Planta Med 2003; 69(4): 356-360
DOI: 10.1055/s-2003-38872
Original Paper
Natural Product Chemistry
© Georg Thieme Verlag Stuttgart · New York

Eremophilenolides and Other Constituents from the Roots of Ligularia sagitta

Xu-Qin Li1 , Kun Gao1 , Zhong-Jian Jia1
  • 1College of Chemistry and Chemical Engineering, National Laboratory of Applied Organic Chemistry, Lanzhou University, People’s Republic of China
Further Information

Publication History

Received: August 19, 2002

Accepted: November 23, 2002

Publication Date:
23 April 2003 (online)

Abstract

Chemical investigation of the roots of Ligularia sagitta has resulted in the characterization of six eremophilenolides 6β,8β-dimethoxy-10β-hydroxyeremophil-7(11)-en-12,8α-olide (1), 6β-angeloyloxy-10β-hydroxy-8β-methoxyeremophil-7(11)-en-12,8α-olide (2), 6β-(2′-methylbutanoyloxy)-10β-hydroxy-8β-methoxyeremophil-7(11)-en-12,8α-olide (3), 6β-angeloyloxy-10β-hydroxy-8α-methoxyeremophil-7(11)-en-12,8β-olide (4), 6β-(2′-methylbutanoyloxy)-10β-hydroxy-8α-methoxyeremophil-7(11)-en-12,8β-olide (5) and 8β,10β-dihydroxy-6β-methoxyeremophil-7(11)-en-12,8α-olide (6), together with one monoterpene (3R,4R,6S)-3,6-dihydroxy-1-menthene (7), two triterpenes lupeol (8) and ursolic acid (9), and β-sitosterol (10). The structures of five new constituents (1 - 5) were elucidated by spectroscopic methods including 2D-NMR experiments. The compounds 1, 5 and 7 showed antibacterial activity by being assayed against Staphylococcus aureus, Bacillus subtilis and Escherichia coli.

References

  • 1 Jiangsu College of New M edicine, A Dictionary of the Traditional Chinese M edicines. Shanghai Science and Technology Press. Shanghai; 1977: pp. 1152, 2349
  • 2 Chen H M, Cai M S, Jia Z J. Sesquiterpenes from Ligularia intermedia .  Phytochemistry. 1997;  45 1441-4
  • 3 Chen H M, Jia Z J, Yang L. Sesquiterpenes and a diterpene lactone with an unusual carbon skeleton from Ligularia sagitta .  Phytochemistry. 1992;  31 2146-7
  • 4 Jia Z J, Chen H M, Qiu J L. et al . The structure of sagittolactone.  Chin Sci Bull. 1992;  37 773-4
  • 5 Zhao Y, Jia Z J, Tan R X. New eremophilane type lactones.  Planta Med. 1992;  58 365-7
  • 6 Zhao Y, Peng H R, Jia Z J. Six new eremophilane derivatives from two Ligularia species.  Journal of Natural Products. 1994;  57 1626-30
  • 7 Zhang S M, Zhao G L, Li R, Lin G Q. Eremophilane sesquiterpenes from Cacalia roborowskii .  Phytochemistry. 1998;  48 519-24
  • 8 Maria D, Cesar A. Monoterpenes and lignans from Mikania saltensis .  Journal of Natural Products. 1991;  54 1162-4
  • 9 Delgado G, Rios M Y. Monoterpenes from Chrysactinia mexicana .  Phytochemistry. 1991;  30 3129-31
  • 10 Xu S Y, Bian Q L, Chen X Y. In, Pharmacology Experimental Methods. People’s Health Press Beijing; 1982: pp. 1340-7
  • 11 Sugama K, Hayashi K, Mitsuhashi H. Eremophilenolides from Petasites japonicus .  Phytochemistry. 1985;  24 1531-5
  • 12 Moriyama Y, Takahashi T. New sesquiterpene lactones of eremophilane-type from Ligularia fauriei (F.) Koidz.  Bull Chem Soc Jpn. 1976;  49 3196-9
  • 13 Naya K, Kanazawa R, Sawada M. The photosensitized oxygenation of furanoeremophilanes I. The isomeric hydroperoxides from petasalbin and their transformations to lactones.  Bull Chem Soc Jpn. 1975;  48 3220-6
  • 14 Naya K, Matsumoto T, Makiyama M, Tsumura M. The conversion of furanoeremophilanes to epieremophilenolides.  Heterocycles. 1978;  10 177-84
  • 15 Ishizaki Y, Tanahashi Y, Takahashi T. The structure of ligularenolide - a new sesquiterpene lactone of eremophilane type.  Tetrahedron. 1970;  26 5387-93
  • 16 Aclinou P, Massiot G. Absolute configuration of eremophilenolides from Hertia cheirifolia .  Phytochemistry. 1993;  34 859-60
  • 17 Mao M J, Jia Z J. Eremophilane sesquiterpenes from Cacalia ainsliaeflora .  Planta Med. 2002;  68 55-9

Prof. Dr. Zhong-Jian Jia and Dr. Kun Gao

College of Chemistry and Chemical Engineering

National Laboratory of Applied Organic Chemistry

Lanzhou University

Lanzhou 730000

People’s Republic of China

Fax: +86-0931-8912582

Email: jiazj@lzu.edu.cn

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