
Advances in Scientific Research on Andrographis paniculata
SUN Mingyang, XU Shiqiang, ZHANG Wenting, GU Yan, MEI Yu, LI Jingyu, ZHOU Fang, WANG Jihua
Advances in Scientific Research on Andrographis paniculata
This study aims to understand the research status and disciplinary development of Andrographis paniculata (AP). By searching the core collection of Web of Science (WoS) SCI academic papers published from 2001 to 2020, and combining with bibliometrics descriptive and correlation indicators, the research situation of AP in the 20 years was clarified. The results are as follows. (1) In 2019-2020, the annual number of papers published on AP exceeded 100, most of which focused on the anti-cancer function of andrographolide. (2) Although India, China and Malaysia were the countries with the largest number of publications, China had the most recent coauthored relationships with the United States and Australia. Considering the number of papers published, H index and annual citations of papers, the United States achieved international influence equal to that of China with only 1/5 of the published papers of China. The research results of the United States were highly valued, and the quality of Chinese papers still needs to be improved. (3) The most frequently cited research institutions of AP were CSIR and the National University of Singapore. China Medical University in Taiwan, Chinese Academy of Sciences, Shanghai University of Traditional Chinese Medicine and Sun Yat-sen University of Medical Science were the major research institutions of AP in China. (4) The top 3 authors with the largest number of papers were all from China. (5) Wong W S F’s team of the National University of Singapore published an academic paper in 2009 with the highest impact factor (21.4) so far, illustrating the molecular mechanism of andrographolide in relieving asthma. With the disclosure of the function of ‘natural antibiotic’ andrographolide in inhibiting COVID-19 protein activity, international scholars have attached great importance to it, and the basic research on the pharmacological effect and high and stable yield of AP will be further deepened.
Andrographis paniculata / andrographolide / Web of Science / bibliometrics / visualization {{custom_keyword}} /
表1 关联性指标的筛选标准 |
关联性指标 | 筛选标准 |
---|---|
标题和摘要的高频词共现 | 共现次数≥50 |
关键词聚类 | 共现次数≥25 |
互引国家 | 发表文章≥25篇,国家总被引数≥320 |
合著国家 | 发表文章≥25篇,国家总被引数≥500 |
互引机构 | 发表文章≥20篇,机构总被引数≥100 |
机构研究内容相关性 | 发表文章≥20篇,机构总被引数≥100 |
合著作者 | 发表文章≥10篇,个人总被引数≥200 |
表2 2021—2020年世界穿心莲发文量前10位的国家 |
国家 | 发文量 | H指数 | 最高被引文章 | ||
---|---|---|---|---|---|
年均被引频次 | 总被引数 | 发表年份 | |||
印度 | 378 | 44 | 15.89 | 286 | 2004 |
中国 | 343 | 47 | 15.33 | 276 | 2004 |
马来西亚 | 136 | 29 | 13.29 | 186 | 2008 |
泰国 | 89 | 27 | 6.78 | 122 | 2004 |
美国 | 73 | 30 | 15.33 | 276 | 2004 |
澳大利亚 | 26 | 14 | 12.71 | 89 | 2015 |
日本 | 26 | 12 | 7.57 | 106 | 2008 |
新加坡 | 25 | 19 | 12.85 | 167 | 2009 |
伊朗 | 22 | 11 | 13.25 | 53 | 2018 |
韩国 | 21 | 13 | 8.22 | 74 | 2013 |
注:发文量总和大于1107篇,因国家之间存在合作。 |
表3 2001—2020年穿心莲发文量前10名的科研机构 |
科研机构 | 发文量 | H指数 | 总被引频次(除自引) |
---|---|---|---|
马来西亚博特拉大学 | 59 | 16 | 955 |
印度科学工业研究理事会(CSIR) | 58 | 21 | 1469 |
马希隆大学 | 34 | 15 | 793 |
台湾中华医科大学 | 31 | 17 | 910 |
中国科学院 | 27 | 17 | 904 |
马来西亚理科大学 | 27 | 14 | 592 |
新加坡国立大学 | 24 | 19 | 1294 |
印度农业研究理事会(ICAR) | 22 | 7 | 151 |
上海中医药大学 | 22 | 15 | 501 |
中山医学大学 | 21 | 15 | 815 |
表4 2001—2020年穿心莲发文量前10位的研究人员 |
作者 | 发文量 | H指数 | 总被引频次(除自引) | 所属机构 |
---|---|---|---|---|
Chen H W | 20 | 13 | 584 | 台湾中华医科大学 |
Lii C K | 20 | 12 | 565 | 台湾中华医科大学 |
Wang Z T | 17 | 14 | 409 | 上海中医药大学 |
Valdiani A | 16 | 9 | 141 | 马来西亚博特拉大学 |
Talei D | 15 | 9 | 136 | 马来西亚博特拉大学 |
Das S | 14 | 10 | 343 | 维迪亚萨格大学 |
Stanslas J | 13 | 9 | 521 | 马来西亚博特拉大学 |
Wong W S F | 13 | 11 | 671 | 新加坡国立大学 |
Alimon A R | 10 | 7 | 117 | 马来西亚博特拉大学 |
Chen Y | 10 | 6 | 175 | 河北大学 |
表5 2001—2020年穿心莲发文量前10位的期刊 |
期刊 | 发文量 | H指数 | 总被引数(除自引) | 影响因子 | 中科院SCI期刊分区 | 研究方向 |
---|---|---|---|---|---|---|
《Journal of ethnopharmacology》 | 38 | 21 | 1715 | 4.360 | 医学2区(Top) | 全科医学与补充医学-药物化学 |
《Phytotherapy research》 | 22 | 14 | 648 | 5.878 | 医学2区(Top) | 药学-药物化学 |
《Evidence based complementary and alternative medicine》 | 21 | 11 | 333 | 2.629 | 医学4区 | 全科医学与补充医学 |
《Molecules》 | 18 | 9 | 293 | 4.411 | 化学3区 | 生化与分子生物学-有机化学 |
《Planta medica》 | 18 | 12 | 660 | 3.352 | 医学3区 | 药学-药物化学 |
《Natural product communications》 | 17 | 8 | 146 | 1.068 | 医学4区 | 工程技术-食品科技 |
《Phytomedicine》 | 16 | 10 | 316 | 5.340 | 医学2区(Top) | 药学-药物化学 |
《Natural product research》 | 14 | 7 | 201 | 2.861 | 化学3区 | 应用化学-医药化学 |
《Industrial crops and products》 | 12 | 6 | 163 | 5.645 | 农林科学1区(Top) | 农业工程 |
《Biochemical pharmacology》 | 11 | 11 | 565 | 5.858 | 医学2区(Top) | 药学 |
表6 2001—2020年被引频次前10位的穿心莲学术论文 |
聚类 | 第一作者 | 发表 年份 | 文献 类型 | 论文标题 | 发表期刊 | 是否 Top | 影响 因子 | 总被引 频次 |
---|---|---|---|---|---|---|---|---|
I.穿心莲药效 成分的确定 | Chen[14] | 2014 | Article | 《穿心莲内酯的生物利用度和对四氯化碳诱导的大鼠氧化损伤的保护》 | 《Toxicology and applied pharmacology》 | 否 | 4.2 | 209 |
Desai[15] | 2008 | Review | 《药用植物与癌症的药物预防》 | 《Current drug metabolism》 | 否 | 3.7 | 179 | |
Govindarajan[16] | 2005 | Review | 《管理疾病的抗氧化方法和阿育吠陀“南非醉茄”草药的作用》 | 《Journal of ethnopharmacology》 | 是 | 4.4 | 183 | |
Kumar[17] | 2004 | Article | 《穿心莲的抗癌和免疫刺激化合物》 | 286 | ||||
Subramanian[18] | 2008 | Article | 《穿心莲提取物和穿心莲内酯的体外α-葡萄糖苷酶和α-淀粉酶抑制作用》 | 《Acta biochimica polonica》 | 否 | 2.2 | 186 | |
II.穿心莲内酯在 人体内的分子 修饰功能 | Shen[19] | 2002 | Article | 《穿心莲内酯防止人类中性粒细胞产生氧自由基:其抗炎作用的可能机制》 | 《British journal of pharmacology》 | 是 | 8.7 | 264 |
Xia[20] | 2004 | Article | 《穿心莲内酯通过共价修饰p50的还原半胱氨酸62来抑制NF-κB的活化,从而减轻炎症》 | 《Journal of immunology》 | 是 | 5.4 | 276 | |
Zhu[21] | 2013 | Article | 《穿心莲内酯通过灭活NF-κB防止LPS诱导的急性肺损伤》 | 《Plos one》 | 否 | 3.2 | 175 | |
III.穿心莲内酯在 癌细胞增殖通路中 的抑制作用 | Bao[22] | 2009 | Article | 《穿心莲内酯通过抑制核因子-κB通路在哮喘中的新抗炎作用》 | 《American journal of respiratory and critical care medicine》 | 是 | 21.4 | 167 |
Lim[23] | 2012 | Article | 《穿心莲内酯及其类似物:用于对抗炎症和癌症的多功能生物活性分子》 | 《Clinical and experimental pharmacology and physiology》 | 否 | 2.6 | 158 |
[1] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[2] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[3] |
任全娥. 大数据背景下的文献计量学研究进展与学科融合[J]. 情报理论与实践, 2019, 42(1):52-56.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[4] |
付全升, 黄先寒, 申仕康, 等. 基于数据库的植物功能性状研究现状文献计量学分析[J]. 应用与环境生物学报, 2021(1):228-240.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[5] |
付健, 丁敬达. Citespace和VOSviewer软件的可视化原理比较[J]. 农业图书情报, 2019, 31(10):33-39.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[6] |
宋秀芳, 迟培娟. VOSviewer与Citespace应用比较研究[J]. 情报科学, 2016, 34(7):108-112.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[7] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[8] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[9] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[10] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[11] |
唐朝臣, 黄立飞, 王章英. 国内外甘薯研究态势述评[J]. 中国农业大学学报, 2020, 25(7):51-68.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[12] |
赵艺哲. 文献计量指标在青年科学家学术绩效评价中的应用研究——以国家杰出青年科学基金获得者为例[D]. 北京: 北京理工大学, 2016.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[13] |
刘婧. 文献作者分布规律研究——对近十五年来国内洛特卡定律、普赖斯定律研究成果综述[J]. 情报科学, 2004, 22(1):123-128.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[14] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[15] |
Cancer is the second leading cause of death worldwide. Although great advancements have been made in the treatment and control of cancer progression, significant deficiencies and room for improvement remain. A number of undesired side effects sometimes occur during chemotherapy. Natural therapies, such as the use of plant-derived products in cancer treatment, may reduce adverse side effects. Currently, a few plant products are being used to treat cancer. However, a myriad of many plant products exist that have shown very promising anti-cancer properties in vitro, but have yet to be evaluated in humans. Further study is required to determine the efficacy of these plant products in treating cancers in humans. This review will focus on the various plant-derived chemical compounds that have, in recent years, shown promise as anticancer agents and will outline their potential mechanism of action.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[16] |
The disease preventive and health promotive approach of 'Ayurveda', which takes into consideration the whole body, mind and spirit while dealing with the maintenance of health, promotion of health and treating ailments is holistic and finds increasing acceptability in many regions of the world. Ancient Ayurvedic physicians had developed certain dietary and therapeutic measures to arrest/delay ageing and rejuvenating whole functional dynamics of the body system. This revitalization and rejuvenation is known as the 'Rasayan chikitsa' (rejuvenation therapy). Traditionally, Rasayana drugs are used against a plethora of seemingly diverse disorders with no pathophysiological connections according to modern medicine. Though, this group of plants generally possesses strong antioxidant activity, only a few have been investigated in detail. Over about 100 disorders like rheumatoid arthritis, hemorrhagic shock, CVS disorders, cystic fibrosis, metabolic disorders, neurodegenerative diseases, gastrointestinal ulcerogenesis and AIDS have been reported as reactive oxygen species mediated. In this review, the role of free radicals in these diseases has been briefly reviewed. 'Rasayana' plants with potent antioxidant activity have been reviewed for their traditional uses, and mechanism of antioxidant action. Fifteen such plants have been dealt with in detail and some more plants with less work have also been reviewed briefly.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[17] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[18] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[19] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[20] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[21] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[22] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[23] |
1. Andrographis paniculata (Burm. f) Nees, commonly known as 'king of bitters', is a herbaceous plant belonging to the Family Acanthaceae. It has been widely used for centuries in Asian countries like China, India, Thailand and Malaysia for the treatment of sore throat, flu and upper respiratory tract infections. 2. Andrographolide, 14-deoxy-11,12-didehydroandrographolide and neoandrographolide are examples of the major labdane diterpenoids isolated from A. paniculata. These bioactive molecules have exhibited varying degrees of anti-inflammatory and anticancer activities in both in vitro and in vivo experimental models of inflammation and cancer. 3. Extensive libraries of andrographolide analogues have been synthesised mainly by modifying the α,β-unsaturated γ-butyrolactone moiety, the two double bonds Δ(8,(17)) and Δ(12,(13)) and the three hydroxyls at C-3 (secondary), C-14 (allylic) and C-19 (primary). Many of these synthetic analogues exhibit superior anticancer activity over the naturally occurring andrographolides. 4. Andrographolide and its derivatives have been shown to have anti-inflammatory effects in experimental models of asthma, stroke and arthritis, as well as in patients with upper respiratory tract infections. Andrographolide reduces the production of cytokines, chemokines, adhesion molecules, nitric oxide and lipid mediators, probably via inhibition of the nuclear factor (NF)-κB signalling pathway. 5. The anticancer mechanisms for andrographolide include inhibition of Janus tyrosine kinases-signal transducers and activators of transcription, phosphatidylinositol 3-kinase and NF-κB signalling pathways, suppression of heat shock protein 90, cyclins and cyclin-dependent kinases, metalloproteinases and growth factors, and the induction of tumour suppressor proteins p53 and p21, leading to inhibition of cancer cell proliferation, survival, metastasis and angiogenesis. 6. Andrographolide drug discovery is a promising strategy for the development of a novel class of anti-inflammatory and anticancer drugs.© 2011 The Authors. Clinical and Experimental Pharmacology and Physiology © 2011 Blackwell Publishing Asia Pty Ltd.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[24] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[25] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[26] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[27] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[28] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[29] |
邬亚文, 夏小东, 职桂叶, 等. 基于文献的国内外水稻研究发展态势分析[J]. 中国农业科学, 2011, 44(20):4129-4141.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[30] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
{{custom_ref.label}} |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
/
〈 |
|
〉 |