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Morphological Characterization, Chemical Components, and Biofunctional Activities of Panax ginseng, Panax quinquefolium, and Panax notoginseng Roots: A Comparative Study

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Huo Zhang, Lanjuan Huang, Chuanpei Xu, Zhi Li, Xianhua Yin, Tao Chen & Yuee Wang. (2022) Rapid determination of Panax notoginseng origin by terahertz spectroscopy combined with the machine learning method. Spectroscopy Letters 55:9, pages 566-578.
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Articles from other publishers (30)

Shijia Zhang, Kexin Fang, Zenan Ding, Jinxia Wu, Jianzhong Lin, Dunming Xu, Jinshui Zhong, Feng Xia, Jianghua Feng & Guiping Shen. (2023) Untargeted Metabolomics Analysis Revealed the Difference of Component and Geographical Indication Markers of Panax notoginseng in Different Production Areas. Foods 12:12, pages 2377.
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Xuanming Zhang, Can Kong, Xixin Wang, Hairong Hou, Hongxia Yu, Lizhen Wang, Peihai Li, Xiaobin Li, Yun Zhang, Liwen Han & Kechun Liu. (2023) LC-MS Analysis of Ginsenosides in Different Parts of Panax quinquefolius and Their Potential for Coronary Disease Improvement. Planta Medica 89:07, pages 764-772.
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Rui Li, Wanying Duan, Zhifang Ran, Xiaoli Chen, Hongxia Yu, Lei Fang, Lanping Guo & Jie Zhou. (2023) Diversity and correlation analysis of endophytes and metabolites of Panax quinquefolius L. in various tissues. BMC Plant Biology 23:1.
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Wenjun Deng, Hangxiu Liu, Lanping Guo, Yongzhong Liu & Zhaocheng Ma. (2022) Panax ginseng abuse exhibits a pro‐inflammatory effect by activating the NF‐κB pathway . Food Science & Nutrition 11:5, pages 2130-2140.
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Ruifeng Ji, Thomas Avery Garran, Yilu Luo, Meng Cheng, Mengyue Ren & Xiuteng Zhou. (2023) Untargeted Metabolomic Analysis and Chemometrics to Identify Potential Marker Compounds for the Chemical Differentiation of Panax ginseng, P. quinquefolius, P. notoginseng, P. japonicus, and P. japonicus var. major. Molecules 28:6, pages 2745.
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Xinzhen Fu, Kun Chen, Zhi Li, Huaying Fan, Bo Xu, Ming Liu, Lin Guo, Zeping Xie, Ke Liu, Shumin Zhang & Lijuan Kou. (2022) Pharmacokinetics and Oral Bioavailability of Panax Notoginseng Saponins Administered to Rats Using a Validated UPLC–MS/MS Method . Journal of Agricultural and Food Chemistry 71:1, pages 469-479.
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Dipayan Paul, Subhash Kalpuri, Debmalya Das Gupta, Pallabi Kalita Hui, Hui Tag & Rajendran Ananthan. (2022) Phytochemical, nutritional and antioxidant potential of Panax bipinnatifidus and Panax pseudoginseng: A study of two underutilized and neglected species from the Eastern Himalayan region of India. South African Journal of Botany 149, pages 837-852.
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Gang Wang, Xuanjiao Bai, Xiaochen Chen, Ying Ren, Xiaohui Pang & Jianping Han. (2022) Detection of Adulteration and Pesticide Residues in Chinese Patent Medicine Qipi Pill Using KASP Technology and GC-MS/MS. Frontiers in Nutrition 9.
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Peng Zhan, Feiyang Wang, Pengguo Xia, Guanghua Zhao, Meitang Wei, Fugang Wei & Ruilian Han. (2022) Assessment of suitable cultivation region for Panax notoginseng under different climatic conditions using MaxEnt model and high-performance liquid chromatography in China. Industrial Crops and Products 176, pages 114416.
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Suying Zhu. (2021) Optimization of Extraction of Polyphenol from Panax Quinquefolius L . Using Central Composite Design/Response Surface Methodology . Starch - Stärke 73:7-8, pages 2100020.
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Lili Li, Daijie Wang, Chenglong Sun, Yue Li, Heng Lu & Xiao Wang. (2021) Comprehensive Lipidome and Metabolome Profiling Investigations of Panax quinquefolius and Application in Different Growing Regions Using Liquid Chromatography Coupled with Mass Spectrometry . Journal of Agricultural and Food Chemistry 69:23, pages 6710-6719.
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Jun Kee Hong, Eun Young Hong, Jun Hee Park, Ji Won Lee, Sung Su Kim, Ji Won Moon & Wan Kyunn Whang. (2021) Differentiation-promoting and Protective Effects of the Fractions of Various Ginseng Species in C2C12 Cells. Korean Journal of Medicinal Crop Science 29:2, pages 135-143.
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Majid M. Heravi, Tayebe Momeni, Vahideh Zadsirjan & Leila Mohammadi. (2021) Applications of the Dess-Martin Oxidation in Total Synthesis of Natural Products. Current Organic Synthesis 18:2, pages 125-196.
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Yu-jie Zheng, Peng-guo Xia, Hong-guang Zhao, Jian-fen Zheng, Wei-guo Chai, Zong-suo Liang & Kai-jing Yan. (2021) Suitable soil moisture contents for water use efficiency and saponins accumulation in Panax notoginseng. Chinese Herbal Medicines.
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Mee Youn Lee, Han Sol Seo, Digar Singh, Sang Jun Lee & Choong Hwan Lee. (2020) Unraveling dynamic metabolomes underlying different maturation stages of berries harvested from Panax ginseng. Journal of Ginseng Research 44:3, pages 413-423.
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Yingqin Wei, Baojuan Hou, Haiyan Fang, Xinjie Sun & Feng Ma. (2020) Salting-out extraction of ginsenosides from the enzymatic hydrolysates of Panax quinquefolium based on ethanol/sodium carbonate system. Journal of Ginseng Research 44:1, pages 44-49.
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Yixuan Pan, Maohua Yang, Mei Zhang & Mingyan Jia. (2019) Rapid discrimination of commercial American ginseng and Asian ginseng according to diols composition using a colorimetric sensor array. Sensors and Actuators B: Chemical 294, pages 48-54.
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Manee Patanapongpibul & Qiao-Hong Chen. (2019) Immune Modulation of Asian Folk Herbal Medicines and Related Chemical Components for Cancer Management. Current Medicinal Chemistry 26:17, pages 3042-3067.
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Tao Wu, Osafo Raymond Kwaku, Hai-Zhou Li, Chong-Ren Yang, Long-Jiao Ge & Min Xu. (2019) Sense Ginsenosides From Ginsengs: Structure-Activity Relationship in Autophagy. Natural Product Communications 14:6, pages 1934578X1985822.
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Mohammad-Reza Mahmoudian-sani, SomayehHashemi Sheikhshabani, Farzaneh Sadat Mirfakhar & Samira Asgharzade. (2019) A review on medicinal plants used for treating ototoxicity and acoustic trauma induced hearing loss. Brazilian Journal of Pharmaceutical Sciences 55.
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Yadan He, Yingqin Wei, Xinjie Sun, Guowei Zhou & Juan Zheng. (2018) A new hollow fiber liquid/solid phase microextraction using Al 2 O 3 nanoparticles as the adsorbent for extraction of ginsenosides from an oral liquid . Analytical Methods 10:21, pages 2464-2469.
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Jing Meng, Xiaoqian Hu, Tiantian Zhang, Ping Dong, Zhaojie Li, Changhu Xue, Yaoguang Chang & Yuming Wang. (2018) Saponin from sea cucumber exhibited more significant effects than ginsenoside on ameliorating high fat diet-induced obesity in C57BL/6 mice. MedChemComm 9:4, pages 725-734.
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Jieun Jung, Na-Kyoung Lee & Hyun-Dong Paik. (2017) Bioconversion, health benefits, and application of ginseng and red ginseng in dairy products. Food Science and Biotechnology 26:5, pages 1155-1168.
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Yun Zhou, Yanli Huang, Shuoning Li, Pengfei Yang, Jiangchun Zhong, Jingwei Yin, Kaijie Ji, Yanqing Yang, Ning Ye, Lifeng Wang, Mingan Wang, Min Wang & Qinghua Bian. (2017) Total syntheses of 9-epoxyfalcarindiol and its diastereomer. Tetrahedron: Asymmetry 28:2, pages 288-295.
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Shujuan Wang, Hangrui Bai, Zongwei Cai, Dan Gao, Yuyang Jiang, Jianjun Liu & Hongxia Liu. (2016) MALDI imaging for the localization of saponins in root tissues and rapid differentiation of three Panax herbs . ELECTROPHORESIS 37:13, pages 1956-1966.
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Hualin Zhang, Zhong Li, Zhongliu Zhou, Hongyan Yang, Zhiyong Zhong & Caixia Lou. (2016) Antidepressant-like effects of ginsenosides: A comparison of ginsenoside Rb3 and its four deglycosylated derivatives, Rg3, Rh2, compound K, and 20(S)-protopanaxadiol in mice models of despair. Pharmacology Biochemistry and Behavior 140, pages 17-26.
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Yaping Wang, Hyung-Kyoon Choi, Josef A. Brinckmann, Xue Jiang & Linfang Huang. (2015) Chemical analysis of Panax quinquefolius (North American ginseng): A review. Journal of Chromatography A 1426, pages 1-15.
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Kyung Min Jeong, Min Sang Lee, Min Woo Nam, Jing Zhao, Yan Jin, Dong-Kyu Lee, Sung Won Kwon, Ji Hoon Jeong & Jeongmi Lee. (2015) Tailoring and recycling of deep eutectic solvents as sustainable and efficient extraction media. Journal of Chromatography A 1424, pages 10-17.
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L. N. Ten, S. M. Chae & S.-A. Yoo. (2015) Biotransformation of Ginsenosides Re and Rg1 by the Bacterium Microbacterium sp. GT35. Chemistry of Natural Compounds 51:1, pages 81-86.
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L. N. Ten, S. M. Chae & S.-A. Yoo. (2014) Biotransformation of the Principal Ginsenosides of Panax ginseng Into Minor Glycosides Through the Action of Bacterium Paenibacillus sp. BG134. Chemistry of Natural Compounds 50:4, pages 691-696.
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