DOI QR코드

DOI QR Code

The Study on the Composition of Yongdamsagan-tang(龍膽瀉肝湯)'s Essential Oil Obtained by Supercritical Carbon Dioxide Extraction

초임계 유체 추출법을 이용한 용담사간탕(龍膽瀉肝湯) 약침액(藥鍼液)의 정유(精油)성분에 대한 연구(硏究)

  • 이재은 (상지대학교 한의과대학 내과학교실) ;
  • 김병우 (상지대학교 한의과대학 내과학교실) ;
  • 임태진 (상지대학교 응용동물과학부) ;
  • 김동희 (연세대학교 원주의과대학 환경의생물학교실) ;
  • ;
  • ;
  • 권기록 (상지대학교 한의과대학 침구학교실)
  • Published : 2008.03.31

Abstract

Objectives : This study was performed to analyze the effective components of essential oil obtained from Yongdamsagantang, which has been efficacious against leukorrhea in gynecologic diseases. Methods : I obtained the essential oils of Yongdamsagan-tang by hydrodistillation extraction method and supercritical fluid extraction(SFE) method, and then I analyzed those by GC/MS(Gas Chromatography/Mass Spectrum). Results : 1. The optimum SFE(Supercritical Fluid Extraction) condition was obtained in the following experiment conditions: pressure 200atm, temperature $45^{\circ}C$, duration of extraction 25minutes. 2. With GC(Gas Chromatography) and GC/MS(Gas Chromato- graphy/Mass Spectrum) analysis, I identified 37 compounds in the Yongdamsagan-tang's essential oil obtained through the SFE method. The main compounds were as follows : 3-Methyl-but-2-enoic acid,2,2-dimethyl-8-oxo-3,4-dihydro-2H,8H -pyrano[3,2-g]chromen-3-yl ester(49.81%), (Z)-6-Pentadecen-1 -ol(3.19%), (-)-Spathulenol(2.40%). 3. I identified 4 compounds in the Yongdamsagan-tang's essential oil obtained through the hydrodistillation method. The main compounds were as follows : 3-Methyl-but-2-enoic acid, 2,2-dimethyl-8-oxo-3,4-dihydro-2H,8H-pyrano [3,2-g]chromen-3-yl ester(2.61%). 4. 3-Methy I-but-2-enoic acid, 2,2-dimethyl-8-oxo-3,4-dihydro-2H,8H-pyrano[3,2-g] chromen-3-yl ester, all were identified in both the SFE method and the hydrodistillation method, but the others were not identified in common. 5. I also conducted an additional test in order to examine the essential oil's antimicrobial action against bacteria. Both MIC(Minimum Inhibitory Concentrations) and MBC(Minimum Bactericidal Concentrations) were $0.125mg/m{\ell}$ against N. meningitidis, however MIC and MBC were $1.0mg/m{\ell}$ in antimicrobial action against 12 different genera of bacteria.

Keywords

References

  1. 대한약침학회. 약침요법 시술지침서. 서울:한성인쇄. 2000:128-33
  2. 이윤우. 초임계유체 이용기술(I). 화학공학. 2001:19(3);325-33
  3. 이윤우. 초임계유체 이용기술(II). 화학공학. 2001:19(4);457-67
  4. 박창호. 한약재 가공실험 및 이론. 서울:청문각. 2004:83,90-5
  5. 배병철. 표준임상방제학. 서울:성보사. 1995:130-1
  6. 서만선,진영상,정규만. 龍膽瀉肝湯및 龍膽瀉肝湯加 味方의 항 알레르기에 관한 실험적 효과. 대한한방소아과학회지. 1991;5(1):15-27
  7. 김남권,김종한,임규상,황충연. 龍膽瀉肝湯의 항바이러스활성 및 면역반응에 대한 실험적 고찰. 대한외관과학회지. 1998;11(1):1-22
  8. 宋炳基. 龍膽瀉肝湯과 銀花瀉肝湯의 抗炎症, 解熱, 鎭痛, 利尿및 抗菌효과. 趙永植博士華甲記念論文集編纂委員會. 1981:1025-39
  9. 金廣水. 龍膽瀉肝湯 및 龍膽瀉肝湯加金銀花煎湯液이 사염화탄소에 의한 白鼠 肝損傷에 미치는 영향. 원광 대학교대학원. 1982
  10. 文大煥. 龍膽瀉肝湯및 茵蔯五散이 膽道結紮로 유발된 白鼠의 肝損傷에 미치는 영향. 원광대학교대학원. 1993
  11. 김정근. 龍膽瀉肝湯加味方의 항알레르기 및 항염증효과에 대한 실험적 연구. 원광대학교 대학원 박사학위논문. 2004
  12. 吳謙. 醫宗金鑒(下). 서울:一中社. 1991:1251,1718
  13. Ranjit Roy. A Primer on the Taguchi Method. New York:Van Nostrand Reinhold. 1990:pp247
  14. Davis N.W., J. Chromatogr. 1990:503;1-24 https://doi.org/10.1016/S0021-9673(01)81487-4
  15. O. David Sparkman. Identification of Essential oil Components by Gas Chromatography/Mass Spectroscopy. Journal of the American Society for Mass Spectrometry. 2005:16(11);1902-3 https://doi.org/10.1016/j.jasms.2005.07.008
  16. Jennings W., Shibamoto T., Qualitative Analysis of Flavour and Fragrance Volatiles by Glass Capillary Gas Chromato graphy. New York: Academic Press. 1980:pp472
  17. E.H. Lee et al., Activation of inducible nitric oxide synthase by Yongdam-Sagan-Tang in mouse peritoneal macrophages. Journal of Ethnopharmacology. 1998:60;61-9 https://doi.org/10.1016/S0378-8741(97)00132-3
  18. Hyoung Chul Mun et. al., Comparison of Immune Activities of Essential Oils from Juniperus rigida S. et Z. and Boswellia carteii Birew by Supercritical Fluid Extraction System. Korean J. Medical Crop Sci. 2004:12(3);243-48
  19. Seung Jin Lee et. al., Extraction of Volatile Essential Oil from Citrus junos Peel by Supercritical Carbon Dioxide. Korean J. Biotechnol. Bioeng. 2002:17(2);148-52
  20. G. Della Porta et. al., Isolation of eucalyptus oil by supercritical fluid extraction. Flavour and Fragrance J. 1999:14;214-8 https://doi.org/10.1002/(SICI)1099-1026(199907/08)14:4<214::AID-FFJ814>3.0.CO;2-H
  21. Seied Mahdi Pourmortazavi et. al., Supercritical Carbon Dioxide Extraction of Essential Oils from Perovskia atriplicifolia Benth. J. Agric. Food Chem. 2003:51;5414-9 https://doi.org/10.1021/jf0341619
  22. 江蘇新醫學院 編 金昌玟外 譯. 完譯中藥大辭典. 서울:정담출판사. 1998:68, 889, 890, 1380, 2345, 2624,3178,4041,4361,4403,5003
  23. 王治生. 中藥藥理與應用. 北京:人民衛生出版社. 1983:709-18
  24. 성기천. 초임계 이산화탄소를 이용한 쑥 추출물의 항균효과에 관한 연구. 한국유화학회지. 2003:20(4);309-15
  25. Hyun Soo Lee et. al., Comparison of biological activities of essential oils from Feniculum vulgare Mill, Boswellia carteii Birew and Juniperus rigida Sieb. by a supercritical fluid extraction system. Korean J. Medicinal Crop Sci. 2003:11 (2);115-21
  26. 정승현,장규섭,고경희. 강황으로부터 초임계 유체 추출한 curcumin의 생리활성. 한국식품과학회지. 2004:36(2);317-20
  27. 최영해 외. 초임계 이산화탄소를 이용한 약용식물성분의 선택적 추출. 생약학회지. 1999:30(1);59-64
  28. Min Jeong Noh et. al., Selective Extraction of Bioactive Substances from Natural Medicinal Resources Utilizing Supercritical Fluid Technology. Chemical Industry and Technology. 1997:15(1);14-21
  29. Rui Ruivo et. al., Hydrodynamics and mass transfer of a static mixer at high pressure conditions. Chemical Engineering and Processing. 2006:45;224-31 https://doi.org/10.1016/j.cep.2005.08.004
  30. Eui-Ju Hong, Ki-Jeung Na, In-Gyu Choi, Kyung-Chul, Eui-Bae Jeong. Antibacterial and Antifungal effects of Essential Oils from Coniferous Trees. Biol. Pharm. Bull. 2004:27(6);863-6 https://doi.org/10.1248/bpb.27.863