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²éѯ½á¹û£º¹²²éµ½113¸ö»¯ºÏÎï(²éѯ½á¹û½ö¹©²Î¿¼) 1 . coptisine ÏàËÆ¶È:70.8% China Journal of Chinese Materia Medica 2005 30 1756-1757 Studies on the alkaloides from herb of Corydalis adunca ZHAO Dongbao, TANG Yanli, WANG Hanqiang Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 2 . coptisine ÏàËÆ¶È:70.8% Korean Journal of Pharmacognosy 2000 31(4) 390-393 Alkaloidal Components of Chelidonii Fructus Kim, Min-Soo; Hwang, Bang-Yeon; Choe, Sang-Gil; Lee, Myung-Koo; Ro, Jai-Seup; Lee, Kyong-Soon Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 3 . coptisine C19H13NO4 ÏàËÆ¶È:70.8% Chinese Traditional and Herbal Drugs 2012 43 32-37 Anti-hepatitis virus constituents from Corydalis saxicola WU Ying-rui; MA Yun-bao; ZHAO You-xing; YAO Shu-ying; ZHOU Jun; GONG Qing-fang; CHEN Ji-jun Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 4 . coptisine ÏàËÆ¶È:70.8% Natural Product Research and Development 2011 23 647-651 Phytochemical Investigation of Corydalis yanhusuo SHI, Jun-min, HAN, Wei-li, YE, Wen-cai, CHAN, Shek-kiu, WANG, Yi-tao, ZHANG, Qing-wen Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 5 . compound 5 C19H13NO4 ÏàËÆ¶È:66.6% Natural Product Research 2014 28 413-419 Facile synthesis of tetrahydroprotoberberine and protoberberine alkaloids from protopines and study on their antibacterial activities Pi Cheng, Bin Wang, Xiubin Liu, Wei Liu, Weisong Kang, Jie Zhou & Jianguo Zeng Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 6 . ÑÎËá»ÆÁ¬¼î ÏàËÆ¶È:66.6% Chinese Journal of Medicinal Chemistry 2014 24 455-458 Synthetic process improvement for natural products coptisine HU Yin-ran£¬ZOU Zong-yao£¬WANG Yan-zhi£¬LI Xue-gang Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 7 . pseudocoptisine ÏàËÆ¶È:66.6% Journal of the Korean Society for Applied Biological Chemistry 2009 52 646-654 Isolation of Isoquinoline Alkaloids from the Tuber of Corydalis turtschaninovii and their Inhibition Activity on Low Density Lipoprotein Oxidation Jong-Ki Lee, Jin-Gyeong Cho, Myoung-Chong Song, Jong-Su Yoo, Dae-Young Lee, Hye-Joung Yang, Kyung-Min Han, Dong-Hyun Kim, Young-Jun Oh, Tae-Sook Jeong, and Nam-In Baek* Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 8 . coptisine ÏàËÆ¶È:62.5% Korean Journal of Pharmacognosy 1997 28(4) 257-263 Studies on the Constituents of Berberis amurensis Ruprecht Lee, Hyang-Yi; Kim, Chong-Won Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 9 . Coptisine ÏàËÆ¶È:62.5% Archives of Pharmacal Research 2008 31 1405-1412 Inhibitory activities of the alkaloids from Coptidis Rhizoma against aldose reductase Hyun Ah Jung, Na Young Yoon, Hyun Ju Bae, Byung-Sun Min and Jae Sue Choi Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 10 . ( - )-clusin C22H26O7 ÏàËÆ¶È:58.3% Phytochemistry 1983 22 909-1000 The transformation of 10¦Á-cucurbita-5,24-dien-3¦Â-ol into cucurbitacin C by seedlings of Cucumis sativus Gianni Balliano, Otto Caputo, Franca Viola, Laura DelPrino, Luigi Cattel Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 11 . dehydroisoapocavidine C20H17NO4 ÏàËÆ¶È:58.3% Chinese Traditional and Herbal Drugs 2014 45 1526-1531 Study on alkaloids from Corydalis saxicola and their anti-oxidative activities HE Zhi-chao, WANG Dong-mei, LI Guo-cheng, WU Jun-yan Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 12 . kadsurindutin E C20H24O5 ÏàËÆ¶È:58.3% Phytochemistry Letters 2014 9 158-162 Lignans from the roots of Kadsura coccinea and their inhibitory activities on LPS-induced NO production Lingzhi Fang, Chunfeng Xie, Hao Wang, Da-Qing Jin, Jing Xu, Yuanqiang Guo, Yonggang Ma Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 13 . (2S,3S)-2-(4-hydroxy-3-methoxybenzyl)-3-(5-methoxy-3,4-methylenedioxybenzyl) butyrolactone C21H22O7 ÏàËÆ¶È:54.1% Journal of Natural Products 2003 66 1421-1426 Dibenzylbutyrolactone and Dibenzylbutanediol Lignans from Peperomia duclouxii Na Li, Jian-Lin Wu,Jun-ichi Sakai,and Masayoshi Ando Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 14 . berberine C18H18NO4 ÏàËÆ¶È:54.1% Chemistry of Natural Compounds 1996 32 216-334 ALKALOIDS. PLANTS, STRUCTURE, PROPERTIES R. Shakirov, M. V. Telezhenetskaya, I. A. Bessonova,S. F. Aripova, I. A. Israilov, M. N. Sultankhodzhaev,V. I. Vinogradova, V. I. Akhmedzhanova, T. S. Tulyaganov,B. T. Salimov, and V. A. Tel'nov Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 15 . macelignan C20H24O4 ÏàËÆ¶È:54.1% Natural Product Research 2002 16 1-7 Lignans and Neolignans from Myristica Argentea Warb. F. Filleur; C. Pouget; D. P. Allais; M. Kaouadji; A. J. Chulia Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 16 . epiberberine ÏàËÆ¶È:54.1% China Journal of Chinese Materia Medica 2009 34 1097-1100 A new flavonoid glucoside from Huanglian jiedutang decoction MA Zhaotang, YANG Xiuwei, ZHONG Guoyue Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 17 . groenlandicine ÏàËÆ¶È:54.1% China Journal of Chinese Materia Medica 2009 34 1097-1100 A new flavonoid glucoside from Huanglian jiedutang decoction MA Zhaotang, YANG Xiuwei, ZHONG Guoyue Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 18 . Dehydrocheilanthifoline C19H15NO4 ÏàËÆ¶È:54.1% Chemistry & Biodiversity 2008 5 1335-1344 DNA Topoisomerase I Inhibitory Alkaloids from Corydalis saxicola Xuanxuan Cheng, Dongmei Wang, Lin Jiang, and Depo Yang Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 19 . macelignan ÏàËÆ¶È:54.1% Phytochemistry 1987 26 1542-1543 The structure of macelignan from Myristica fragrans Won Sick Woo,Kuk Hyun Shin,Hildebert Wagner,Hermann Lotter Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 20 . 1-(4-hydroxy-3-methoxyphenyl)-4-(3,4-methylenedioxyphenyl)-2,3-dimethylbutane C20H24O4 ÏàËÆ¶È:54.1% Phytochemistry 1988 27 3127-3129 Diaryldimethylbutane lignans from Myristica argentea and their antimicrobial action against Streptococcus mutans Nobuji Nakatani,Kayo Ikeda,Hiroe Kikuzaki,Masaru Kido,Yuzo Yamaguchi Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 21 . (+)-anwulignan ÏàËÆ¶È:54.1% Chinese Journal of Natural Medicines 2005 3 78-81 Sphenanlignan,a New Lignan from the Seeds of Schisandra sphenanthera JIANG Si-Jia; WANG Yan-Han; CHEN Dao-Feng Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 22 . Berberine ÏàËÆ¶È:54.1% Archives of Pharmacal Research 2004 27 1127-1131 Acetylcholinesterase inhibitors from the aerial parts of Corydalis speciosa Dae Keun Kim, Ki Taek Lee, Nam-In Baek, Sung-Hoon Kim and Hee Wook Park, et al. Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 23 . berberine ÏàËÆ¶È:54.1% Archives of Pharmacal Research 2005 28 1224-1227 Cytotoxic constituents from the whole plant of corydalis pallida Hyang Rim Kim, Hye -Young Min, Yeon Hee Jeong, Sang Kook Lee and Nam Sook Lee, et al. Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 24 . (-)-austrobailiguan 6 ÏàËÆ¶È:54.1% Journal of Shenyang Pharmaceutical University 2009 26 438-440 Isolation and identification of chemical constituents from the stem of Schisandra chinensis(Turcz.) Bail. LI Ying, SUN Bo-hang, HUANG Jian, GAO Hui-yuan, WU Li-jun Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ |
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