|
[1] Gong L, Wei F, Gonzalez FJ, et
al. Hepatic fibrosis: targeting peroxisome
proliferator-activated receptor alpha from mechanism to medicines[J].Hepatology, 2023,78(5):1625-1653.
[2] Khan S, Saxena R. Regression of hepatic fibrosis and evolution of cirrhosis: a concise review[J].Adv Anat Pathol, 2021,28(6):408-414.
[3] Caligiuri A, Gentilini A, Pastore M, et al. Cellular and molecular mechanisms underlying liver fibrosis
regression[J].Cells, 2021,10(10):2759.
[4] 石思,李开楊,赵琦,等.基于TLR4/NF-κB信号通路探讨祛脂愈肝汤对肝星状细胞增殖、凋亡的影响[J].时珍国医国药,2024,35(5):1063-1067.
[5] 李开楊,吴小梅,黄敬,等.天然产物调控TGF-β1/Smad通路治疗肝纤维化研究进展[J].中国实验动物学报,2024,32(10):1320-1331.
[6] 黄桂东,周至品,庞智,等.基于TLR4/NF-κB/NLRP3信号通路研究三叶香茶菜含药血清对肝星状细胞的影响[J].中国中药杂志,2023,48(14):3913-3921.
[7] Deng J, Qin L, Zhou Z. Network pharmacology and molecular
docking reveal the mechanism of isodon ternifolius (D. Don) Kudo against liver fibrosis[J].Drug Des Devel Ther, 2023,17:2335-2351.
[8] 杨建华,耿若愚,臧薇,等.基于网络药理学和实验验证探讨毛菊苣治疗肝纤维化作用机制[J].中国现代应用药学,2024,41(3):303-312.
[9] 于瑞雪,张玉佩,吴楠,等.藏药五脉绿绒蒿总生物碱的抗炎作用研究[J].中药新药与临床药理,2021,32(4):461-466.
[10] 孔苑琳,张剑光,苏宏娜,等.UPLC-Q-Exactive-MS/MS结合网络药理学分析五脉绿绒蒿的化学成分及其抗肝纤维化作用机制[J].中国中药杂志,2022,47(22):6097-6116..
[11] 张春艳,金蓉,颜羽昕,等.基于药效学和网络药理方法探讨蓝盆花抗肝纤维化的作用机制[J].中国中药杂志,2022,47(13):3609-3618.
[12] Jiang H, Huang X, Wang J, et al. Hepatoprotective effect of medicine food homology flower
saffron against CCl4-induced liver fibrosis in mice via the akt/hif-1α/vegf signaling pathway[J].Molecules, 2023,28(21):7238.
[13] 李文庆,彭成,罗诗燕,等.川芎水煎液对DEN诱导肝纤维化大鼠肝功能及肝纤维化指标的影响[J].中药药理与临床,2022,38(6):109-114.
[14] Li Y, Li F, Ding M, et al. Chuanxiong
Rhizoma extracts prevent liver fibrosis via targeting CTCF-c-MYC-H19 pathway[J].Chin Herb Med, 2023,16(1):82-93.
[15] Tang YX, Liu M, Liu L, et al. Lipophilic
constituents in Salvia miltiorrhiza inhibit activation of the hepatic stellate
cells by suppressing the JAK1/STAT3 signaling pathway: a network pharmacology study and experimental validation[J].Front Pharmacol, 2022,13:770344.
[16] 徐万爱,杨丹阳,吴静雨,等.肉苁蓉的主要化学成分及生物活性研究进展[J].中华中医药学刊,2024,42(10):163-170.
[17] 张博锐,马倩倩,王雯艺,等.基于网络药理学、分子对接和实验验证探讨肉苁蓉治疗肝纤维化的作用机制[J].天然产物研究与开发,2022,34(4):677-686.
[18] 钟熙,杨鹤,柯晓雪,等.桑树化学成分及药理活性研究进展[J].中国中药杂志,2022,47(9):2373-2391.
[19] 乔靖怡,李汉伟,陈金香,等.桑椹抗肝纤维化作用的网络药理学分析和实验验证[J].中国新药与临床杂志,2024,43(1):62-69.
[20] 张慧兰,郭文晖,王旭,等.仙鹤草化学成分和药理作用的研究进展及其质量标志物(Q-Marker)预测分析[J].中草药,2023,54(16):5399-5409.
[21] 李麟,赖俐伶,刘华宝.基于网络药理学及药理实验验证探讨仙鹤草抗肝纤维化的作用机制[J].世界中医药,2023,18(1):58-64.
[22] 朱毅,谯明.基于网络药理学结合分子对接探讨小茴香抗肝纤维化的作用机制及实验验证[J].广西医科大学学报,2023,40(8):1290-1298.
[23] 章圣朋,张超,李丽华,等.基于网络药理学预测荜茇抗肝纤维化作用及验证研究[J].中国中药杂志,2021,46(4):845-854.
[24] 黄华靖,江洁怡,肖观林,等.猫爪草的化学成分、药理作用研究进展及其质量标志物的预测分析[J].中药材,2022,45(3):752-759.
[25] Han L, Lin G, Li J, et al. Network
pharmacology and transcriptomic profiling elucidate the therapeutic effects of
ranunculus ternatus thunb on liver fibrosis via MK3-NF-κB inhibition[J].Aging (Albany NY), 2024,16(5):4759-4777.
[26] Liu S, Chen P, Mohammed SAD, et al. Exploration of the potential mechanism of Baicalin for
hepatic fibrosis based on network pharmacology, gut
microbiota, and experimental validation[J].Front Microbiol, 2023,13:1051100.
[27] An L, Lin Y, Li L, et al. Integrating
network pharmacology and experimental validation to investigate the effects and
mechanism of astragalus flavonoids against hepatic fibrosis[J].Front Pharmacol, 2021,11:618262.
[28] Hu X, Shen H, Liu R, et al. Mechanism of acacetin regulating hepatic stellate cell
apoptosis based on network pharmacology and experimental verification[J].Heliyon, 2024,10(7):e28693.
[29] 肖玉洪,安祯祥,王芳,等.基于网络药理学和动物实验探讨柠檬苦素抗肝纤维化的作用机制[J].中国现代应用药学,2024,41(4):460-468.
[30] 郑洋,王佳慧,赵铁建,等.基于网络药理学和实验验证探究莪术醇对肝星状细胞衰老的作用机制[J].中国现代应用药学,2024,41(23):3355-3365.
[31] 宛博,单玲玲,田晓雨,等.基于网络药理学方法和细胞实验探讨长春布宁治疗肝纤维化的作用机制[J].中国医院药学杂志,2024,44(22):2557-2562.
[32] 孙墨晗,张秋菊,赵哲,等.基于网络药理学和细胞实验探讨阿魏酸抗肝纤维化的作用机制[J].世界科学技术-中医药现代化,2023,25(12):3908-3919.
[33] 黄祎,夏莉,雷青松,等.柴胡皂苷D对大鼠免疫性肝纤维化的保护作用及其机制研究[J].陆军军医大学学报,2022,44(14):1410-1420.
[34] Liang B, Gao L, Wang F, et al. The mechanism
research on the anti-liver fibrosis of emodin based on network pharmacology[J].IUBMB Life, 2021,73(9):1166-1179.
[35] Qin T, Wang M, Zhang T, et al. Total C-21 steroidal glycosides from baishouwu ameliorate hepatic and renal
fibrosis by regulating IL-1β/MyD88 inflammation signaling[J].Front Pharmacol, 2021,12:775730.
[36] 吕志远,宋建忠,曹玲玲,等.基于网络药理学及实验验证探究松三糖治疗肝纤维化的作用机制[J].现代药物与临床,2024,39(10):2477-2483.
|