Isolation and Quantitative Analysis of Cinnamtannin B-1 from Osmunda japonica Thunb

고비로부터 Cinnamtannin B-1의 분리 및 함량 분석

  • Kim, Min Suk (Division of Traditional Korean Medicine Resource, National Development Institute of Korea Medicine) ;
  • Woo, Kyeong Wan (Division of Traditional Korean Medicine Resource, National Development Institute of Korea Medicine) ;
  • Lee, Ki Ho (Division of Traditional Korean Medicine Resource, National Development Institute of Korea Medicine) ;
  • Lee, Hyun Joo (Division of Traditional Korean Medicine Resource, National Development Institute of Korea Medicine) ;
  • Lee, Seon Yu (Division of Traditional Korean Medicine Resource, National Development Institute of Korea Medicine) ;
  • Kang, Byoung Man (Division of Traditional Korean Medicine Resource, National Development Institute of Korea Medicine) ;
  • Jeon, Byung Hun (Department of Pathology, College of Korean Medicine, Wonkwang University) ;
  • Cho, Jung Hee (Division of Traditional Korean Medicine Resource, National Development Institute of Korea Medicine) ;
  • Cho, Hyun Woo (Division of Traditional Korean Medicine Resource, National Development Institute of Korea Medicine)
  • 김민석 (한약진흥재단 한약자원본부) ;
  • 우경완 (한약진흥재단 한약자원본부) ;
  • 이기호 (한약진흥재단 한약자원본부) ;
  • 이현주 (한약진흥재단 한약자원본부) ;
  • 이선유 (한약진흥재단 한약자원본부) ;
  • 강병만 (한약진흥재단 한약자원본부) ;
  • 전병훈 (원광대학교 한의학과 병리학교실) ;
  • 조정희 (한약진흥재단 한약자원본부) ;
  • 조현우 (한약진흥재단 한약자원본부)
  • Received : 2016.06.13
  • Accepted : 2016.08.30
  • Published : 2016.09.30

Abstract

In traditional Korean medicine, Osmunda japonica Thunb has been used as hemostasis and antipyretic treatment. The main compound "cinnamtannin B-1" was obtained by column chromatographic separation, and its structure was determined by spectroscopic methods, including $^1H$, $^{13}C$ NMR, and IT-TOF-ESI MS. Ash, moisture and extract content and acidinsoluble ash were monitored as identification test to establish the analytical methods. The optimum reflux extraction condition was 100% methanol extracted 30 min for 2 times. A quantitative analysis using HPLC method exhibited that the main compound at 24.7 min and its content was 0.96% in methanol extraction.

Keywords

References

  1. 안완식 (2009) 한국토종작물자원도감, 341, 도서출판 이유, 서울.
  2. 이창복 (2003) 원색 대한식물도감(상), 33, 향문사, 서울.
  3. 이영노 (2007) 한국식물도감(상), 37, 교학사, 서울.
  4. 정진해 (2012) 한국토종약용식물도감, 150, 학연문화사, 서울.
  5. Kim, S. J., Heo, M. Y., Bae, K. H., Kang, S. S. and Kim, H. P. (2003) Tyrosinase inhibitory activity of plant extracts (III): Fifty Korean indigenous plants. J. Appl. Pharmacol. 11: 245-249.
  6. Heo, C., Chung, J. H., Jo, B. K., Kim, H. P. and Heo, M. Y. (2003) Antioxidative activities of 60 plant extract. J. Appl. Pharmacol. 11: 196-199.
  7. Li, F. and Hu, Y. (2012) Antibacterial and antifungal properties of flavonoid compounds from Osmunda japonica Thumb. Chem. Asian. J. 24: 4964-4966.
  8. Hollenbeak, K. H. and Kuehne, M. E. (1974) Isolation and structure determination of the fern glycoside osmundalin and the synthesis of its aglycon osmundalactone. Tetrahedron 30: 2307-2316. https://doi.org/10.1016/S0040-4020(01)97097-8
  9. Zhu, X. X., Li, Y. J., Yang, L., Zhang, D., Chen, Y., Kmonickova, E., Weng, X. G., Yang, Q. and Zidek, Z. (2011) Divergent immunomodulatory effects of extracts and phenolic compounds from the fern Osmunda japonica Thunb. Chin. J. Integr. Med. 19: 761-770.
  10. Numata, A., Hokimoto, K., Takemura, T., Katsuno, T. and Yamamoto, K. (2004) Plant constituents biologically active to insects. V. Antifeedants for the larvae of the yellow butterfly, Eurema hecabe mandarina, in Osmunda japonica (1). Chem. Pharm. Bull. 32: 2815-2820.
  11. Numata, A., Takahashi, C., Fujiki, R., Kitano, E., Kitajima, A. and Takemura, T. (1990) Plant constituents biologically active to insects. VI. Antifeedants for larvae of the yellow butterfly, Eurema hecabe mandarina, in Osmunda japonica (2). Chem. Pharm. Bull. 38: 2862-2865. https://doi.org/10.1248/cpb.38.2862
  12. Hoer, M., Heinrich, M. and Rimpler, H. (1996) Proanthocyanidin polymers with antisecretory activity and proanthocyanidin oligomers from Guazuma ulmifolia bark. Phytochemistry 42: 109-119. https://doi.org/10.1016/0031-9422(95)00855-1
  13. Killday, K. B., Davey, M. H., Glinski, J. A., Duan, P., Veluri, R., Proni, G., Daugherty, F. J. and Tempesta, M. S. (2011) Bioactive A- type proanthocyanidins from Cinnamomum cassia. J. Nat. Prod. 74: 1833-1841. https://doi.org/10.1021/np1007944
  14. Kim, H. J., Suh, Y. T., Lee, J. P., Cho, J. H. and Jang, Y. P. (2009) Studies on the identification test of herbal medicines and its preparations. Kor. J. Pharmacogn. 40: 155-160.
  15. Nugroho, A., Park, M. G., Jin, S. E., Choi, J. S. and Park, H. J. (2009) Quantitative analsysis of flavanone glycosides and peroxynitrite scavenging effect of the five oriental medicinal drugs (Aurantii nobilis pericarpium, Citrii unshiu pericarpium, Citrii unshiu semen, Aurantii fructus, Poncirii fructus). Kor. J. Pharmacogn. 40: 370-375.