不同病程患者中医证型分布特点及中医药疗效评价: 一项真实世界回顾性研究[J]. 中医杂志, 2025, 66(23): 2453-2459.
吴童, 李靖, 孔维萍, 等. 阎小萍“寒热为纲”辨治风湿病思想渊源及应用探讨[J]. 中华中医药杂志, 2025, 40(6): 2916-2920.
李飒, 葛珊, 郑丽霞, 等. 秦艽-威灵仙配伍对类风湿关节炎模型大鼠血清学指标及HIF-1α、VEGF表达的影响[J]. 时珍国医国药, 2023, 34(5): 1044-1048.
葛珊, 魏昀, 吴晨, 等. 秦艽、威灵仙主要成分龙胆苦苷、木兰花碱对RA模型大鼠抗炎作用机制研究[J]. 中药药理与临床, 2022, 38(4): 62-67.
葛珊, 郑丽霞, 李飒, 等. 龙胆苦苷、木兰花碱对RA模型大鼠踝关节组织病理学及血清PGE2、Bcl-2水平的影响[J]. 中兽医医药杂志, 2022, 41(6): 19-24.
郭从嘉, 吴国泰, 高慧琴, 等. 秦艽、威灵仙组分配伍对类风湿关节炎模型大鼠血清炎症因子及踝关节NF-κB、VEGF表达的影响[J]. 中国实验方剂学杂志, 2023, 29(11): 53-63.
郭从嘉, 吴国泰, 高慧琴, 等. 秦艽与威灵仙组分配伍对类风湿关节炎大鼠的治疗作用[J]. 中国临床药理学杂志, 2023, 39(21): 3139-3143.
王丽明, 吴国泰, 高慧琴, 等. 秦艽、威灵仙组分配伍对类风湿关节炎模型大鼠抗血管新生作用及机制研究[J]. 时珍国医国药, 2024, 35(7): 1567-1573.
苏杉, 王蓉, 赵敏, 等. 秦艽不同配伍药对对风寒湿痹型类风湿关节炎大鼠踝关节核因子κB、血管内皮生长因子表达及病理学改变的影响[J]. 辽宁中医杂志, 2020, 47(3): 179-182.
苏杉, 王蓉, 刘飞, 等. 秦艽不同配伍对风寒湿痹类风湿关节炎模型大鼠关节保护作用及其机制[J]. 中国临床药理学杂志, 2018, 34(21): 2542-2545.
马腾茂, 强宇靖, 罗奎元, 等. 秦艽不同配伍药对对风寒湿痹类风湿关节炎模型大鼠血清炎性因子及踝关节病理学改变的影响[J]. 中国全科医学, 2017, 20(15): 1878-1883.
马腾茂, 刘飞, 王蓉, 等. 秦艽不同配伍药对对风湿热痹类风湿性关节炎模型大鼠镇痛作用及血清TNF-α、IL-1β、PGE2的影响[J]. 辽宁中医杂志, 2017, 44(11): 2423-2426.
王蓉, 苏杉, 孙少伯, 等. 秦艽对风湿热痹类风湿关节炎大鼠的保护作用[J]. 中国临床药理学杂志, 2018, 34(1): 41-44.
王蓉, 苏杉, 马腾茂, 等. 秦艽不同配伍药对对风湿热痹型RA大鼠踝关节VEGF表达及病理学的影响[J]. 中药新药与临床药理, 2018, 29(2): 136-142.
王蓉, 苏杉, 孙少伯, 等. 秦艽寒热不同配伍药对对风湿热痹RA大鼠踝关节MMP-1、TIMP-1表达的影响[J]. 时珍国医国药, 2018, 29(6): 1331-1335.
董壮, 李冀. 尖叶假龙胆与秦艽配伍对类风湿性关节炎模型大鼠相关炎性因子的影响[J]. 中医药信息, 2016, 33(3): 75-78.
王媛, 顾万红, 何苗, 等. 基于网络药理学方法探究秦艽-蚕沙药对治疗类风湿性关节炎的作用机制[J]. 甘肃医药, 2024, 43(3): 238-242.
李帅谊, 周晓慧, 刘增辉, 等. 基于网络药理学及分子对接探究秦艽-羌活治疗类风湿性关节炎的作用机制[J]. 生物加工过程, 2025, 23(4): 444-454.
宋育萌, 王嘉雯, 权利娜, 等. 不同挥发油对秦艽-独活药对主要成分的促渗及抗炎作用研究[J]. 中草药, 2025, 56(23): 8560-8570.
常俊杰, 刘亦冰, 戴文昊, 等. 孟河医派费氏治疗痹证用药规律研究[J]. 中药药理与临床, 2023, 39(4): 102-106.
吴雅婕, 徐文博, 袁美玲, 等. 程氏蠲痹汤通过阻断WTAP-Wnt7b-Wnt/β-catenin信号轴抑制类风湿性关节炎病理[J]. 四川大学学报: 医学版, 2025, 56(5): 1260-1272.
陈利锋, 张钰景, 卢绮萍, 等. 复方芪芎颗粒对类风湿性关节炎模型大鼠滑膜趋化因子的调控作用研究[J]. 四川中医, 2025, 43(3): 121-125.
Liu W, Zeng K, Zhou X, et al. Comparative study on brain pharmacokinetics of Buyang Huanwu Decoction in normal and cerebral ischemia rats using brain microdialysis combined with LC-MS/MS [J]. Chin Herb Med, 2022, 14(4): 630-637.
姚瑶, 周萍, 骆飞, 等. 青风藤汤辅助治疗类风湿关节炎对患者CXCL13、MIP-1α的变化研究[J]. 中华中医药学刊, 2025, 43(11): 230-233.
王森林, 张永刚, 张英, 等. 二十八味风湿骨痛汤加减在高海拔地区类风湿性关节炎治疗中的作用[J]. 中华中医药学刊, 2024, 42(12): 215-218.
吴婧若, 步亚男, 岳进茹, 等. 独活寄生汤对TNF-α诱导的类风湿性关节炎成纤维样滑膜细胞增殖、凋亡和炎症的影响[J]. 中国药理学通报, 2024, 40(9): 1665-1673.
肖雨晨, 苗倩倩, 王珑, 等. 身痛逐瘀颗粒对类风湿性关节炎大鼠炎症及JAK/STAT信号通路的影响[J]. 广州中医药大学学报, 2024, 41(6): 1567-1573.
马铭, 李小童, 李艳威. 散寒除湿汤联合西药治疗老年类风湿关节炎对患者DAS28、HAQ评分的影响[J]. 辽宁中医杂志, 2024, 51(9): 80-83.
刘博文, 张晨妍, 祝伟杰, 等. 疏风活络丸治疗类风湿性关节炎的网络药理学分析及实验研究[J]. 中国医院药学杂志, 2024, 44(13): 1548-1556.
吴晓东, 罗穆玲, 徐立峰, 等. 清热祛风汤联合常规治疗对热痹证老年类风湿性关节炎患者的临床疗效[J]. 中成药, 2024, 46(3): 1056-1059.
李顺, 莫南文, 李勤勇. 羌活秦艽方对风寒湿痹型类风湿关节炎临床疗效、炎症因子及MMPs水平影响[J]. 中华中医药学刊, 2023(1): 39-42.)
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秦艽有效成分及其复方治疗类风湿性关节炎作用机制研究进展
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中草药 | 综述 2026,57(14): 5749-5760
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中草药 |综述 2026 , 57 (14) : 5749 -5760
秦艽有效成分及其复方治疗类风湿性关节炎作用机制研究进展
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任振朋1,2, 王嘉桐1,2, 赵富起1,2, 陈瑞汐2, 崔宏勋1,3, 李欢2, 杨洸1,3
作者信息
    1 河南中医药大学骨伤学院, 河南 郑州 450046;
    2 河南中医药大学, 河南 郑州 450046;
    3 河南省洛阳正骨医院(河南省骨科医院), 河南 郑州 450016
通讯作者:
杨洸
作者简介:
任振朋: 任振朋,男,硕士研究生,研究方向为中医药防治脊柱及相关疾病。E-mail:18638198415@163.com
Research progress on mechanisms of active ingredients in Gentianae Macrophyllae Radix and its compound prescriptions in treatment of rheumatoid arthritis
  • REN Zhenpeng, WANG Jiatong, ZHAO Fuqi, CHEN Ruixi, CUI Hongxun, LI Huan, YANG Guang
  • Affiliations
    doi: 10.7501/j.issn.0253-2670.2026.14.032
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    类风湿性关节炎(rheumatoid arthritis,RA)是一种以慢性滑膜炎和进行性关节破坏为特征的自身免疫性疾病,现有临床治疗药物存在不良反应显著、易产生耐药性等临床局限。秦艽Gentianae Macrophyllae Radix作为传统祛风湿要药,在RA治疗中历史悠久且疗效确切。研究表明,秦艽中发挥抗RA作用的核心成分为环烯醚萜类、三萜类及黄酮类化合物,其中龙胆苦苷、獐牙菜苦苷、熊果酸、山柰酚等为关键活性单体成分,这些成分通过调控核因子-κB、Janus激酶/信号转导与转录激活因子、核因子-红细胞2相关因子2/血红素氧合酶1等核心信号通路,实现抗炎、调节免疫、抑制滑膜成纤维细胞异常增殖与侵袭、抗氧化、抑制血管新生、抗骨破坏与软骨保护的多维度药理作用。临床上,秦艽常与防己、桑寄生、独活等药物配伍组成复方(如蠲痹汤、复方芪芎颗粒),针对RA不同中医证型实现多成分、多靶点的网络协同增效。综述秦艽通过多机制、多途径的整体调节模式干预RA病理进程,展现出良好应用前景,以期为其药效物质基础及开发利用提供理论依据。
    秦艽  /  类风湿性关节炎  /  龙胆苦苷  /  獐牙菜苦苷  /  熊果酸  /  山柰酚  /  滑膜成纤维细胞
    Rheumatoid arthritis (RA) is an autoimmune disease characterized by chronic synovitis and progressive joint destruction. Current clinical therapy drugs are limited by significant adverse effects and the development of drug resistance. Qinjiao (Gentianae Macrophyllae Radix), a well-known herb for dispelling wind-dampness in traditional Chinese medicine, has been historically used to treat RA with confirmed efficacy. Phytochemical studies have identified iridoids, triterpenoids, and flavonoids as the primary anti-RA constituents, with gentiopicroside, swertiamarin, ursolic acid, and kaempferol serving as key active monomers. These compounds exert multifaceted pharmacological effects through modulation of core signaling pathways including nuclear factor--κB (NF-κB), Janus kinase (JAK)/signal transducer and activator of transcription (STAT), and nuclear factor erythroid 2-related factor 2 (Nrf2)/heme oxygenase-1 (HO-1), leading to anti-inflammatory activity, immune regulation, inhibition of fibroblast-like synoviocyte (FLS) proliferation and invasion, antioxidant effects, suppression of angiogenesis, and protection against bone destruction and cartilage damage. In clinical practice, Qinjiao is commonly combined with other botanicals such as Fangji (Stephaniae Tetrandrae Radix), Sangjisheng (Taxilli Herba), and Duhuo (Angelicae Pubescentis Radix) in composite formulas (e.g., Juanbi Tang and Compound Qixiong Granules), achieving synergistic multi-component and multi-target effects tailored to different TCM syndromes of RA. This review summarizes the comprehensive regulatory mechanisms through which Qinjiao intervenes in RA pathogenesis via multiple pathways, highlighting its promising therapeutic potential and providing a theoretical basis for further investigation of its pharmacodynamic material basis and clinical development.
    Gentianae Macrophyllae Radix  /  rheumatoid arthritis  /  gentiopicroside  /  swertiamarin  /  ursolic acid  /  kaempferol  /  synovial fibroblasts
    任振朋, 王嘉桐, 赵富起, 陈瑞汐, 崔宏勋, 李欢, 杨洸. 秦艽有效成分及其复方治疗类风湿性关节炎作用机制研究进展. 中草药, 2026 , 57 (14) : 5749 -5760 . DOI: 10.7501/j.issn.0253-2670.2026.14.032
    REN Zhenpeng, WANG Jiatong, ZHAO Fuqi, CHEN Ruixi, CUI Hongxun, LI Huan, YANG Guang. Research progress on mechanisms of active ingredients in Gentianae Macrophyllae Radix and its compound prescriptions in treatment of rheumatoid arthritis[J]. Chinese Traditional and Herbal Drugs, 2026 , 57 (14) : 5749 -5760 . DOI: 10.7501/j.issn.0253-2670.2026.14.032

      河南省中医药科学研究专项 (2025ZY3069); 国家中医药管理局第五批全国中医临床优秀人才研修选项目 (国中医药人教函[2022]1号); 河南省中医药拔尖人才培养项目专项课题 (2022YBJ23); 河南省首批中医药拔尖人才项目 (豫中医科教[2018]25号); 河南省中医药重点学科建设项目 (豫卫中医[2023]16号)

    参考文献 引证文献
    排序方式:
    Di Matteo A, Bathon J M, Emery P. Rheumatoid arthritis [J]. Lancet, 2023, 402(10416): 2019-2033.
    Ma Y N, Chen H Y, Lv W H, et al. Global, regional and national burden of rheumatoid arthritis from 1990 to 2021, with projections of incidence to 2050: A systematic and comprehensive analysis of the Global Burden of Disease study 2021[J]. Biomark Res, 2025, 13(1): 47.
    Misra D P. Clinical manifestations of rheumatoid arthritis, including comorbidities, complications, and long-term follow-up [J]. Best Pract Res Clin Rheumatol, 2025, 39(1): 102020.
    Wang Y, Chen S J, Du K Z, et al. Traditional herbal medicine: Therapeutic potential in rheumatoid arthritis [J]. J Ethnopharmacol, 2021, 279: 114368.
    宝钢, 图诺木拉, 朝格巴达拉夫, 等. 龙胆属秦艽组植物化学成分及药理作用研究进展[J]. 中成药, 2024, 46(8): 2689-2697.
    史睿, 伍镝, 刘新. 蠲痹汤辅助艾拉莫德、甲氨蝶呤治疗类风湿关节炎疗效分析[J]. 中华中医药学刊, 2025, 43(10): 58-61.
    李娜, 白建英, 李付平, 等. 经典名方大秦艽汤的历史沿革与关键信息考证[J]. 中国实验方剂学杂志, 2025(7): 201-211.
    杨飞霞, 王玉, 夏鹏飞, 等. 秦艽化学成分和药理作用研究进展及质量标志物(Q-marker)的预测分析[J]. 中草药, 2020, 51(10): 2718-2731.
    梁国成, 段文贵, 陈舒茵. 秦艽化学成分及药理活性研究进展[J]. 中草药, 2024, 55(7): 2472-2490.
    徐艳, 张宏, 陈姚, 等. 秦艽分离有效部位对胶原诱导性关节炎的作用研究[J]. 中药药理与临床, 2017, 33(3): 83-87.
    李霞, 何志鹏, 王仕宝, 等. 基于HPLC的秦艽药材特征指纹图谱构建及主成分分析[J]. 甘肃农业大学学报, 2023, 58(3): 115-124.
    中国药典[S]. 一部. 2020: 331.
    孙建国, 李慧娟, 宝文萍, 等. 网络药理学、分子动力学和实验验证探究秦艽环烯醚萜苷抗类风湿性关节炎关键成分和作用机制[J]. 中草药, 2024, 55(17): 5853-5866.
    白永峰, 曹乌吉斯古楞. 麻花艽6个成分对类风湿性关节炎滑膜成纤维样细胞的影响及机制[J]. 中华中医药杂志, 2024, 39(7): 3680-3684.
    王诗婷, 孔伟华, 温乐乐, 等. 中药三萜类成分防治膝骨关节炎作用机制研究进展[J]. 中草药, 2023, 54(18): 6128-6138.
    范铭婕, 林龙飞, 汤如莹, 等. 中药黄酮类化合物治疗类风湿性关节炎的研究进展[J]. 中国实验方剂学杂志, 2025, 31(17): 244-251.
    沈章阳, 关若晴, 都孟然, 等. 诺丽果中化学成分及其抑制滑膜成纤维细胞增殖活性研究[J]. 中国中药杂志, 2023, 48(1): 105-113.
    Brown P, Pratt A G, Hyrich K L. Therapeutic advances in rheumatoid arthritis [J]. Bmj, 2024, 384: e070856.
    Zhang F, Jonsson A H, Nathan A, et al. Deconstruction of rheumatoid arthritis synovium defines inflammatory subtypes [J]. Nature, 2023, 623(7987): 616-624.
    贾娜, 崔佳, 文爱东. 藏药麻花秦艽醇提物对胶原诱导型关节炎模型小鼠滑膜组织中NF-κBp65表达的影响[J]. 中国药房, 2018, 29(15): 2082-2085.
    马晓辉, 张可锋, 朱田田, 等. 基于TLR2/4-NF-κB/iNOS-NO信号通路研究秦艽水提物对胶原诱导型关节炎大鼠的影响及作用机制[J]. 中药药理与临床, 2020, 36(5): 110-114.
    Jia N, Chu W, Li Y W, et al. Iridoid glycosides from the flowers of Gentiana macrophylla Pall. ameliorate collagen-induced arthritis in rats [J]. J Ethnopharmacol, 2016, 189: 1-9.
    杨琳, 林万程, 邓龙飞. 秦艽对佐剂性关节炎大鼠JAK2/STAT3信号通路的调控作用[J]. 中医药临床杂志, 2016, 28(6): 848-852.
    Grillet B, Pereira R V S, Van Damme J, et al. Matrix metalloproteinases in arthritis: Towards precision medicine [J]. Nat Rev Rheumatol, 2023, 19(6): 363-377.
    贾娜, 崔佳, 赵超, 等. 大叶秦艽花环烯醚萜类成分对胶原诱导性关节炎小鼠的治疗作用及相关机制探讨[J]. 中国免疫学杂志, 2018, 34(10): 1483-1486.
    Mueller A L, Payandeh Z, Mohammadkhani N, et al. Recent advances in understanding the pathogenesis of rheumatoid arthritis: New treatment strategies [J]. Cells, 2021, 10(11): 3017.
    Weyand C M, Goronzy J J. The immunology of rheumatoid arthritis [J]. Nat Immunol, 2021, 22(1): 10-18.
    Scherer H U, Häupl T, Burmester G R. The etiology of rheumatoid arthritis [J]. J Autoimmun, 2020, 110: 102400.
    鲜瑶瑶, 周俭, 曾光, 等. 熊果酸对胶原诱导性关节炎大鼠外周血Th17/Treg细胞比例失衡的影响[J]. 中华中医药学刊, 2019, 37(5): 1110-1114.
    焦宁, 陈迎, 常利华. 芹菜素通过miR-181a-5p/SOCS3信号通路调节Treg/Th17细胞平衡减轻类风湿关节炎进展[J]. 中国医科大学学报, 2024, 53(12): 1080-1087.
    Li N, Yi Y K, Zhao J, et al. Kaempferol improved rheumatoid arthritis by regulating the immune imbalance of treg/Th17[J]. Curr Med Sci, 2024, 44(6): 1259-1269.
    张洁, 刘巍, 朱新辉, 等. 针刺配合芹菜素治疗对胶原诱导性关节炎小鼠Th1/Th2细胞亚群的影响[J]. 中国老年学杂志, 2015, 35(5): 1353-1354.
    Choi J K, Kim S W, Kim D S, et al. Oleanolic acid acetate inhibits rheumatoid arthritis by modulating T cell immune responses and matrix-degrading enzymes [J]. Toxicol Appl Pharmacol, 2016, 290: 1-9.
    Cutolo M, Campitiello R, Gotelli E, et al. The role of M1/M2 macrophage polarization in rheumatoid arthritis synovitis [J]. Front Immunol, 2022, 13: 867260.
    Jia N, Gao Y Z, Li M, et al. Metabolic reprogramming of proinflammatory macrophages by target delivered roburic acid effectively ameliorates rheumatoid arthritis symptoms [J]. Signal Transduct Target Ther, 2023, 8: 280.
    López-Armada M J, Fernández-Rodríguez J A, Blanco F J. Mitochondrial dysfunction and oxidative stress in rheumatoid arthritis [J]. Antioxidants, 2022, 11(6): 1151.
    Zamudio-Cuevas Y, Martínez-Flores K, Martínez-Nava G A, et al. Rheumatoid arthritis and oxidative stress, a review of a decade [J]. Cell Mol Biol (Noisy-le-grand), 2022, 68(6): 174-184.
    Guazelli C F S, Staurengo-Ferrari L, Zarpelon A C, et al. Quercetin attenuates zymosan-induced arthritis in mice [J]. Biomed Pharmacother, 2018, 102: 175-184.
    El Bakary N M, Thabet N M, Rashed L A, et al. Beta-sitosterol alleviates inflammatory culprits and disease severity in arthritic irradiated rat’s model: Role of brain-spleen axis [J]. Immunopharmacol Immunotoxicol, 2026, 48(1): 11-33.
    Hajizadeh A, Abtahi Froushani S M, Tehrani A A, et al. Effects of naringenin on experimentally induced rheumatoid arthritis in wistar rats [J]. Arch Razi Inst, 2021, 76(4): 903-912.
    Nygaard G, Firestein G S. Restoring synovial homeostasis in rheumatoid arthritis by targeting fibroblast-like synoviocytes [J]. Nat Rev Rheumatol, 2020, 16(6): 316-333.
    白永峰, 曹乌吉斯古楞. 麻花艽6个成分对类风湿性关节炎滑膜成纤维样细胞的影响及机制[J]. 中华中医药杂志, 2024, 39(7): 3680-3684.
    吴晨, 魏昀, 葛珊, 等. 獐牙菜苦苷、龙胆苦苷和獐牙菜苷对类风湿关节炎成纤维样滑膜细胞促凋亡作用及Bcl-2表达情况的影响[J]. 中国中药杂志, 2021, 46(2): 406-411.
    周兴悦, 却翎, 丁雄, 等. 金铁锁三萜类成分对衣霉素诱导RA-FLS细胞内质网应激的影响[J]. 中成药, 2024, 46(5): 1499-1507.
    谷慧敏, 孟庆良, 左瑞庭, 等. β-谷甾醇对类风湿性关节炎滑膜成纤维细胞功能的影响及机制[J]. 中国药房, 2023, 34(15): 1847-1852.
    梁舒, 左淑飞, 崔玉荣, 等. 槲皮素通过调控miR-431-5p/鼠双微基因4信号通路抑制类风湿关节炎成纤维样滑膜细胞侵袭和促进凋亡[J]. 实用临床医药杂志, 2023, 27(12): 50-56.
    Caliogna L, Berni M, Torriani C, et al. Pathogenesis of osteoarthritis, rheumatoid arthritis, and hemophilic arthropathy: The role of angiogenesis [J]. Haemophilia, 2024, 30(6): 1256-1264.
    李琪, 陈秀, 徐艳, 等. 基于多元统计分析对秦艽中环烯醚萜苷抗胶原诱导型关节炎作用机制的研究[J]. 中药药理与临床, 2019, 35(2): 46-52.
    Jing R Y, Chen Y Y, Xu M M, et al. Investigating the mechanism of gentiopicroside in rheumatoid arthritis through network pharmacology, molecular docking, and experimental validation [J]. Sci Rep, 2025, 15: 19871.
    褚小磊, 柴继侠, 郭帅, 等. 槲皮素对胶原诱导性关节炎大鼠滑膜血管新生的影响[J]. 山西医科大学学报, 2021, 52(3): 301-309.
    李飒, 葛珊, 郑丽霞, 等. 秦艽-威灵仙配伍对类风湿关节炎模型大鼠血清学指标及HIF-1α、VEGF表达的影响[J]. 时珍国医国药, 2023, 34(5): 1044-1048.
    苏杉, 王蓉, 赵敏, 等. 秦艽不同配伍药对对风寒湿痹型类风湿关节炎大鼠踝关节核因子κB、血管内皮生长因子表达及病理学改变的影响[J]. 辽宁中医杂志, 2020, 47(3): 179-182.
    Komatsu N, Takayanagi H. Mechanisms of joint destruction in rheumatoid arthritis-immune cell-fibroblast-bone interactions [J]. Nat Rev Rheumatol, 2022, 18(7): 415-429.
    Schneider A H, Taira T M, Públio G A, et al. Neutrophil extracellular traps mediate bone erosion in rheumatoid arthritis by enhancing RANKL-induced osteoclastogenesis [J]. Br J Pharmacol, 2024, 181(3): 429-446.
    Wei S X, Cheng R J, Li S J, et al. MSC–microvesicles protect cartilage from degradation in early rheumatoid arthritis via immunoregulation [J]. J Nanobiotechnol, 2024, 22(1): 673.
    Ilchovska D (, Barrow D M. An Overview of the NF-κB mechanism of pathophysiology in rheumatoid arthritis, investigation of the NF-κB ligand RANKL and related nutritional interventions [J]. Autoimmun Rev, 2021, 20(2): 102741.
    周俭, 曾光, 鲜瑶瑶, 等. 熊果酸对CIA大鼠关节软组织RANKL、RANK、OPG mRNA表达的影响[J]. 亚太传统医药, 2020, 16(3): 28-30.
    Hairul-Islam M I, Saravanan S, Thirugnanasambantham K, et al. Swertiamarin, a natural steroid, prevent bone erosion by modulating RANKL/RANK/OPG signaling [J]. Int Immunopharmacol, 2017, 53: 114-124.
    Yamaguchi M, Weitzmann M N. Quercetin, a potent suppressor of NF-κB and Smad activation in osteoblasts [J]. Int J Mol Med, 2011, 28(4): 521-525.
    Xia C M, Chang T, Gong X, et al. Qingre Huoxue Decoction and its active compound quercetin modulate bone remodeling by inhibiting ATF4 hyperactivation to attenuate bone erosion in rheumatoid arthritis [J]. J Orthop Surg Res, 2025, 20(1): 949.
    Dehnavi S, Sadeghi M, Tavakol Afshari J, et al. Interactions of mesenchymal stromal/stem cells and immune cells following MSC-based therapeutic approaches in rheumatoid arthritis [J]. Cell Immunol, 2023, 393: 104771.
    刘耀辉, 黄振明, 何精选, 等. 熊果酸干预骨髓间充质干细胞增殖与成骨分化[J]. 中国组织工程研究, 2019, 23(17): 2665-2671.
    钱佳佳, 许奇, 许炜民, 等. 山柰酚调控白细胞介素-1β诱导的软骨细胞的药理学研究[J]. 中国临床药理学杂志, 2023, 39(22): 3311-3315.
    占龙, 孟农钦, 农桔安, 等. 原儿茶酸可减轻退变软骨细胞的损伤[J]. 中国组织工程研究, 2020, 24(8): 1149-1154.
    姜泉, 巩勋, 焦娟, 等. 类风湿关节炎病证结合诊疗指南(2025年) [J]. 中医杂志, 2025, 66(17): 1842-1856.
    申钲瑶, 李晶涛, 杨煜辰, 等. 2506例类风湿关节炎不同病程患者中医证型分布特点及中医药疗效评价: 一项真实世界回顾性研究[J]. 中医杂志, 2025, 66(23): 2453-2459.
    吴童, 李靖, 孔维萍, 等. 阎小萍“寒热为纲”辨治风湿病思想渊源及应用探讨[J]. 中华中医药杂志, 2025, 40(6): 2916-2920.
    李飒, 葛珊, 郑丽霞, 等. 秦艽-威灵仙配伍对类风湿关节炎模型大鼠血清学指标及HIF-1α、VEGF表达的影响[J]. 时珍国医国药, 2023, 34(5): 1044-1048.
    葛珊, 魏昀, 吴晨, 等. 秦艽、威灵仙主要成分龙胆苦苷、木兰花碱对RA模型大鼠抗炎作用机制研究[J]. 中药药理与临床, 2022, 38(4): 62-67.
    葛珊, 郑丽霞, 李飒, 等. 龙胆苦苷、木兰花碱对RA模型大鼠踝关节组织病理学及血清PGE2、Bcl-2水平的影响[J]. 中兽医医药杂志, 2022, 41(6): 19-24.
    郭从嘉, 吴国泰, 高慧琴, 等. 秦艽、威灵仙组分配伍对类风湿关节炎模型大鼠血清炎症因子及踝关节NF-κB、VEGF表达的影响[J]. 中国实验方剂学杂志, 2023, 29(11): 53-63.
    郭从嘉, 吴国泰, 高慧琴, 等. 秦艽与威灵仙组分配伍对类风湿关节炎大鼠的治疗作用[J]. 中国临床药理学杂志, 2023, 39(21): 3139-3143.
    王丽明, 吴国泰, 高慧琴, 等. 秦艽、威灵仙组分配伍对类风湿关节炎模型大鼠抗血管新生作用及机制研究[J]. 时珍国医国药, 2024, 35(7): 1567-1573.
    苏杉, 王蓉, 赵敏, 等. 秦艽不同配伍药对对风寒湿痹型类风湿关节炎大鼠踝关节核因子κB、血管内皮生长因子表达及病理学改变的影响[J]. 辽宁中医杂志, 2020, 47(3): 179-182.
    苏杉, 王蓉, 刘飞, 等. 秦艽不同配伍对风寒湿痹类风湿关节炎模型大鼠关节保护作用及其机制[J]. 中国临床药理学杂志, 2018, 34(21): 2542-2545.
    马腾茂, 强宇靖, 罗奎元, 等. 秦艽不同配伍药对对风寒湿痹类风湿关节炎模型大鼠血清炎性因子及踝关节病理学改变的影响[J]. 中国全科医学, 2017, 20(15): 1878-1883.
    马腾茂, 刘飞, 王蓉, 等. 秦艽不同配伍药对对风湿热痹类风湿性关节炎模型大鼠镇痛作用及血清TNF-α、IL-1β、PGE2的影响[J]. 辽宁中医杂志, 2017, 44(11): 2423-2426.
    王蓉, 苏杉, 孙少伯, 等. 秦艽对风湿热痹类风湿关节炎大鼠的保护作用[J]. 中国临床药理学杂志, 2018, 34(1): 41-44.
    王蓉, 苏杉, 马腾茂, 等. 秦艽不同配伍药对对风湿热痹型RA大鼠踝关节VEGF表达及病理学的影响[J]. 中药新药与临床药理, 2018, 29(2): 136-142.
    王蓉, 苏杉, 孙少伯, 等. 秦艽寒热不同配伍药对对风湿热痹RA大鼠踝关节MMP-1、TIMP-1表达的影响[J]. 时珍国医国药, 2018, 29(6): 1331-1335.
    董壮, 李冀. 尖叶假龙胆与秦艽配伍对类风湿性关节炎模型大鼠相关炎性因子的影响[J]. 中医药信息, 2016, 33(3): 75-78.
    王媛, 顾万红, 何苗, 等. 基于网络药理学方法探究秦艽-蚕沙药对治疗类风湿性关节炎的作用机制[J]. 甘肃医药, 2024, 43(3): 238-242.
    李帅谊, 周晓慧, 刘增辉, 等. 基于网络药理学及分子对接探究秦艽-羌活治疗类风湿性关节炎的作用机制[J]. 生物加工过程, 2025, 23(4): 444-454.
    宋育萌, 王嘉雯, 权利娜, 等. 不同挥发油对秦艽-独活药对主要成分的促渗及抗炎作用研究[J]. 中草药, 2025, 56(23): 8560-8570.
    常俊杰, 刘亦冰, 戴文昊, 等. 孟河医派费氏治疗痹证用药规律研究[J]. 中药药理与临床, 2023, 39(4): 102-106.
    吴雅婕, 徐文博, 袁美玲, 等. 程氏蠲痹汤通过阻断WTAP-Wnt7b-Wnt/β-catenin信号轴抑制类风湿性关节炎病理[J]. 四川大学学报: 医学版, 2025, 56(5): 1260-1272.
    陈利锋, 张钰景, 卢绮萍, 等. 复方芪芎颗粒对类风湿性关节炎模型大鼠滑膜趋化因子的调控作用研究[J]. 四川中医, 2025, 43(3): 121-125.
    Liu W, Zeng K, Zhou X, et al. Comparative study on brain pharmacokinetics of Buyang Huanwu Decoction in normal and cerebral ischemia rats using brain microdialysis combined with LC-MS/MS [J]. Chin Herb Med, 2022, 14(4): 630-637.
    姚瑶, 周萍, 骆飞, 等. 青风藤汤辅助治疗类风湿关节炎对患者CXCL13、MIP-1α的变化研究[J]. 中华中医药学刊, 2025, 43(11): 230-233.
    王森林, 张永刚, 张英, 等. 二十八味风湿骨痛汤加减在高海拔地区类风湿性关节炎治疗中的作用[J]. 中华中医药学刊, 2024, 42(12): 215-218.
    吴婧若, 步亚男, 岳进茹, 等. 独活寄生汤对TNF-α诱导的类风湿性关节炎成纤维样滑膜细胞增殖、凋亡和炎症的影响[J]. 中国药理学通报, 2024, 40(9): 1665-1673.
    肖雨晨, 苗倩倩, 王珑, 等. 身痛逐瘀颗粒对类风湿性关节炎大鼠炎症及JAK/STAT信号通路的影响[J]. 广州中医药大学学报, 2024, 41(6): 1567-1573.
    马铭, 李小童, 李艳威. 散寒除湿汤联合西药治疗老年类风湿关节炎对患者DAS28、HAQ评分的影响[J]. 辽宁中医杂志, 2024, 51(9): 80-83.
    刘博文, 张晨妍, 祝伟杰, 等. 疏风活络丸治疗类风湿性关节炎的网络药理学分析及实验研究[J]. 中国医院药学杂志, 2024, 44(13): 1548-1556.
    吴晓东, 罗穆玲, 徐立峰, 等. 清热祛风汤联合常规治疗对热痹证老年类风湿性关节炎患者的临床疗效[J]. 中成药, 2024, 46(3): 1056-1059.
    李顺, 莫南文, 李勤勇. 羌活秦艽方对风寒湿痹型类风湿关节炎临床疗效、炎症因子及MMPs水平影响[J]. 中华中医药学刊, 2023(1): 39-42.
    2026年第57卷第14期
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    2种不同金属材料的力学参数

    Family
    属数
    Number of
    genus
    种数
    Number of
    species
    占总种数比例
    Percentage of
    total species (%)

    Genus
    种数
    Number of
    species
    占总种数比例
    Percentage of total
    species (%)
    鹅膏菌科Amanitaceae 2 11 5.26 鹅膏菌属 Amanita 10 4.78
    小菇科 Mycenaceae 2 12 5.74 丝盖伞属 Inocybe 5 2.39
    多孔菌科 Polyporaceae 8 14 6.70 蜡蘑属 Laccaria 5 2.39
    红菇科 Russulaceae 3 23 11.00 小皮伞属 Marasmius 6 2.87
    小菇属 Mycena 11 5.26
    光柄菇属 Pluteus 5 2.39
    红菇属 Russula 17 8.13
    栓菌属 Trametes 5 2.39
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