浏览全部资源
扫码关注微信
1.成都中医药大学 附属医院,代谢性疾病中医药调控四川省重点实验室,成都 610075
2.四川省农业科学院 茶叶研究所,成都 610066
Received:13 December 2021,
Published Online:23 March 2022,
Published:05 October 2022
移动端阅览
方春燕,叶玉龙,叶乃菁等.基于网络药理学与分子对接技术研究淫羊藿治疗少弱精症的作用机制[J].中国实验方剂学杂志,2022,28(19):194-203.
FANG Chunyan,YE Yulong,YE Naijing,et al.Mechanism of Epimedii Folium in Treatment of Oligoasthenotspermia Based on Network Pharmacology and Molecular Docking[J].Chinese Journal of Experimental Traditional Medical Formulae,2022,28(19):194-203.
方春燕,叶玉龙,叶乃菁等.基于网络药理学与分子对接技术研究淫羊藿治疗少弱精症的作用机制[J].中国实验方剂学杂志,2022,28(19):194-203. DOI: 10.13422/j.cnki.syfjx.20220712.
FANG Chunyan,YE Yulong,YE Naijing,et al.Mechanism of Epimedii Folium in Treatment of Oligoasthenotspermia Based on Network Pharmacology and Molecular Docking[J].Chinese Journal of Experimental Traditional Medical Formulae,2022,28(19):194-203. DOI: 10.13422/j.cnki.syfjx.20220712.
目的
2
利用网络药理学、分子对接技术探究淫羊藿治疗少弱精症的有效成分及作用机制。
方法
2
利用中药系统药理学数据库与分析平台(TCMSP)筛选出淫羊藿主要活性成分及对应靶点基因;通过GeneCards、在线人类孟德尔遗传数据库(OMIM)获得少弱精症靶点基因;利用UniProt对所有基因进行校正;利用Cytoscape 3.9.0软件构建药物-活性成分-关键靶点调控网络,根据度值筛选关键活性成分;将活性成分与疾病共同靶点上传至STRING 11.5数据库构建淫羊藿靶蛋白-少弱精症靶蛋白质-蛋白质相互作用(PPI)网络,根据度值筛选关键蛋白靶点;利用DAVID数据库对关键靶点进行基因本体(GO)功能富集分析及京都基因与基因组百科(KEGG)通路富集分析;利用Protein Data Bank(PDB)数据库及TCMSP数据库获得靶蛋白和活性成分的分子结构,通过AutoDock Vina 1.1.2软件对活性成分及核心蛋白靶点进行分子对接;最后通过淫羊藿活性成分淫羊藿苷干预少弱精症模型大鼠,验证淫羊藿苷对蛋白靶点表达的影响。
结果
2
从淫羊藿中筛选出23个活性成分,淫羊藿与少弱精症的共同关键靶点50个,核心靶点6个,包括肿瘤蛋白p53(TP53)、表皮生长因子受体(EGFR)、前列腺素G/H合酶2(PTGS2)、胱天蛋白酶(Caspase)-3、受体酪氨酸蛋白激酶erbB-2(ERBB2)、Caspase-9。GO功能富集与KEGG信号通路富集分析淫羊藿活性成分主要参与P53信号通路、癌症途径、细胞增殖和凋亡等。分子对接结果提示淫羊藿苷、槲皮素、8-异戊烯醇三个活性成分与靶蛋白结合能力较强。淫羊藿苷干预实验结果表明,与空白组比较,少弱精模型大鼠睾丸中靶蛋白表达显著下调;与少弱精症模型大鼠组比,淫羊藿苷可显著上调靶蛋白在淫羊藿苷组睾丸中靶蛋白的表达(
P
<
0.05)。
结论
2
淫羊藿主要通过淫羊藿苷、8-(3-甲基丁-2-烯基)-2-苯基色酮、8-异戊烯醇,调节P53信号通路、癌症途径、细胞增殖和凋亡等路径发挥治疗少弱精症的作用。
Objective
2
To explore the effective components and mechanism of Epimedii Folium in the treatment of oligoasthenotspermia by using network pharmacology and molecular docking technique.
Method
2
The main active components and corresponding target genes of Epimedii Folium were screened out from Traditional Chinese Medicine Systems Pharmacology Database and Analysis Platform (TCMSP). Target genes of oligospermia were obtained by GeneCards and Online Mendelian Inheritance in Man (OMIM) database. Uniprot was used to correct all genes. The drug-active component-key target regulatory network was constructed by Cytoscape3.9.0, and the key active components were screened out according to the degree value. The active components and common targets of the disease were uploaded to STRING 11.5 database to construct the Epimedii Folium and oligoasthenotspermia target protein-protein interaction (PPI) network, and the key protein targets were screened out according to the degree value. The key targets of gene ontology (GO) functional enrichment analysis and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analysis were performed using DAVID database. Protein Data Bank (PDB) and TCMSP were used to obtain the molecular structure of target proteins and active components. AutoDock Vina 1.1.2 was used to perform molecular docking of the active components and the core protein targets. Finally, icariin, the active component of Epimedii Folium, was used to intervene in the rat model of oligoasthenotspermia to verify the effect of icariin on the expression level of protein targets.
Result
2
Twenty-three active components from Epimedii Folium were screened out, and 50 common targets and 6 core targets of oligoasthenotspermia and Epimedii Folium were obtained, including tumor protein p53 (TP53), epidermal growth factor receptor (EGFR), prostaglandin-endoperoxide synthase 2 (PTGS2), cysteine aspartate-specific protease (Caspase)-3, erb-b2 receptor tyrosine kinase 2 (ERBB2), and caspase-9. Through GO enrichment and KEGG pathway enrichment analysis, the active components of Epimedii Folium were mainly involved in the P53 signaling pathway, the pathways in cancer, cell proliferation, and apoptosis, etc. Molecular docking results indicated that icariin, quercetin, and 8-isopentenol had strong binding ability to target protein. The results of icariin intervention experiment showed that as compared with the control group, the expression of target proteins in testis of rats with oligoasthenotspermia was significantly down-regulated. As compared with the model group, icariin significantly up-regulated the expression of target protein in testis of rats with oligoasthenotspermia (
P
<
0.05).
Conclusion
2
Epimedii Folium treats oligoasthenotspermia through regulating the P53 signaling pathway, the pathways in cancer, cell proliferation, and apoptosis by icariin, quercetin, and 8-isopentenol.
MEINHARDT A , DEJUCQ-RAINSFORD N , BHUSHAN S . Testicular macrophages: Development and function in health and disease [J]. Trends Immunol , 2022 , 43 ( 1 ): 51 - 62 .
AGARWAL A , BASKARAN S , PAREKH N , et al . Male infertility [J]. Lancet , 2021 , 397 ( 10271 ): 319 - 333 .
BRACKE A , PEETERS K , PUNJABI U , et al . A search for molecular mechanisms underlying male idiopathic infertility [J]. Reprod Biomed Online , 2018 , 36 ( 3 ): 327 - 339 .
王丹 , 贾德贤 , 李真真 , 等 . 淫羊藿的安全性评价与风险控制措施探讨 [J]. 中国中药杂志 , 2019 , 44 ( 8 ): 1715 - 1723 .
常德贵 , 张培海 , 胡志萍 , 等 . 增精1号胶囊对少精子症患者精子动态及形态的影响 [J]. 中国中西医结合杂志 , 2009 , 29 ( 11 ): 1029 - 1030 .
吴坤 . 基于TGF- β 1 /Smads通路探讨强精片对肾虚血瘀型弱精症患者精子活力的调控机制 [D]. 成都 : 成都中医药大学 , 2018 .
张培海 , 李俊君 , 阳方 , 等 . 强精片对弱畸精子症患者精子DNA完整性及ICSI结局的影响 [J]. 中国男科学杂志 , 2018 , 32 ( 5 ): 51 - 54 .
李俊君 , 董良 , 谭琨 , 等 . 补肾活血法改善精子DNA完整性损伤临床研究 [J]. 亚太传统医药 , 2021 , 17 ( 8 ): 79 - 83 .
LI J , ZHAO P , YANG L , et al . System biology analysis of long-term effect and mechanism of Bufei Yishen on COPD revealed by system pharmacology and 3-omics profiling [J]. Sci Rep , 2016 , 6 : 25492 .
何晨 , 贺敬霞 , 田茜 , 等 . 淫羊藿中活性成分淫羊藿苷提取工艺研究现状 [J]. 亚太传统医药 , 2016 , 12 ( 2 ): 55 - 57 .
路宇仁 , 陈昳冰 , 崔元璐 , 等 . 淫羊藿苷药理作用研究进展 [J]. 中国实验方剂学杂志 , 2018 , 24 ( 17 ): 209 - 220 .
杨席伟 , 王佳 , 杨毅坚 . 淫羊藿主要活性成分在泌尿生殖系统应用研究进展 [J]. 云南中医中药杂志 , 2020 , 41 ( 3 ): 92 - 96 .
李倩 , 吴雍真 , 柴艺汇 , 等 . 基于网络药理学研究淫羊藿改善心肌重塑的有效成分和作用机制 [J]. 辽宁中医杂志 , 2021 , 48 ( 7 ): 187 - 191, 后插9.
王子怡 , 王鑫 , 张岱岩 , 等 . 中医药网络药理学:《指南》引领下的新时代发展 [J]. 中国中药杂志 , 2022 , 47 ( 1 ): 7 - 17 .
纪智勇 , 姚晨成 , 赵晶鹏 , 等 . 左卡尼汀对睾丸生精功能损伤模型小鼠保护作用的研究 [J]. 上海医学 , 2021 , 44 ( 5 ): 316 - 320 .
覃光辉 , 王骁 , 姚重华 , 等 . 淫羊藿苷对雷公藤多苷模型小鼠睾丸病理损伤的影响 [J]. 中医药导报 , 2009 , 15 ( 7 ): 8 - 10 .
朱彤 , 吴媛媛 , 陈素华 , 等 . 无精子症及少弱精子症2436例患者的细胞遗传学病因分析 [J]. 现代妇产科进展 , 2017 , 26 ( 6 ): 422 - 425 .
HERNáNDEZ BORRERO L J , EL-DEIRY W S . Tumor suppressor p53: Biology, signaling pathways, and therapeutic targeting [J]. Biochim Biophys Acta Rev Cancer , 2021 , 1876 ( 1 ): 188556 .
HAUPT Y , MAYA R , KAZAZ A , et al . Mdm2 promotes the rapid degradation of p53 [J]. Nature , 1997 , 387 ( 6630 ): 296 - 299 .
KHOURY M P , BOURDON J C . The isoforms of the p53 protein [J]. Cold Spring Harb Perspect Biol , 2010 , 2 ( 3 ): a000927 .
MAXIMILIAN V , SANYAL S . p53 isoforms and their implications in cancer [J]. Cancers , 2018 , 10 ( 9 ): 288 .
TANG Q , SU Z , GU W , et al . Mutant p53 on the path to metastasis [J]. Trends Cancer , 2020 , 6 ( 1 ): 62 - 73 .
ZHU X , CHEN S , JIANG Y , et al . Analysis of miRNA expression profiles in melatonin-exposed GC-1 spg cell line [J]. Gene , 2018 , 642 : 513 - 521 .
BACHIR B G , JARVI K.Infectious , inflammatory , and immunologic conditions resulting in male infertility [J]. Urol Clin North Am , 2014 , 41 ( 1 ): 67 - 81 .
COHEN H Y , MILLER C , BITTERMAN K J , et al . Calorie restriction promotes mammalian cell survival by inducing the SIRT1 deacetylase [J]. Science , 2004 , 305 ( 5682 ): 390 - 392 .
HASEGAWA K , YOSHIKAWA K . Necdin regulates p53 acetylation via Sirtuin1 to modulate DNA damage response in cortical neurons [J]. J Neurosci , 2008 , 28 ( 35 ): 8772 - 8784 .
JANG J , HUH Y J , CHO H J , et al . SIRT1 Enhances the survival of human embryonic stem cells by promoting DNA repair [J]. Stem Cell Reports , 2017 , 9 ( 2 ): 629 - 641 .
YAN Q , HUANG H , LU S , et al . PACAP ameliorates fertility in obese male mice via PKA/CREB pathway-dependent Sirt1 activation and p53 deacetylation [J]. J Cell Physiol , 2020 , 235 ( 10 ): 7465 - 7483 .
LI H , ZHANG H , HUANG G , et al . Heavy ion radiation-induced DNA damage mediates apoptosis via the Rpl27a-Rpl5-MDM2-p53/E2F1 signaling pathway in mouse spermatogonia [J]. Ecotoxicol Environ Saf , 2020 , 201 : 110831 .
DUBÉ E , DUFRESNE J , CHAN P T , et al . Epidermal growth factor regulates connexin 43 in the human epididymis: Role of gap junctions in azoospermia [J]. Hum Reprod , 2012 , 27 ( 8 ): 2285 - 2296 .
ADAM M , SCHWARZER J U , KÖHN F M , et al . Mast cell tryptase stimulates production of decorin by human testicular peritubular cells: Possible role of decorin in male infertility by interfering with growth factor signaling [J]. Hum Reprod , 2011 , 26 ( 10 ): 2613 - 2625 .
PANNER SELVAM M K , BASKARAN S , SIKKA S C . Telomere signaling and maintenance pathways in spermatozoa of infertile men treated with antioxidants: An in silico approach using bioinformatic analysis [J]. Front Cell Dev Biol , 2021 , 9 : 768510 .
SAID T M , PAASCH U , GLANDER H J , et al . Role of caspases in male infertility [J]. Hum Reprod Update , 2004 , 10 ( 1 ): 39 - 51 .
HE L , GONG H , YOU S , et al . miRNA-138-5p suppresses cigarette smoke-induced apoptosis in testicular cells by targeting Caspase-3 through the Bcl-2 signaling pathway [J]. J Biochem Mol Toxicol , 2021 , 35 ( 7 ): e22783 .
ZHAO W , LIU J , WANG D , et al . Effect of silencing HIF-1 α gene on testicle spermatogenesis function in varicocele rats [J]. Cell Tissue Res , 2019 , 378 ( 3 ): 543 - 554 .
ZENG Q , YI H , HUANG L , et al . Long-term arsenite exposure induces testicular toxicity by redox imbalance, G 2 /M cell arrest and apoptosis in mice [J]. Toxicology , 2019 , 411 : 122 - 132 .
JIANG Q , WANG F , SHI L , et al . C-X-C motif chemokine ligand 10 produced by mouse Sertoli cells in response to mumps virus infection induces male germ cell apoptosis [J]. Cell Death Dis , 2017 , 8 ( 10 ): e3146 .
牛长敏 , 夏蒙蒙 , 钟亚楠 , 等 . 巴戟天多糖和淫羊藿苷促进视磺酸诱导的P19细胞增殖和分化 [J]. 时珍国医国药 , 2020 , 31 ( 12 ): 2881 - 2886 .
刘忠平 , 李质馨 , 潘晓燕 , 等 . 淫羊藿苷对酒精损伤小鼠睾丸生精细胞凋亡的影响 [J]. 中国妇幼保健 , 2014 , 29 ( 15 ): 2438 - 2440 .
高学勇 , 林珊 , 韩咪莎 . 淫羊藿苷对环磷酰胺诱导生精障碍大鼠下丘脑-垂体-睾丸轴的影响 [J]. 解剖学杂志 , 2018 , 41 ( 2 ): 147 - 151 .
0
Views
32
下载量
1
CSCD
Publicity Resources
Related Articles
Related Author
Related Institution