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Explore the biological efficacy of Pilose Antler using text mining technology and bioinformatics method |
GUO Bin1,2 ZHANG Hao-min1,2 YANG Bo2 HE Pei-feng1▲ LU Xue-chun1,2▲ |
1.Management School,Shanxi Medical University,Taiyuan 030001,China;
2.Department of Hematology,Nanlou Division,Chinese PLA General Hospital,National Clinical Research Center for Geriatric Diseases,Beijing 100853,China |
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Abstract Objective To explore the biological efficacy of Pilose Antler using the method of literature data mining combined with bioinformatics analysis method from the view of gene expression profiles.Methods Firstly,text mining technology was used to explore literatures on gene expression regulation of Pilose Antler from CNKI,Wanfang and CQVIP Data.Gene expression data were extracted,duplicates were removed,and then the gene names were normalized.Secondly,Cytoscape was used to make the protein-protein interaction network.Then the association analysis was used to get the indications and contraindications of disease treatment by the"disease-gene-compound"analysis platform developed by our team.Next,DAVID online analysis tools was used to enrich and analyze the KEGG pathway functions and screen out the corresponding biological pathways and targets.At last,the accuracy of this method was tested and verified by referring to the ancient books and literature on the pharmacological effects of Pilose Antler.Results In this paper,30 antler-related regulatory genes were extracted,of which 21 were up-regulated and 9 were down-regulated;the protein-protein interaction network of antler-related genes was produced;the association analysis found more than a dozen species indications and contraindications of Pilose Antler;KEGG pathway enrichment analysis found the pathways and targets of Pilose Antler in three functions of anti-tumor,anti infection and enhancing immunity.The feasibility of this method was verified by consulting pharmacological literature.Conclusion Text mining combined with bioinformatics analysis is a new method to explore pharmacological mechanisms and efficiencies of traditional Chinese medicine.
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[1] |
严铭铭.人参鹿茸中蛋白多肽的纯化及活性研究[D].长春:长春中医药大学,2007.
|
[2] |
黄晓巍,徐岩,韩冬,等.鹿茸多肽介导心肌干细胞分化对终末心肌分化基因ANP和MLC-2v表达的影响[J].吉林大学学报(医学版),2018,44(2):249-253,464.
|
[3] |
王大涛.鹿茸干细胞的鉴定以及鹿茸再生关键调控基因的筛选[D].北京:中国农业科学院,2017.
|
[4] |
张伟,刘佳,董振,李春义.利用qRT-PCR技术筛选鹿茸生长中心细胞与鹿茸干细胞内参基因[J].农业生物技术学报,2017,25(5):851-860.
|
[5] |
李朝政,许佳明,王烨,等.鹿茸多肽诱导心肌干细胞分化作用及对心肌细胞特征性MHC基因表达的影响[J].吉林中医药,2014,34(8):825-828.
|
[6] |
唐永华.大数据的高性能技术在文本挖掘中的应用探究[J].电子世界,2018,(3):69-70.
|
[7] |
卢学春,朱宏丽,迟小华.氨磷汀作用的研究进展[J].中国药物应用与监测,2008,5(1):48-51.
|
[8] |
杨光旭,魏雪苗,范红艳,等.鹿茸多肽药理学活性的研究进展[J].吉林医药学院学报,2017,38(2):126-129.
|
[9] |
王楠,高晓霞,代子彦,等.鹿茸药效物质基础、药理作用、临床应用及质量控制的研究进展[J].中草药,2017,48(22):4784-4790.
|
[10] |
牛维,孙志涛,曹学伟,等.单味药鹿茸调控大鼠骨关节炎软骨组织Smad2、3表达的研究[J].中国中西医结合杂志,2014,34(2):209-213.
|
[11] |
张洪长,张莹,刘明昕,等.鹿茸多肽对人骨髓间充质干细胞BMP-2和Runx2表达的影响[J].吉林大学学报(医学版),2015,41(3):491-495.
|
[12] |
周群.鹿茸多肽对促神经母细胞瘤细胞增殖及抑制其凋亡的相关实验研究[D].长春:长春中医药大学,2013.
|
[13] |
赵宇平,王慧,杨光,等.基于文本挖掘技术探索青蒿的药理作用规律[J].中国中药杂志,2016,41(16):3072-3077.
|
[14] |
Yang C,Cai W,Wen H,et al.Pilose antler peptide protects osteoblasts from inflammatory andoxidative injury through EGF/EGFR signaling[J].Int J Biol Macromol,2017,99(1):15-20.
|
[15] |
潘风光,孙威,周玉,等.梅花鹿鹿茸活性多肽的提取及免疫功效的初步研究[J].中国生物制品学杂志,2007,20(9):669-673.
|
[16] |
ChenJC,HsiangCY,LinYC,etal.Deerantlerextractimproves fatigue effect through altering the expression of genes related to muscle strength in skeletal muscle of mice[J].Evid Based Complement Alternmat Med,2014,2014:540-580.
|
[17] |
崔雷.生物医学文本挖掘:步骤与工具[J].中华医学图书情报杂志,2017,26(3):1-5.
|
[18] |
孙强.高通量测序数据中病毒基因组的生物信息学分析方法探索[D].北京:中国人民解放军军事医学科学院,2017.
|
[19] |
郭奕斌.基因诊断中测序技术的应用及优缺点[J].遗传,2014,36(11):1121-1130.
|
[20] |
陈健,陈启龙,苏式兵.中医药精准医疗的思考与探索[J].世界科学技术-中医药现代化,2016,18(4):557-562.
|
|
|
|