Planta Med 2006; 72(7): 611-614
DOI: 10.1055/s-2006-931569
Original Paper
Pharmacology
© Georg Thieme Verlag KG Stuttgart · New York

Antimalarial Activity of Biflavonoids from Ochna integerrima

Chikara Ichino1 , Hiroaki Kiyohara1 , 2 , Noppamas Soonthornchareonnon3 , Wongsatit Chuakul3 , Aki Ishiyama4 , Hitomi Sekiguchi4 , Miyuki Namatame4 , Kazuhiko Otoguro4 , Satoshi Omura1 , Haruki Yamada1 , 2
  • 1Kitasato Institute for Life Sciences, Kitasato University, Tokyo , Japan
  • 2Oriental Medicine Research Center, The Kitasato Institute, Tokyo, Japan
  • 3Faculty of Pharmacy, Mahidol University, Bangkok, Thailand
  • 4Research Center for Tropical Diseases, Institute for Basic Research, The Kitasato Institute, Tokyo, Japan
Further Information

Publication History

Received: December 1, 2005

Accepted: January 17, 2006

Publication Date:
29 May 2006 (online)

Abstract

During the screening of antimalarial substances, the 80 % EtOH extract from the outer bark of Ochna integerrima Merr. (Ochnaceae) was shown to have a good anti-malarial activity (IC50 value: 6.5 μg/mL) whereas extracts from the inner barks of O. integerrima showed no antimalarial activity. Biflavanone (1), which had not been found previously from a natural plant source, was isolated as a potent antimalarial active ingredient (IC50 value: 80 ng/mL) from the extract of the outer barks. The stereoisomer of 1 ( = compound 2) was also isolated from this plant; however, its activity was significantly lower than that of 1.

References

  • 1 Greenwood B, Mutabingwa T. Malaria in 2002.  Nature. 2002;  415 670-2
  • 2 Sachs J, Malaney P. The economic and social burden of malaria.  Nature. 2002;  415 680-5
  • 3 Smitinand T, Larsen K. Flora of Thailand. Vol. 2 Bangkok; Tistr Press 1970: p 24-6
  • 4 Perry L M. Medicinal plants of East and Southeast Asia. Massachusetts; MIT Press 1980: p 289-90
  • 5 Likhitwitayawuid K, Rungserichai R, Ruangrungsi N, Phadungcharoen T. Flavonoids from Ochna integerrima .  Phytochemistry. 2001;  56 353-7
  • 6 Kaewamatawong R, Likhitwitayawuid K, Ruangrungsi N, Takayama H, Kitajima M, Aimi N. Novel biflavonoids from the stem bark of Ochna integerrima .  J Nat Prod. 2002;  65 1027-9
  • 7 Likhitwitayawuid K, Kaewamatawong R, Ruangrungsi N. Mono- and biflavonoids of Ochna integerrima .  Biochem Syst Ecol. 2005;  33 527-36
  • 8 Botta B, Vinciguerra V, DeRosa M C, Scurria R, Carbonetti A, Ferrari F. et al . Studies in cell suspension cultures of Cassia didymobotrya. Part III. The biotransformation of chalcones to flavones and biflavanones.  Heterocycles. 1989;  29 2175-83
  • 9 Vitali A, Botta B, Delle Monache G, Zappitelli S, Ricciardi P, Melino S. et al . Purification and partial characterization of a peroxidase from plant cell cultures of Cassia didymobotrya and biotransformation studies.  Biochem J. 1998;  331 513-9
  • 10 Botta B, Ricciardi P, Vitali A, Vinciguerra V, Garcia C, Delle Monache G. Peroxidase from cell cultures of Cassia didymobotrya: a review and comparison with horseradish peroxidase.  Heterocycles. 1999;  50 757-66
  • 11 Nunome S, Ishiyama A, Kobayashi M, Otoguro K, Kiyohara H, Yamada H. et al . In vitro antimalarial activity of biflavonoids from Wikstroemia indica .  Planta Med. 2004;  70 76-8
  • 12 Beldjoudi N, Mambu L, Labaied M, Grellier P, Ramanitrahasimbola D, Rasoanaivo P. et al . Flavonoids from Dalbergia louvelii and their antiplasmodial activity.  J Nat Prod. 2003;  66 1447-50
  • 13 Otoguro K, Kohana A, Manabe C, Ishiyama A, Ui H, Shiomi K. et al . Potent antimalarial activities of polyether antibiotic, X-206.  J Antibiot. 2001;  54 658-63

Prof. Dr. Haruki Yamada

Kitasato Institute for Life Sciences

Kitasato University

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Minato-ku

Tokyo 108-8641

Japan

Phone: +81-3-3444-6164

Fax: +81-3-3445-1351

Email: yamada@lisci.kitasato-u.ac.jp

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