
浏览全部资源
扫码关注微信
1.广州中医药大学 第二临床医学院,广州 510006
2.广州中医药大学 第二附属医院,广州 510120
毕艺鸣,在读博士,从事中医药治疗内分泌病研究,Tel:020-81887233,E-mail:451645244@qq.com
* 范冠杰,博士,主任医师,从事中医药治疗内分泌病研究,Tel:020-81887233,E-mail:fanfanfangj@163.com
收稿日期:2020-01-02,
网络出版日期:2020-07-23,
纸质出版日期:2020-12-20
移动端阅览
毕艺鸣,殷贝,夏亚情等.基于网络药理学探讨四逆散治疗2型糖尿病的作用机制[J].中国实验方剂学杂志,2020,26(24):169-177.
BI Yi-ming,YIN Bei,XIA Ya-qing,et al.Mechanism of Sinisan in Treating Type 2 Diabetes Mellitus Based on Network Pharmacology[J].Chinese Journal of Experimental Traditional Medical Formulae,2020,26(24):169-177.
毕艺鸣,殷贝,夏亚情等.基于网络药理学探讨四逆散治疗2型糖尿病的作用机制[J].中国实验方剂学杂志,2020,26(24):169-177. DOI: 10.13422/j.cnki.syfjx.20202060.
BI Yi-ming,YIN Bei,XIA Ya-qing,et al.Mechanism of Sinisan in Treating Type 2 Diabetes Mellitus Based on Network Pharmacology[J].Chinese Journal of Experimental Traditional Medical Formulae,2020,26(24):169-177. DOI: 10.13422/j.cnki.syfjx.20202060.
目的
2
运用网络药理学方法研究四逆散治疗2型糖尿病(T2DM)的作用机制,旨在为其基础研究及临床应用提供依据。
方法
2
通过多个数据库检索并筛选四逆散中不同药物的活性成分及其与T2DM的交集靶点,通过Cytoscape分别构建药物、靶点、疾病靶点网络图;利用STRING数据库构建交集靶点的PPI网络,利用CytoNCA进行网络拓扑分析,利用Cluster Marker进行网络模块化分析,再通过ClueGO进行基因功能(GO),京都基因和基因组合百科全书(KEGG)富集分析。
结果
2
四逆散中筛选得到137个活性成分,涉及T2DM靶点110个;CytoNCA分析筛选出12个关键靶点。Cluster Marker分析提示,交集靶点分别涉及4个模块,GO分析结果显示:模块一主要涉及急性炎症反应、乙酰胆碱受体信号通路等生物学过程;模块二主要涉及类固醇刺激的反应,对外源性刺激的反应等;而模块三主要参与细胞对各种营养物质的代谢反应以及对缺氧的调控反应等。KEGG分析主要与晚期糖基化终末产物及其受体通路、凋亡通路、炎症通路、细胞周期以及各种代谢通路高度相关。
结论
2
四逆散治疗T2DM可能是其综合调控炎症、细胞凋亡、物质代谢等的结果。该研究不仅揭示了四逆散治疗2型糖尿病的潜在机制,还揭示了四逆散与糖尿病血管并发症、糖尿病认知障碍及恶性肿瘤的关系,为四逆散的基础研究提供方向。
Objective
2
To investigate the mechanism of Sinisan in treating type 2 diabetes mellitus(T2DM) based on network pharmacology.
Method
2
Based on electronic databases, active ingredients of Sinisan and target genes of ingredients as well as type 2 diabetes were screened out. Cytoscape software was applied to construct "herb-active ingredient-target-disease" interaction network diagram,respectively. The common genes of ingredients and disease were uploaded to the STRING database, and the protein interaction network map (PPI) was constructed. CytoNCA and Cluster Marker were used to analyze PPI,respectively. Finally,ClueGO was used to analyze gene ontology (GO) enrichment and Kyoto Encyclopedia of genes and genomes (KEGG) pathway enrichment.
Result
2
A total of 137 active components and 110 effective genes of Sinisan in the treatment of type 2 diabetes were screened out. Based on PPI analysis,these effective genes were divided into 4 different clusters, and 12 genes were considered as the most effective targets. GO enrichment analysis showed that cluster 1 mainly involved acute inflammatory response and acetylcholine receptor signaling pathway, cluster 2 mainly involved cellular response to steroid hormone stimulu and xenobiotic stimulus,and cluster 3 was mainly engaged in the metabolism process of protein,fatty and glucose and the response to hypoxia. KEGG analysis was highly correlated with advanced glycation end products-receptor for AGE (AGE-RAGE) pathway,apoptosis pathway,inflammatory pathway,cell cycles and various metabolic pathways.
Conclusion
2
Sinisan has a regulatory effect in pathogenesis and prognosis of T2DM,such as inflammation,cell apoptosis and nutrition metabolism. Moreover,its potential mechanisms on diabetic angiopathies,diabetic cognitive impairment and cancers were reveal,so as to define a direction for the fundamental research of Sinisan.
贾伟平 , 陆菊明 , 纪立农 , 等 . 中国2型糖尿病防治指南(2017年版) [J]. 中国实用内科杂志 , 2018 , 38 ( 4 ): 292 - 344 .
GUARIGUATA L , WHITING D R , HAMBLETON I , et al . Global estimates of diabetes prevalence for 2013 and projections for 2035 [J]. Diabetes Res Clin Pract , 2014 , 103 ( 2 ): 137 - 149 .
刘晓琦 . 从肝脾论治2型糖尿病的研究概况 [J]. 中国民间疗法 , 2019 , 27 ( 7 ): 101 - 103 .
周珺 . 2型糖尿病患者HPA轴功能的临床研究及药物治疗新途径的实验性探索 [D]. 兰州 : 兰州大学 , 2011 .
李凯 , 冯兴中 . 冯兴中教授治疗2型糖尿病经验 [J]. 中华中医药杂志 , 2015 , 30 ( 8 ): 2805 - 2807 .
杨晓晖 . 吕仁和教授运用加味四逆散治疗消渴病并发症经验 [J]. 中医函授通讯 , 1995 ( 4 ): 32 - 34 .
林玉平 , 范冠杰 . 范冠杰教授运用疏肝药串治疗消渴的经验 [J]. 时珍国医国药 , 2014 , 25 ( 11 ): 2779 - 2780 .
蔡少娜 , 陈文艺 , 曾志安 , 等 . 四逆散治疗2型糖尿病的研究 [J]. 内蒙古中医药 , 2019 , 38 ( 1 ): 2 - 3 .
梁绍满 , 邓小敏 . 四逆散对2型糖尿病大鼠血糖、11βHSD1及GR的影响 [J]. 光明中医 , 2016 , 31 ( 19 ): 2799 - 2803 .
MALLIK M K . An attempt to understand glioma stem cell biology through centrality analysis of a protein interaction network [J]. J Theor Biol , 2018 , 438 ( 7 ): 78 - 91 .
Al-ISHAQ R K , ABOTALEB M , KUBATKA P , et al . Flavonoids and their anti-diabetic effects:cellular mechanisms and effects to improve blood sugar levels [J]. Biomolecules , 2019 , 9 ( 9 ): 430 - 465 .
PRAUSE M , MAYER C M , BRORSSON C , et al . JNK1 deficient insulin-producing cells are protected against Interleukin-1beta-Induced Apoptosis associated with abrogated Myc expression [J]. Exp Diabesity Res , 2016 , 2016 : 1312705 .
HIEROLD J , BAEK S , RIEGER R , et al . Design,Synthesis,and biological evaluation of quercetagetin analogues as JNK1 inhibitors [J]. Chemistry , 2015 , 21 ( 47 ): 16887 - 16894 .
ADEBIYI A O , ADEBIYI O O , OWIRA P M . Naringin mitigates cardiac hypertrophy by reducing oxidative stress and Inactivating c-Jun nuclear Kinase-1 protein in type I diabetes [J]. J Cardiovasc Pharmacol , 2016 , 67 ( 2 ): 136 - 144 .
FATHY S A , MOHAMED M R , ALI M , et al . Influence of IL-6,IL-10,IFN-gamma and TNF-alpha genetic variants on susceptibility to diabetic kidney disease in type 2 diabetes mellitus patients [J]. Biomarkers , 2019 , 24 ( 1 ): 43 - 55 .
DING L , JIN D , CHEN X . Luteolin enhances insulin sensitivity via activation of PPAR gamma transcriptional activity in adipocytes [J]. J Nutr Biochem , 2010 , 21 ( 10 ): 941 - 947 .
CHENG F , MA C , WANG X , et al . Effect of traditional Chinese medicine formula Sinisan on chronic restraint stress-induced nonalcoholic fatty liver disease:a rat study [J]. BMC Complement Altern Med , 2017 , 17 ( 1 ): 203 - 213 .
JIANG H , YAMASHITA Y , NAKAMURA A , et al . Quercetin and its metabolite isorhamnetin promote glucose uptake through different signalling pathways in myotubes [J]. Sci Rep , 2019 , 9 ( 1 ): 2690 - 2705 .
CAMAFORTE N , SALDANHA L L , VAREDA P , et al . Hypoglycaemic activity of Bauhinia holophylla through GSK3- β inhibition and glycogenesis activation [J]. Pharm Biol , 2019 , 57 ( 1 ): 269 - 279 .
BURKE A C , SUTHERLAND B G , TELFORD D E , et al . Intervention with citrus flavonoids reverses obesity and improves metabolic syndrome and atherosclerosis in obese Ldlr(-/-)mice [J]. J Lipid Res , 2018 , 59 ( 9 ): 1714 - 1728 .
YANG Y , WANG Y , ZHOU K , et al . Constructing regulatory networks to identify biomarkers for insulin resistance [J]. Gene , 2014 , 539 ( 1 ): 68 - 74 .
LUO Y , LUO J , PENG H . Associations between genetic polymorphisms in the VEGFA,ACE,and SOD2 genes and susceptibility to diabetic nephropathy in the Han Chinese [J]. Genet Test Mol Biomarkers , 2019 , 23 ( 9 ): 644 - 651 .
ANTUNES H P , TEIXO R , CARVALHO J A , et al . Diabetes mellitus and prostate cancer metabolism:Is there a relationship? [J]. Arch Ital Urol Androl , 2018 , 90 ( 3 ): 184 - 190 .
BENTER I F , SARKHOU F , Al-KHALDI A T , et al . The dual targeting of EGFR and ErbB2 with the inhibitor Lapatinib corrects high glucose-induced apoptosis and vascular dysfunction by opposing multiple diabetes-induced signaling changes [J]. J Drug Target , 2015 , 23 ( 6 ): 506 - 518 .
SUCHAL K , MALIK S , KHAN S I , et al . Molecular Pathways involved in the amelioration of myocardial injury in diabetic rats by kaempferol [J]. Int J Mol Sci , 2017 , 18 ( 5 ): 1001 - 1018 .
WU Y , ZHANG Q , ZHANG R . Kaempferol targets estrogen-related receptor alpha and suppresses the angiogenesis of human retinal endothelial cells under high glucose conditions [J]. Exp Ther Med , 2017 , 14 ( 6 ): 5576 - 5582 .
CHEN P , SHI Q , XU X , et al . Quercetin suppresses NF-kappaB and MCP-1 expression in a high glucose-induced human mesangial cell proliferation model [J]. Int J Mol Med , 2012 , 30 ( 1 ): 119 - 125 .
STRANAHAN A M , HAO S , DEY A , et al . Blood-brain barrier breakdown promotes macrophage infiltration and cognitive impairment in leptin receptor-deficient mice [J]. J Cereb Blood Flow Metab , 2016 , 36 ( 12 ): 2108 - 2121 .
TUMMINIA A , VINCIGUERRA F , PARISI M , et al . Type 2 diabetes mellitus and Alzheimer's disease:role of insulin signalling and therapeutic implications [J]. Int J Mol Sci , 2018 , 19 ( 11 ): 3306 - 3323 .
SHI C , WU F , ZHU X C , et al . Incorporation of beta-sitosterol into the membrane increases resistance to oxidative stress and lipid peroxidation via estrogen receptor-mediated PI3K/GSK3beta signaling [J]. Biochim Biophys Acta , 2013 , 1830 ( 3 ): 2538 - 2544 .
BHUTADA P , MUNDHADA Y , BANSOD K , et al . Ameliorative effect of quercetin on memory dysfunction in streptozotocin-induced diabetic rats [J]. Neurobiol Learn Mem , 2010 , 94 ( 3 ): 293 - 302 .
SIMO R , CIUDIN A , SIMO-SERVAT O , et al . Cognitive impairment and dementia:a new emerging complication of type 2 diabetes-The diabetologist's perspective [J]. Acta Diabetol , 2017 , 54 ( 5 ): 417 - 424 .
W Y , MA J , LIU Z , et al . Effect of naringenin on brain insulin signaling and cognitive functions in ICV-STZ induced dementia model of rats [J]. Neurol Sci , 2014 , 35 ( 5 ): 741 - 751 .
SHLOMAI G , NEEL B , LEROITH D , et al . Type 2 Diabetes mellitus and cancer:the role of pharmacotherapy [J]. J Clin Oncol , 2016 , 34 ( 35 ): 4261 - 4269 .
0
浏览量
15
下载量
2
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621