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CDCl3 17.7,22.5,24.4,28.4,32.2,34.4,51.1,72.4,76.5,101.7,105.3,111.2,149.8,160.5,166.0,171.7 |
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Gaoyumeng: ½ð±Ò+10, ¡ï¡ï¡ï¡ï¡ï×î¼Ñ´ð°¸ 2015-03-07 13:07:25
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Gaoyumeng: ½ð±Ò+10, ¡ï¡ï¡ï¡ï¡ï×î¼Ñ´ð°¸ 2015-03-07 13:07:25
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1 . (3R,4R)-4-hydroxy-de-O-methyllasiodiplodin C16H22O5 ÏàËÆ¶È:93.7% Bioorganic & Medicinal Chemistry Letters 2014 24 3952-3955 Lactones fromFicus auriculataand their effects on the proliferation function of primary mouse osteoblasts in vitro Tai-Ming Shao , Cai-Juan Zheng, Chang-Ri Han, Guang-Ying Chen, Chun-Yan Dai,Xiao-Ping Song, Jin-Chao Zhang, Wen-Hao Chen Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 2 . des-O-methyllasiodiplodin C16H22O4 ÏàËÆ¶È:81.2% Chemical & Pharmaceutical Bulletin 1991 39 2956-2961 Biologically Active Constituents of Arnebia euchroma : Structure of Arnebinol, an Ansa-Type Monoterpenylbenzenoid with Inhibitory Activity on Prostaglandin Biosynthesis Xin-Sheng YAO,Yutaka EBIZUKA,Hiroshi NOGUCHI,Fumiyuki KIUCHI,Masaaki SHIBUYA,Yoichi IITAKA,Haruo SETO and Ushio SANKAWA Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 3 . de-O-methyllasiodiplodin ÏàËÆ¶È:81.2% China Journal of Chinese Materia Medica 2009 34 414-418 Chemical constituents in roots of Osbeckia opipara WANG Hongsheng, WANG Yuehu, SHI Yana, LI Xingyu, LONG Chunlin Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 4 . (R)-de-O-methyllasiodiplodin ÏàËÆ¶È:81.2% Bioorganic & Medicinal Chemistry Letters 2011 21 1171-1175 Synthesis, modification, and evaluation of (R)-de-O-methyllasiodiplodin and analogs as nonsteroidal antagonists of mineralocorticoid receptor Cheng-Shi Jiang, Rong Zhou , Jing-Xu Gong, Li-Li Chen, Tibor Kurt¨¢n, Xu Shen, Yue-Wei Guo Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 5 . de-O-methyllasiodiplodin ÏàËÆ¶È:81.2% Journal of Instrumental Analysis 2007 26 12-15 NMR Study on Lasiodiplodin Series YANG Rui-yun, LI Chun-yuan, LIN Yong-cheng, PENG Guang-tian, ZHOU Shi-ning Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 6 . de-O-methyllasiodiplodin ÏàËÆ¶È:81.2% Journal of Chinese Medicinal Materials 2012 35 400-403 Chemical Constituents from the Fruits of Areca catechu YANG Wen-qiang, WANG Hong-cheng, WANG Wen-jing, WANG Ying, ZHANG Xiao-qi, YE Wen-cai Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 7 . (R)-Des-O-metil-lasiodiplodina ÏàËÆ¶È:81.2% Qu¨ªmica Nova 2013 36 1370-1374 Chemical constituents and evaluation of antibacterial activity of Macroptilium lathyroides (L.) Urb. (Fabaceae). Sousa, Leôncio M. de; Gois, Roberto W. da S.; Lemos, Telma L. G.; Arriaga, Ângela M. C.; Andrade-Neto, Manoel; Santiago, Gilvandete M. P.; Braz-Filho, Raimundo; Costa, Jos¨¦ G. M. da; Rodrigues, Fabiola F. G. Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 8 . (R)-(+)-de-O-methyllasiodiplodin C16H22O4 ÏàËÆ¶È:81.2% Chinese Traditional and Herbal Drugs 2013 44 3127-3130 Chemical constituents from roots of Ficus auriculata QI Cui-cui, CHEN Guang-ying, CHEN Wen-hao, SONG Xiao-ping, HAN Chang-ri Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 9 . 6-oxo-de-O-methyllasiodiplodin C16H20O5 ÏàËÆ¶È:75% Bioorganic & Medicinal Chemistry Letters 2006 16 4205-4208 Lactones from a brown alga endophytic fungus (No. ZZF36) from the South China Sea and their antimicrobial activities Rui-yun Yang, Chun-yuan Li, Yong-cheng Lin, Guang-tian Peng, Zhi-gang She, Shi-ning Zhou Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 10 . (R)-2,4-dihydroxy-7-methyl-7,8,9,10,11,12-hexahydro-6-oxa-benzocyclodecen-5-one C14H18O4 ÏàËÆ¶È:75% Tetrahedron 2001 57 5377-5384 Syntheses of ¦Â-resorcylic acid derivatives, novel potato micro-tuber inducing substances isolated from Lasiodiplodia theobromae Qing Yang, Hiroaki Toshima, Teruhiko Yoshihara Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 11 . 5-hydroxyde-O-methyllasiodiplodin ÏàËÆ¶È:75% Journal of Instrumental Analysis 2007 26 12-15 NMR Study on Lasiodiplodin Series YANG Rui-yun, LI Chun-yuan, LIN Yong-cheng, PENG Guang-tian, ZHOU Shi-ning Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 12 . lippidulcine C ÏàËÆ¶È:68.7% Journal of Natural Products 2006 69 1417-1420 Bisabolane-Type Sesquiterpenes from the Aerial Parts of Lippia dulcis Masateru Ono, Tsuyoshi Tsuru, Hiroaki Abe, Masashi Eto, Masafumi Okawa, Fumiko Abe, Junei Kinjo, Tsuyoshi Ikeda, and Toshihiro Nohara Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 13 . rugulotrosin A C32H30O14 ÏàËÆ¶È:68.7% Journal of Natural Products 2004 67 728-730 Rugulotrosins A and B: Two New Antibacterial Metabolites from an Australian Isolate of a Penicillium sp. Michael Stewart, Robert J. Capon, Jonathan M. White, Ernest Lacey, Shaun Tennant, Jennifer H. Gill, and Martin P. Shaddock Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 14 . methyl 2,4-dihydroxy-6-(8-hydroxyoctyl)benzoate ÏàËÆ¶È:68.7% Journal of Natural Products 1993 Vol 56 1737 Use of Alkenylresorcinols from Ononis speciosa as Synthetic Precursors of Compounds with Potential Biological Activity Alejandro F. Barrero, Juan F. S¨¢nchez, Ignacio Rodr¨ªguez, Mercedes Maqueda Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 15 . methyl 2-(8-hydroxyoctyl)-4,6-dimethoxybenzoate ÏàËÆ¶È:68.7% Journal of Natural Products 1993 Vol 56 1737 Use of Alkenylresorcinols from Ononis speciosa as Synthetic Precursors of Compounds with Potential Biological Activity Alejandro F. Barrero, Juan F. S¨¢nchez, Ignacio Rodr¨ªguez, Mercedes Maqueda Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 16 . (3R),(6S)-6-hydroxyde-O-methyllasiodiplodin ÏàËÆ¶È:68.7% Journal of Instrumental Analysis 2007 26 12-15 NMR Study on Lasiodiplodin Series YANG Rui-yun, LI Chun-yuan, LIN Yong-cheng, PENG Guang-tian, ZHOU Shi-ning Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 17 . compound 19a ÏàËÆ¶È:68.7% Helvetica Chimica Acta 1996 79 346-352 Model Studies Towards a Novel Fragment Coupling for the Synthesis of Mycalamides and Related Natural Products Reinhard W. Hoffmann, Steffen Breitfelder and Achim Schlapbach Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 18 . 1(4),1(4),5,7(2),7(2),13(2),13(2),15-Octamethyl-1(3),1(5),10-trioxa-3,4,16,17-tetraaza-1(2S,6S),7(1S,3R),13(1S,3R)-tricyclooctadecacyclophane-4,15-diene-2,11,18-trione C27H42N4O6 ÏàËÆ¶È:68.7% Chemistry of Natural Compounds 2014 50 658-660 Synthetic Approaches to Optically Active Macrolides Containing Hydrazide Fragments of L-(+)-Tartaric Acid from (+)-3-Carene, (+)-¦Á-Pinene, and S-(¨C)-Limonene G. Yu. Ishmuratov, M. P. Yakovleva, M. A. Shutova, R. R. Muslukhov, N. M. Ishmuratova, A. G. Tolstikov Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 19 . tetrahydromonocillin I ÏàËÆ¶È:66.6% The Journal of Antibiotics 2004 57 541-546 Isolation, Optimization of Production and Structure-Activity Relationship Studies of Monocillin I, the Cytotoxic Constituent of Paraphaeosphaeria quadriseptata E. M. KITHSIRI WIJERATNE,CARLOS A. CARBONEZI,JACQUELINE A. TAKAHASHI,CHRISTOPHER J. SELIGA,THOMAS J. TURBYVILLE,ELIZABETH E. PIERSON,LELAND S. PIERSON III,HANS D. VANETTEN,LUKE WHITESELL,VANDERLAN DA S. BOLZANI and A. A. LESLIE GUNATILAKA Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 20 . monocillin IV ÏàËÆ¶È:66.6% Journal of Natural Products 2013 76 824-828 Neocosmospora sp.-Derived Resorcylic Acid Lactones with in Vitro Binding Affinity for Human Opioid and Cannabinoid Receptors Jiangtao Gao, Mohamed M. Radwan, Francisco Le¨®n, Olivia Reed Dale, Afeef S. Husni, Yunshan Wu, Shari Lupien, Xiaoning Wang, Susan P. Manly, Robert A. Hill, Frank M. Dugan, Horace G. Cutler, and Stephen J. Cutler Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ |
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