Mechanism of Lycii Fructus on the basis of network pharmacology
GUO Yanli1 LIU Weili1 WU Lihong1 JU Aixia2 SUN Shuang2 LI Qiuhong2
1.Experimental Training Center, Heilongjiang University of Chinese Medicine, Heilongjiang Province, Harbin 150040, China;
2.School of Pharmacy, Heilongjiang University of Chinese Medicine, Heilongjiang Province, Harbin 150040, China
Abstract:Objective To study the main active components and targets of Lycii Fructus by network pharmacology, and speculate the possible pharmacological mechanism. Methods The bioactive components of Lycii Fructus were searched on the platform of BATMAN-TCM. The bioactive components were screened according to the criteria of oral bioavailability (OB)≥30% and drug like (DL)≥0.18, and the corresponding targets of the bioactive components were found. The purpose protein interaction network of active ingredients of Lycii Fructus was constructed, and the GO function enrichment and KEGG signal pathway enrichment were performed using the DAVID database. Results Forty-five kinds of active components that were OB≥30%, DL≥0.18 in Lycii Fructus were screened, among which, 36 active components had a total of 208 targets eliminating duplicates. In the DAVID database, performed under the condition of “P < 0.05, number of genes>10”, and 56 GO items of main biological functions of Lycii Fructus were obtained, 84 KEGG pathways were obtained. Conclusion The exploration of the multi-functional substance basis and multi-dimensional pharmacological effects of Lycii Fructus can provide reference for the further study.
郭艳丽1 刘维丽1 吴丽红1 鞠爱霞2 孙爽2 李秋红2. 基于网络药理学分析枸杞子的作用机制[J]. 中国医药导报, 2020, 17(19): 112-115,119.
GUO Yanli1 LIU Weili1 WU Lihong1 JU Aixia2 SUN Shuang2 LI Qiuhong2. Mechanism of Lycii Fructus on the basis of network pharmacology. 中国医药导报, 2020, 17(19): 112-115,119.
[1] 樊耀华,欧海亚,王汉裕,等.基于网络药理学的茵陈五苓散作用机制分析[J].中国实验方剂学杂志,2018,24(11):194-200.
[2] 李泮霖,苏薇薇.网络药理学在中药研究中的最新应用进展[J].中草药,2016,47(16):2938-2942.
[3] 刘倩,余意,梁琰,等.枸杞子活性成分及分析方法研究进展[J].辽宁中医药大学学报,2018,20(11):56-59.
[4] 钱彦丛,宇文萍.枸杞子的化学成分及药理研究新进展[J].中医药学报,2000(4):33-35.
[5] 于国华,裴纹萱,孙慧娟,等.枸杞多糖的神经保护作用机制研究进展[J].中国实验方剂学杂志,2018,24(9):213-219.
[6] 朱依谆,殷明.药理学[M].8版.北京:人民卫生出版社,2016:29.
[7] Szklarczyk D,Morris JH,Cook H,et al. The STRING database in 2017:quality-controlled protein-protein association networks,made broadly accessible [J]. Nucleic Acids Res,2017,45(D1):D362-D368.
[8] 钱凯,杜彦仪,韩隆胤,等.基于网络药理学探讨五苓散治疗类风湿关节炎的作用机制[J].中国实验方剂学杂志,2019,25(19):138-146.
[9] 李从林,王博龙.基于网络药理学的益母草作用机制分析[J].中国中医药信息杂志,2018,25(12):102-106.
[10] 陈文娜,朱爱松,丛培玮,等.基于网络药理学的二陈汤治疗冠心病分子机制研究[J].中草药,2019,50(2):441-448.
[11] 段凯旋,李跃文,刘和波,等.基于网络药理学的羌活-独活药对抗炎作用机制研究[J].中国药房,2019,30(9):1241-1246.
[12] 刘传亮,李蕾.枸杞子、决明子复方中药制剂对豚鼠动脉粥样硬化预防机制的研究[J].世界最新医学信息文摘,2018,18(28):1-2.
[13] 刘守青,吕一帆,杨妮,等.黄连和枸杞子对抗精神病药奥氮平引起胰岛素抵抗的干预研究[J].中国现代中药,2019,6(21):764-770.
[14] Marunaka Y,Marunaka R,Sun H,et al. Actions of quercetin,a polyphenol,on blood pressure [J]. Molecules,2017,22(2):209-219.
[15] Ramos S. Cancer chemoprevention and chemotherapy:dietary polyphenols and signalling pathways [J]. Mol Nutr Food Res,2008,52(5):507-526.
[16] 马云青,李晓梅,刘雪萍,等.槲皮素通过G4调控癌基因表达影响肿瘤细胞增殖与凋亡[J].中国细胞生物学学报,2019,41(12):2319-2331.
[17] Bruning A. Inhibition of mTOR signaling by quercetin in cancer treatment and prevention [J]. Anticancer Agents Med Chem,2013,13(7):1025-1031.
[18] Cho SY,Kim MK,Park KS,et al. Quercetin-POC coniugates:differential(MCF-7)and colorectal carcinoma(HC-T116)cell lines [J]. Bioorg Med Chem,2013,21(7):1671-1679.
[19] Massi A,Bortolini O,Ragno D,et al. Research progress in the modification of quercetin leading to anticancer agents [J]. Molecules,2017,22(8):1270.
[20] 王娟,刘军权,陈复兴,等.β-谷甾醇对人共刺激细胞杀伤胃癌SGC-7901细胞的影响及其机制的探讨[J].免疫学杂志,2014,30(7):578-584.
[21] Cai H,Liu F,Zuo P,et al. Practical application of antidiabetic efficacy of Lycium barbarum polysaccharide in patients with type 2 diabetes [J]. Med Chem,2015,11(4):383-390.