Analysis on the Components of the Angelica dahurica Root

구릿대(Angelica dahurica) 뿌리의 성분 분석

  • Joo, Eun-Yong (Department of Herbal Biotechnology, Daegu Haany University) ;
  • Kang, Won-Ja (Department of Health Beauty Science, Graduate school of Public Health, Daegu Haany University)
  • 주은영 (대구한의대학교 한방생명자원학과) ;
  • 강원자 (대구한의대학교 보건대학원 보건미용학전공)
  • Published : 2005.10.01

Abstract

This study was carried out to analyze the components of the Angelica dahurica root for the studies of the physiological function. General components of A. dahurica root were 71.7% moisture, 10.6% carbohydrate, 9.3% crude protein, 6.6% crude ash and 1.9% crude fat. The content of reducing sugar was 1,850 mg/100 g. The total amount of free sugar was 80 mg/100 g, in which 19.3 mg/100 g fructose, 27.8 mg/100 g glucose, 28.4 mg/100 g sucrose and 4.5 mg/100 g maltose were present. In the results of mineral analysis, the content of K was the highest(2,145.03 mg/100 g) followed by 286.35 mg/100 g Mg and 145.23 mg/100 g Ca. The total amount of hydrolyzed amino acid was 71.68 mg/100 g, in which 20.98 mg/100 g essential amino acid and 50.70 mg/100 g of non-essential amino acid were present. Among them, proline(11.74 mg/100 g) was the highest. Total free amino acids were contained 17.04 mg/100 g, in which 6.67 mg/100 g of essential amino acids and 10.37 mg/100 g of non-essential amino acids were present. Among them alanine(5.96 mg/100 g) was the highest. Total content of amino acid derivatives was 3.37 mg/100 g.

구릿대 뿌리의 생리적 기능과 이용 가능성에 대한 연구의 일환으로 일반성분과 환원당, 유리당, 무기질 성분 및 아미노산의 함량과 아미노산 유도체 등에 대하여 분석하였다. 일반성분 중에는 수분 함유량이 71.7%로 가장 높았으며, 탄수화물 10.6%, 조단백질 9.3%, 조회분 6.6%, 그리고 조지방이 1.9%로 나타났다. 환원당의 함량은 1,850 mg/100 g이었으며, 유리당의 총 함량은 80 mg/100 g으로 sucrose의 함량이 28.4 mg/100 g으로 가장 높았다. 무기질은 K가 2,145.03 mg/100 g으로 가장 높았으며, Mg(286.35 mg/ 100 g), Ca(145.23 mg/ 100 g), Zn(4.78 mg/100 g), Fe(4.20 mg/100g), Mn(3.76 mg/100 g) 등이 검출되었다. 구성아미노산의 함량은 71.68 mg/ 100 g으로 필수아미노산이 20.98 mg/100 g, 비필수아미노산이 50.70 mg/100 g으로 분석되었으며 proline(11.74 mg/100 g)의 함량이 가장 높았다. 유리아미노산은 필수아미노산 6.67 mg/100 g, 비필수아미노산 10.37 mg/100 g으로 총 17.04 mg/ 100 g이 함유된 것으로 나타났으며, alanine(5.96 mg/100 g)의 함량이 가장 높았다. 아미노산 유도체의 함량은 3.37 mg/100 g으로 나타났다.

Keywords

References

  1. Kim, H.S. and Chi, H.J. (1990) Studies on essential oils of plants of Angelica genus in Korea(III). Kor. J. Pharmacogn., 21, 121-125
  2. 구본홍. (1994) 동의보감 한글완역본. 대중서관. p.1420 [동의보감, 허준 (1612)]
  3. Kimura, T., But, P.P.H., Guo, J.X. and Sung, C.K. (1996) International collation of traditional and folk medicine: Part 1. World Scientific, Singapore, p.117-118
  4. Kim, S.H., Kang, S.S. and Kim, C.M. (1992) Coumarin glycosides from the roots of Angelica dahurica. Arch. Pharm. Res., 15, 73-77 https://doi.org/10.1007/BF02973988
  5. Kwon, Y.S. and Kim, C.M. (1992) Coumarin glycosides from the roots of Angelica dahurica. Kor. J. Pharmacogn., 24, 221-224
  6. Qiao, S.Y., Qao, X.S. and Wang, Z.Y. (1996) Coumarins of the roots of Angelica dahurica. Planta Med., 62, 584 https://doi.org/10.1055/s-2006-957985
  7. Baek, N.I., Ahn, E.M., Kim, H.Y. and Park, Y.D. (2000) Furanocoumarins from the root of Angelica dahurica. Arch. Charm. Res., 23, 467-470 https://doi.org/10.1007/BF02976574
  8. Ryu, S.Y., Kim, J.C., Kim, Y.S., Kim, H.T., Kim, W.K., Choi, G.J., Kim, J.S., Lee, S.W., Heor, J.H. and Cho, K.Y. (2001) Antifungal activities of coumarins isolated from Angelica gigas and Angelica dahurica against plant pathogenic fungi. The Korean J. Pesticide Science, 5, 26-35
  9. Wang, N.H., Yoshiazaki, K. and Baba, K. (2001) Seven new bifuranocoumarins, dahuribirin A-G, from Japanese Bai Zhi. Chem. Pharm. Bull., 49, 1085-1088 https://doi.org/10.1248/cpb.49.1085
  10. Kwon, Y.S., Shin, S.J., Kim, M.J. and Kim, C.M. (2002) A new coumarin from the stem of Angelica dahurica. Arch. Pharm. Res., 25, 53-56 https://doi.org/10.1007/BF02975261
  11. Jin, M.H., Jung, M.H., Lim, Y.H., Lee, S.H., Kang, S.J. and Cho, W.G. (2004) Promoting synthesis of collagen from Angelica dahurica root. Kor. J. Pharmacogn., 35, 315-319
  12. Shin, K.H., Kim, O.N. and Woo, W.S. (1988) Effect of the constituents of Angelica dahurica Radix on hepatic drug metabolizing enzyme activity. Kor. J. Pharmacogn., 19, 19-27
  13. Kim, D.K., Lim, J.P., Yang, J.H., Eom, D.O., Eun, J.S. and Leem, K.H. (2002) Acetylcholinesterase inhibitors from the roots of Angelica dahurica. Arch. Pharm. Res., 25, 856-859 https://doi.org/10.1007/BF02977004
  14. Kim, C.M., Kwon, Y.S. and Choi, S.Y. (1995) Antithrombotic effect of the BuOH soluble fraction of Angelica dahurica root. Kor. J. Pharmacogn., 26, 74-77
  15. Pae, H.O., Oh, H.C., Yun, Y.G., Oh, G.S., Jang, S.I., Hwang, K.M., Kwon, T.O., Lee, H.S. and Chung, H.T. (2002) Imperatorin, a furanocoumarin from Angelica dahurica (Umbelliferae), induces cytochrome c-dependent apoptosis in human promyelocytic leukaemia, HL-60 cells. Pharmacol. Toxicol., 91, 40-48 https://doi.org/10.1034/j.1600-0773.2002.910107.x
  16. Schinella, G.R., Tournier, H.A., Prieto, J.M., Rios, J.L., Buschiazzo, H. and Zaidenberg, A. (2002) Inhibition of Trypanosoma cruzi growth by medical plant extracts. Fitoterapia, 73, 569-575 https://doi.org/10.1016/S0367-326X(02)00246-0
  17. Lechner, D., Stavri, M., Oluwatuyi, M., Pereda-Miranda, R. and Gibbons, S. (2004) The anti-staphylococcal activity of Angelica dahurica. Phytochemistry, 65, 331-335 https://doi.org/10.1016/j.phytochem.2003.11.010
  18. Kwon, Y.S., Kobayashi, A., Kajiyama, S.I., Kawazu, K., Kanzaki, H. and Kim, C.M. (1997) Antimicrobial constituents of Angelica dahurica roots. Phytochemistry, 44, 887-889 https://doi.org/10.1016/S0031-9422(96)00634-6
  19. Kim, S.J., Kim, Y.H., Kang, D.K., Chung, S.H., Lee, S.P. and Lee, S.C. (1998) Essential oil content and composition of aromatic constituents in leaf of Saururus chinensis, Angelica dahurica and Cnidium officinale. Korean J. Medicinal Crop Sci., 6, 299-304
  20. A.O.A.C. (1995) Official methods of analysis. 15th ed., Association of Official Analytical Chemists, Washington, D.C., p.210-219
  21. Luchsinger, W.W. and Cornesky, R.A. (1982) Reducing sugar by the dinitrosalicylic acid and method. Anal. Biochem., 4, 346-351 https://doi.org/10.1016/0003-2697(62)90098-2
  22. Shim, K.H., Sung, N.K., Choi, J.S. and Kang, K.S. (1989) Changes in major components of japanese apricot during ripening. J. Korean Soc. Food Nutr., 18, 101-108
  23. Yun, S.I., Choi, W.J., Choi, Y.D., Lee, S.H., Yoo, S.H., Lee, E.H. and Ro, H.M. (2003) Distribution of heavy metals in soils of Shihwa tidal freshwater marshes. Korean J. Ecol., 26, 65-70
  24. Yun, S.J., Kim, N.Y. and Jang, M.S. (1994) Free sugars, amino acids, organic acids and minerals of the fruits of paper mulberry(Broussonetia kazinoki Siebold). J. Korean Soc. Food Nutr., 23, 950-953
  25. Han, S.J. and Koo, S.J. (1993) Study on the chemical composition in bamboo shoot, lotus root and burdock-free sugar, fatty acid, amino acid and dietary fiber contents. Korean J. Soc. Food Sci., 9, 82-87
  26. Shin, S.R. (1999) Studies on the nutritional components of dandelion(Taraxacum officinale). Korean J. Postharvest Sci. Technol., 6, 495-499
  27. Kim, O.K., Kung, S.S. and Park, W.B. (1992) The nutritional components of aerial whole plant and juice of Angelica keiskei Koidz. Korean J. Food Sci. Technol., 24, 592-596
  28. Bae, Y.I. and Shim, K.W. (1998) Nutrition components in different parts of Korean loquat(Eriobotrya japonica Lindl). Korean J. Postharvest Sci. Technol., 5, 57-63
  29. Hwang, J.B. and Yang, M.O. (1997) Comparison of chemical components of Angelica gigas Nakai and Angelica acutiloba Kitagawa. Korean J. Food Sci. Technol., 29, 1113-1118
  30. Hwang, J.B., Yang, M.O. and Shin, H.K. (1997) Survey for approximate composition and mineral content of medicinal herbs. Korean J. Food Sci. Technol., 29, 671-679
  31. 한국약학대학협의회, 약물학분과회. (1988) 약물학. 문성사. p.300
  32. Shin, S.C. (1997) A study on the free sugar and amino acids in Korean arrow root. Korean J. Plant Res., 10, 1-5