Lonicera japonica Thunb.: Ethnopharmacology, phytochemistry and pharmacology of an important traditional Chinese medicine

文献类型: 外文期刊

第一作者: Shang, Xiaofei

作者: Shang, Xiaofei;Li, Maoxing;Li, Maoxing;Ding, Hong;Shang, Xiaofei;Pan, Hu;Miao, Xiaolou

作者机构:

关键词: Lonicera japonica;Ethnopharmacology;Chlorogenic acid;Anti-inflammatory;Antiviral activity

期刊名称:JOURNAL OF ETHNOPHARMACOLOGY ( 影响因子:4.36; 五年影响因子:4.488 )

ISSN: 0378-8741

年卷期: 2011 年 138 卷 1 期

页码:

收录情况: SCI

摘要: Ethnopharmacological relevance: Lonicera japonica Thunb. (Caprifoliaceae), a widely used traditional Chinese medicine, was known as Jin Yin Hua (Chinese: (sic):), Ren Dong and Japanese honeysuckle. It was taken to treat the exopathogenic wind-heat, epidemic febrile diseases, sores, carbuncles and some infectious diseases. At the same time, Lonicera japonica could be used as healthy food, cosmetics, ornamental groundcover, and so on. Aim of the review: The present paper reviewed the ethnopharmacology, the biological activities, toxicology and phytochemistry of Lonicera japonica. Materials and methods: Information on Lonicera japonica was gathered via the Internet (using Google Scholar, Baidu Scholar, Elsevier, ACS, Medline Plus, CNKI and Web of Science) and libraries. Additionally, information also was obtained from some local books and brilliant scholars on ethnopharmacology. Results: More than 140 chemical compounds have been isolated, and the main compositions are essential oils, organic acids and flavones, etc. Lonicera japonica and its active principles possess wide pharmacological actions, such as anti-inflammatory, antibacterial, antiviral, antioxidative and hepatoprotective activities. Conclusions: As an important traditional Chinese medicine, further studies on Lonicera japonica can lead to the development of new drugs and therapeutics for various diseases, and how to utilize it better should be paid more attentions. (C) 2011 Elsevier Ireland Ltd. All rights reserved.

分类号:

  • 相关文献

[1]Ethnobotanical study on medicinal plants around Limu Mountains of Hainan Island, China. Zheng, Xi-long,Wei, Jian-he,Li, Rong-tao,Zheng, Xi-long,Liu, Shou-bai,Dai, Hao-fu,Sun, Wei. 2013

[2]Chinese herbs (Astragalus membranaceus and Lonicera japonica) and boron enhance the non-specific immune response of Nile tilapia (Oreochromis niloticus) and resistance against Aeromonas hydrophila. Ardo, Laszlo,Varadi, Laszlo,Jeney, Zsigmond,Jeney, Galina,Yin, Guojun,Xu, Pao,Szigeti, Gabor.

[3]Different Gene Expression Patterns between Leaves and Flowers in Lonicera japonica Revealed by Transcriptome Analysis. Zhang, Libin,Fu, Chunhua,Wu, Gang,Jia, Haibo,Yu, Longjiang,Li, Maoteng,Zhang, Libin,Xiang, Jun,Gan, Jianping,Li, Maoteng,Long, Yan. 2016

[4]Anti-inflammatory effects of a methanolic extract of Castanea seguinii Dode in LPS-induced RAW264.7 macrophage cells. Lim, Yourim,Park, Ji-Won,Kwon, Ok-Kyoung,Lee, Jae-Won,Lee, Han-Sol,Ahn, Kyung-Seop,Lim, Yourim,Lee, Han-Sol,Han, Sang-Bae,Lee, Sangwoo,Choi, Sangho,Li, Wanyi,Jin, Hang. 2018

[5]The anti-inflammatory effect of the SOCC blocker SK&F 96365 on mouse lymphocytes after stimulation by Con A or PMA/ionomycin. Ye, Yanxia,Zhang, Yaxing,Lu, Xiaoyu,Huang, Xiuyan,Zeng, Xiangfeng,Zeng, Yaoying,Lu, Xiaoyu,Lai, Xinqiang. 2011

[6]Egg-Derived Peptide IRW Inhibits TNF-alpha-Induced Inflammatory Response and Oxidative Stress in Endothelial Cells. Chakrabarti, Subhadeep,Jiang, Yanyan,Davidge, Sandra T.,Chakrabarti, Subhadeep,Jiang, Yanyan,Davidge, Sandra T.,Chakrabarti, Subhadeep,Jiang, Yanyan,Davidge, Sandra T.,Huang, Wuyang,Majumder, Kaustav,Wu, Jianping,Huang, Wuyang. 2010

[7]Inhibitory Effects of 4 '-Demethylnobiletin, a Metabolite of Nobiletin, on 12-O-Tetradecanoylphorbol-13-acetate (TPA)-Induced Inflammation in Mouse Ears. Wu, Xian,Song, Mingyue,Rakariyatham, Kanyasiri,Zheng, Jinkai,Wang, Minqi,Xu, Fei,Gao, Zili,Xiao, Hang,Xiao, Hang,Zheng, Jinkai.

[8]Ethnobotany, phytochemistry and pharmacology of the genus Caragana used in traditional Chinese medicine. Meng, Qiuxia,Roubin, Rebecca H.,Hanrahan, Jane R.,Meng, Qiuxia,Niu, Yu,Niu, Xiwu. 2009

[9]UPLC-Q-Exactive Orbitrap/MS-Based Lipidomics Approach To Characterize Lipid Extracts from Bee Pollen and Their in Vitro Anti-Inflammatory Properties. Li, Qiangqiang,Liang, Xinwen,Xue, Xiaofeng,Wang, Kai,We, Liming,Li, Qiangqiang,Liang, Xinwen,Xue, Xiaofeng,Wang, Kai,We, Liming,Li, Qiangqiang,Liang, Xinwen,Xue, Xiaofeng,Wang, Kai,Zhao, Liang,Zhang, Zhongyin.

[10]Identification of bioactives from Astragalus chinensis L.f. and their antioxidant, anti-inflammatory and anti-proliferative effects. Hu, Ting,Hu, Ting,Liu, Qi-Mei,He, Xiao-Wei,Jiang, Jian-Guo,Huang, Fei,Zhang, Ming-Wei.

[11]ITS sequence-based identification and utilization evaluation of "Nanjiang" (Lonicera similis Hemsl.), a local cultivar in Sichuan, China. Chen, Xiaomin,Bai, Linhan,Hu, Shangqin,Huang, Lulin,Yang, Xiao,Tong, Wen. 2012

[12]Application of Curve Fitting and Wavelength Selection Methods for Determination of Chlorogenic Acid Concentration in Coffee Aqueous Solution by Vis/NIR Spectroscopy. Shan, Jiajia,Wang, Xue,Han, Shuqing,Kondo, Naoshi.

[13]Effects of dietary chlorogenic acid on growth performance, antioxidant capacity of white shrimp Litopenaeus vannamei under normal condition and combined stress of low-salinity and nitrite. Wang, Yun,Duan, Ya-Fei,Niu, Jin,Wang, Jun,Huang, Zhong,Lin, Hei-Zhao,Li, Zheng,Li, Jian.

[14]An effective method for the extraction and purification of chlorogenic acid from ramie (Boehmeria nivea L.) leaves using acidic ionic liquids. Tan, Zhijian,Yang, Zizhen,Li, Fenfang,Li, Xiangdong.

[15]Extraction and purification of chlorogenic acid from ramie (Boehmeria nivea L. Gaud) leaf using an ethanol/salt aqueous two-phase system. Tan, Zhijian,Wang, Chaoyun,Yi, Yongjian,Wang, Hongying,Li, Mao,Zhou, Wanlai,Tan, Shiyong,Tan, Zhijian,Li, Fenfang. 2014

[16]Isolation of Chlorogenic Acid from Flaveria bidentis (L.) Kuntze by CCC and Synthesis of Chlorogenic Acid-Intercalated Layered Double Hydroxide. Wei, Yun,Gao, Yali,Xie, Qianqian,Zhang, Guoliang,Fu, Weidong.

[17]Optimization of Ethanol Extraction Process of Chlorogenic Acid by HPLC. Tang, X. -G.,Chen, Z. H-H.,Wei, G-W.,Peng, X-Y,Guo, S. -N.,Huang, X. -H.. 2011

[18]Optimization of Ethanol Extraction Process of Chlorogenic Acid by HPLC. Tang, X. -G.,Chen, Zh. -H.,Wei, G. -W.,Peng, X. -Y.,Guo, S. -N.,Huang, X. -H.. 2011

[19]The Analysis of Physiological Variations in M-2 Generation of Solanum melongena L. Mutagenized by Ethyl Methane Sulfonate. Xiao Xi-ou,Lin Wenqiu,Li Wei,Gao Xiaoming,Lv Lingling,Ma Feiyue,Liu Yuge,Xiao Xi-ou,Lin Wenqiu,Li Wei,Gao Xiaoming,Lv Lingling,Ma Feiyue,Liu Yuge. 2017

[20]Design, Synthesis, and Antiviral, Fungicidal, and Insecticidal Activities of Tetrahydro-beta-carboline-3-carbohydrazide Derivatives. Liu, Yongxian,Song, Hongjian,Huang, Yuanqiong,Liu, Yuxiu,Li, Yongqiang,Wang, Qingmin,Li, Jiarui,Yang, Peiwen,Shang, Hui,Song, Yuchuan,Xiao, Zhixin. 2014

作者其他论文 更多>>