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Synonyms:
   Oncidium carthaginense (Coot Bay dancing-lady orchid) 

Broader Terms:
   Oncidium (dancing-lady orchid) 
   Orchidales 

More Specific:
   Oncidium carthaginense andreanum 
   Oncidium carthaginense klotzschii 
   Oncidium carthaginense oerstedii 
   Oncidium carthaginense sanguineum 
   Oncidium carthaginense swartzii 
 
 


External Resources:

Common Names: Coot Bay dancing-lady orchid



241.  Detecting kinsenoside from Anoectochilus roxburghii by HPLC-ELSD with dual columns of NH2 and AQ-C18.LinkIT
Wei M, Chen X, Yi L, Yuan Y, Zhang H, Fu C, Yu L
Phytochemical analysis : PCA Phytochem Anal Detecting kinsenoside from Anoectochilus roxburghii by HPLC-ELSD with dual columns of NH2 and AQ-C18. 700-710 10.1002/pca.2933 Kinsenoside is a characteristic component of Anoectochilus roxburghii and accounts for this herb's medicinal and edible values. No international certified standard method is available for kinsenoside analysis as well as extraction and preservation. To develop a more accurate analytical method of kinsenoside. The effects of extraction and drying methods of A. roxburghii on kinsenoside efficiency were investigated for the first time, as well as to examine the kinsenoside stability. The amino (NH2 ) and AQ-C18 columns for detecting kinsenoside extract was systematically compared by high-performance liquid chromatography evaporative light-scattering detector (HPLC-ELSD) and HPLC-diode-array detector (DAD), respectively. Kinsenoside, its epimer goodyeroside A and the degradation product during preservation were identified through HPLC-electrospray ionization mass spectrometry (ESI-MS). An accurate method of kinsenoside detection by HPLC-ELSD with dual columns of NH2 and AQ-C18 was established. The ratio of Cgoodyeroside A to Ckinsenoside (Y) was determined using the AQ-C18 column method. The concentration detected by the NH2 column was multiplied by 1/(1 + Y) as the corrected result. Using this novel method, the average deviations were reduced by 7.64%. Moreover, the efficiency of kinsenoside extraction with water was almost twice that of extraction with ethanol. Freeze drying also led to a higher extraction efficiency (38.47% increase) than hot-air drying did. Furthermore, the degradation of kinsenoside extract exceeded 70% when stored at 37?°C for 3 months. This study provides a reliable experimental method and theoretical basis for the quality control of kinsenoside from A. roxburghii, as well as other glycosides. © 2020 John Wiley & Sons, Ltd. Wei Mi M Institute of Resource Biology and Biotechnology, Department of Biotechnology, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, 430074, China. Key Laboratory for Quality Control of Characteristic Fruits and Vegetables of Hubei Province, College of Life Science and Technology, Hubei Engineering University, Xiaogan, 432000, China. Chen Xuemin X Institute of Resource Biology and Biotechnology, Department of Biotechnology, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, 430074, China. Yi Liwen L Institute of Resource Biology and Biotechnology, Department of Biotechnology, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, 430074, China. Hubei Engineering Research Center for both Edible and Medicinal Resources, Wuhan, 430074, China. Yuan Yuanyuan Y Institute of Resource Biology and Biotechnology, Department of Biotechnology, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, 430074, China. Hubei Engineering Research Center for both Edible and Medicinal Resources, Wuhan, 430074, China. Zhang Hua H Institute of Resource Biology and Biotechnology, Department of Biotechnology, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, 430074, China. Hubei Engineering Research Center for both Edible and Medicinal Resources, Wuhan, 430074, China. Fu Chunhua C Institute of Resource Biology and Biotechnology, Department of Biotechnology, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, 430074, China. Hubei Engineering Research Center for both Edible and Medicinal Resources, Wuhan, 430074, China. Yu Longjiang L https://orcid.org/0000-0003-2517-2266 Institute of Resource Biology and Biotechnology, Department of Biotechnology, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, 430074, China. Hubei Engineering Research Center for both Edible and Medicinal Resources, Wuhan, 430074, China. eng 2018M642813 China Postdoctoral Science Foundation 2018 M642813 China Postdoctoral Science Foundation 2019kfyXKJC049 Fundamental Research Funds for the Central Universities 31600055 National Natural Science Foundation of China Journal Article 2020 03 26 England Phytochem Anal 9200492 0958-0344 0 3-glucopyranosyloxybutanolide 0 Monosaccharides OL659KIY4X 4-Butyrolactone IM 4-Butyrolactone analogs & derivatives Chromatography, High Pressure Liquid Monosaccharides Orchidaceae Anoectochilus roxburghii analysis method extraction method kinsenoside stability 2019 08 13 2020 02 11 2020 03 07 2020 3 28 6 0 2020 12 15 6 0 2020 3 28 6 0 ppublish 32216118 10.1002/pca.2933 REFERENCES, 2020</i></font><br><font color=#008000>http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0<br></font></span><br>242.  <a 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