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Isolation, Purification, Characterization and Effect upon HepG2 Cells of Anemaran from Rhizome Anemarrhena
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نویسنده
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Jiang Qian-Qian ,Zhao Yun-Ping ,Gao Wen-Yuan ,Li Xia ,Huang Lu-Qi ,Xiao Pei-Gen
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منبع
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iranian journal of pharmaceutical research - 2013 - دوره : 12 - شماره : 4 - صفحه:777 -788
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چکیده
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The rhizome of anemarrhena asphodeloides is used as food and traditional chinese medicine for its hypoglycemic effect. the aim of this study was to investigate the isolation, purification and hypoglycemic activity of anemaran as the active component. the influence factors (isolation duration, ratio of residuals to water and extracting times) during the isolation process were evaluated. the optimal conditions for na and aa were extraction temperature 90ºc and 100ºc, duration 1h and 1.5 h, extraction time 3 and 3, and the solid–liquor ratio 1:20 and 1:15, respectively. neutral and acid anemaran (na and aa) were isolated from the rhizome of anemarrhena asphodeloides. five fractions of na-1, na-2, na-3, aa-1 and aa-2 were obtained after crude neutral and acid anemaran purified through deae-52 cellulose anion-exchange column. the characterizations of anemaran and its different fractions were both analyzed by fourier transform infrared spectroscopy (ft-ir) and scanning electron micrographs (sem). structural properties of different fractions were examined by ft-ir. strong characteristic absorption peaks were observed at around 1744 cm−1and 1650 cm−1 caused by the c=o group of uronic acids, and the band between 1440 cm−1 and 1395 cm−1 associated with the stretching vibration of c–o of galacturonic acid. neither the crude neutral, nor the acid anemaran significantly inhibited the growth of hepg2 cells in-vitro, which indicated the low cytotoxicity of the anemaran. furthermore, both neutral and acid anemaran showed hypoglycemic effect. the hypoglycemic effect of neutral anemaran was much higher than that of acid anemaran.
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کلیدواژه
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Anemaran; Isolation; Purification; Characterization; Hypoglycemic effect
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آدرس
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Tianjin University, School of Pharmaceutical Science and Technology, A Tianjin Key Laboratory for Modern Drug Delivery and High-Efficiency, China, Tianjin University, School of Pharmaceutical Science and Technology, A Tianjin Key Laboratory for Modern Drug Delivery and High-Efficiency, China. Tianjin University of Traditional Chinese Medicine, School of Chinese Medicine, China, Tianjin University, School of Pharmaceutical Science and Technology, A Tianjin Key Laboratory for Modern Drug Delivery and High-Efficiency, China, Tianjin University, School of Pharmaceutical Science and Technology, A Tianjin Key Laboratory for Modern Drug Delivery and High-Efficiency, China, China Academy of Chinese Medicinal Sciences, Institute of Chinese Matetria Medica, China, Chinese Academy of Medical Sciences and Peking Union Medical College, Institute of Medicinal Plant, China
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Authors
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