Traditional Processing Strongly Affects Metabolite Composition by Hydrolysis in Rehmannia glutinosa Roots
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概要
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The processing of biological raw materials is considered to have an important role in the therapeutic application in Traditional Chinese Medicine. The root of Rehmannia glutinosa has to be processed by nine cycles of rice wine immersing, steaming and drying before using in clinical applications. In order to understand the chemical changes resulting from the processing, a comprehensive analysis of Rehmanniae radix was made using 1H-NMR and Fourier transform (FT)-mass spectrometry in combination with multivariate data analysis. After 1H-NMR and principle component analysis, hydrolysis was found to be the major chemical process during the treatments. Catalpol, raffinose and stachyose levels gradually decreased during processing, whereas monosaccharides including galactose and glucose were found to be higher in processed roots. The metabolic profile changed gradually through the processing cycles although the differences became smaller after the fifth processing cycle. The positive and negative ion-mode mass spectra by high resolution FT-MS revealed several series of ion clusters with mass differences of 162.053 Da, indicating a difference of a hexose moiety. During the processing, the number and signal intensity of the smaller glycosides were increased. Therefore, these results indicate that the fresh Rehmanniae radix is rich in polysaccharides, which are hydrolyzed during the processing.
著者
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Choi Young
Division of Gynecologic Oncology, Department of Obstetrics and Gynecology, Yonsei University College
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Kim Hye
Division Of Pharmacognosy Institute Of Biology Leiden University
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Choi Young
Division Of Functional Genomics Jichi Medical University
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VERPOORTE Robert
Division of Pharmacognosy, Leiden/Amsterdam Center for Drug Research, Gorlaeus Laboratories
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VAN DER
Division of Neonatology, Erasmus MC-Sophia Children's Hospital
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Verpoorte Robert
Division Of Pharmacognosy Center For Bio-pharmaceutical Sciences Leiden University
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Chang Wen-Te
School of Chinese Medicine Resources, China Medical University
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Lee Meng-Shiou
School of Chinese Medicine Resources, China Medical University
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Lin Ming-Kuem
School of Chinese Medicine Resources, China Medical University
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Kong Hongwei
Division of Analytical Biosciences, Leiden/Amsterdam Center for Drug Research, Centre for Medical Sy
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Hankemeier Thomas
Division of Analytical Biosciences, Leiden/Amsterdam Center for Drug Research, Centre for Medical Sy
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Wang Mei
SU BioMedicine
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Chang Wen-te
School Of Chinese Medicine Resources China Medical University
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Lin Ming-kuem
School Of Chinese Medicine Resources China Medical University
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Lee Meng-shiou
School Of Chinese Medicine Resources China Medical University
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Van Der
Division Of Analytical Biosciences Lacdr Leiden University
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Hankemeier Thomas
Division Of Analytical Biosciences Lacdr Leiden University
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Kim Hye
Division Of Nephrology Department Of Internal Medicine Korea University Anam Hospital Korea Universi
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KIM Hye
Division of Endocrinology and Metabolism, Department of Medicine, Samsung Medical Center, Sungkyunkwan University School of Medicine
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Van der
Division of Analytical Biosciences, Leiden/Amsterdam Center for Drug Research, Centre for Medical Systems Biology
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Hankemeier Thomas
Division of Analytical Biosciences, Leiden/Amsterdam Center for Drug Research, Centre for Medical Systems Biology
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Kong Hongwei
Division of Analytical Biosciences, Leiden/Amsterdam Center for Drug Research, Centre for Medical Systems Biology
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CHOI Young
Division of Pharmacognosy, Section Metabolomics, Institute of Biology, Leiden University
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