Antiturmor Activities of Protein-bound Polysaccharide Extracted from Mycelia of Mushroom

버섯 균사체에 의한 암세포 성장억제 효과

  • 권석형 ((주)렉스진바이오텍 생명과학연구소) ;
  • 김춘년 ((주)렉스진바이오텍 생명과학연구소) ;
  • 김철용 ((주)렉스진바이오텍 생명과학연구소) ;
  • 권석태 (성균관대학교 생명공학부) ;
  • 박기문 (성균관대학교 생명공학부) ;
  • 황보식 ((주)렉스진바이오텍 생명과학연구소)
  • Published : 2003.03.01

Abstract

The purpose of this study is to observe the effect of protein-bound polysaccharide (PBP) on proliferation of Th1 cells and cytotoxicity of cancer cell. Mushrooms (Ganoderma lucidum, Agaricus blazei, Lentinus edodes, Coriolus versicolor and Phellinus linteus) were fractionated by 100$^{\circ}C$ hot water for 3hr. PBP was stimulated and proliferated Th1 cells most at 10 mg/$m\ell$ concentration and the percentage of cell proliferation was 40%. It was estimated cytotoxicity of PBP against 7 kinds of cancer cell lines. Antitumor activities of Agaricus blazei against P388D1 and L1210 (tumor cell lines) were 2.4% and 39.7% survival rate, and Lentinus edodes was 48.4% and 52.5% survival rate, respectively. PBP mixtures of Agaricus and Lentinus edodes prolonged (27∼40%) significantly the survival rate of mice intraperitoneally implanted with sarcoma 180.

버섯 균사체로부터 분리한 단백다당체의 Th1 cell 증식효과 및 각종 암세포에 대한 세포독성을 조사하였다. 단백다당체 시료는 영지버섯, 아가리쿠스, 표고버섯, 운지버섯, 그리고 상황버섯을 10$0^{\circ}C$에서 3시간 열수 추출하는 방법으로 조제하였다. Th1 cell의 세포증식을 조사한 결과, 10mg/$m\ell$ 농도에서 모든 시료가 40% 이상 억제하는 효과가 있는 것으로 나타났다. 7 종류의 암세포를 이용한 암세포 생존율을 조사한 결과, 1mg/$m\ell$ 농도에서 P388D1와 L1210에서 아가리쿠스는 2.4%와 39.7%, 표고버섯은 48.4%와 52.5%의 생존율을 보였다. Sarcoma 180으로 복수암을 유발시킨 마우스에게 아가리쿠스와 표고버섯으로부터 추출한 단백다당체를 섭취시킬 경우 생존율이 27~40%까지 유의적으로 증가하는 것으로 나타났다.

Keywords

References

  1. Benzamini, E. and Leskowitz, S. : Complement Immunology, Alan R. Liss. p.121-123, New York(l987)
  2. Franz, G. : Polysaccharides in pharmacy : Current applications and future concepts, Planta Medica., 55, 493-497( 1989) https://doi.org/10.1055/s-2006-962078
  3. Lee, T. S. : The full list of recoded mushroom in Korea, Kor. J. Mycol., 18, 233-259(1990)
  4. Ahn, D. K. : Medicinal Fungi in Korea, Kor. J. Mycol., 20, 154-166(1992)
  5. Lucas, E. H., Ringle, R. U., Clarke, D. A., Reilly, H. C., Stevens, J. A. and Stock, C C. : Tumor inhibitors in Boletus edulis and other Holobasidiomycetes, Antibiot Chemotherapy, 7, 1-4(1957)
  6. Chihara, G., Hamuro, J., Maeda, Y. Y., Arai, A. and Fukuoka, F. : Fractionation and purification of the polysaccharides with marked antitumor activity, especially lentinan, from Lentinus edodes (Berk) Sing (an edible mushroom), Res. Cancer, 30, 2776-2781(1970)
  7. Fujii, T., Maeda, H, Suzuki, F. and Ishida, N. : Isolation and characterization of a new antiturnor polysaccharide, KS-2, extracted from culture mycelia of Lentinus edodes L., Antibiotics, 31, 1079-1085(1978) https://doi.org/10.7164/antibiotics.31.1079
  8. Suzuki, S. and Oshima, S. : Influence of Shiitake (Lentinus edodes) on human serum cholesterol, Mushroom Sci., 9, 463 -467(1976)
  9. Hikino, H, Kanno, C., Mirin, Y. and Hayashi, T. : Isolation and hypoglycemic acitivity of Ganoderans A and B, gIycans of Ganoderman lucidum fruit bodies, Planta. Med., 51, 339 -340(1985) https://doi.org/10.1055/s-2007-969507
  10. Lee, J. W., Chung, C H, Jeong, H .J. and Lee, K. H : Anticomplementary and antiturnor activities of the lkal, extract from the mycelia of Lentinus edodes IY-105, Kor. J. Appl. Microbial. Biotechnol., 18, 571-577(1990)
  11. Lee, J. S., Lee, S. R. and Yu, T. J. : Production of mushroom mycelium (Agaricus campestris) in shaking culture (in Korea), Korean J. Food Sci. Technol., 7, 22-29( 1975)
  12. Park, Y. D. : Comparisons of protein-bound polysaccharide contents obtained from mycelial cultured broth and fruit body of Coriolus versicolor (in Korea), Korean J. Micol., 17, 223-228(1989)
  13. Park, K. M. and Lee, B. W. : Extraction and purification of antiturnor protein bound polysaccharides from Lentinus edodes, Korean J. Food Sci. Technol., 30, 1236-1242 (1998)
  14. Markwell, M. A., Haas, S. M., Bieber, L. L. and Tolbert, N. E. : A modification of the Lowry procedure to simplity protein determination in membrane and lipoprotein samples, Anal. Biochem., 87, 206-210(1978) https://doi.org/10.1016/0003-2697(78)90586-9
  15. Hodge, J. E. and Hofeiter, B. T. : Methods in carbohydrate chemistry, Vol. 1[Whistler, R. L. and Wolfrom, M. L. editors]. New York: Academic Press, p. 338(1962)
  16. Won, D. H. : Immune effect of bovine colostral whey, Sungkyunkwan Uni. MWon, D. H.aster Thesis(1999)
  17. Charmichael, J., Degraff, W. G., Gazdar, A. F., Minna, J. D. and Michell, J. B. : Evaluation of a tetrazolium-based semiautomated colorimetric assay, assessment of chemosensitivity testing, Cancer. Res., 47, 936-942(1987)
  18. SAS/STAT: User's guide: Release 6.03., SAS institute Inc. Cray NC USA, (1988)Cray NC USA
  19. Lee, B. W., Lee, M.S., Park, K. M, Kim, C. H, Ahn, P. U. and Choi, C. U. : Anticancer activities of the extract from the mycelia od Coriolus versicolor, Kor. J .Appl. Microbial. Biotechnol., 20, 311 - 315( 1992)
  20. Zanetta J. P. : Structure and functions of lectins in the central and peripheral nervous system, Acta Anatomica., 161, 180-195(1998) https://doi.org/10.1159/000046457
  21. Zhu, H G., Zollner, T. M, Klein-Franke, A. and Anderer, F. A. : Activation of human monocyte/macrophage by IL-2/IFN-v is linked to increased expression of an antitumor receptor with specificity for acetylated mannose, Immunology Letters, 38, 111 - 119(1993) https://doi.org/10.1016/0165-2478(93)90175-2
  22. Ohno, N., Miura, T., Miura, N. N., Adachi, Y. and Yadomae, T. : Structure and biological activities of hypochlorite oxidizes zymosan, Carbohydrate polymers, Volume 44, p.339- 349(2000)
  23. Colic, M .and Savic, M. : Garlic extracts stimulate proliferation of rat lymphocytes in vitro by increasing IL-2 and IL-4 production, Immunophamacol. Immunotoxicol., 22, 163-181(2000)
  24. Luk, V. P., Yosef, R, James, D. L., Brad, H N., Abul, K. A. and David, B. : Uncoupling IL-2 Signals that Reglate T Cell Proliferation, Survival, and Fas-mediated ActivationInduced Cell Death, Immunity, 11, 281-288(1999) https://doi.org/10.1016/S1074-7613(00)80103-X
  25. Putz, E. F. and Mannel, D. N. : Monocyte activation by tumour cells : A role for carbohydrate structures associated with CD2, Scandinavian Journal of Immunology, 41, 77-84(1995) https://doi.org/10.1111/j.1365-3083.1995.tb03536.x
  26. Tokunaka, K., Ohno, N., Adachi, Y., Miura, N. and Yadomae, T. : International Immunopharmacology, Volume 2, Issue 1. p.59 -67(2002) https://doi.org/10.1016/S1567-5769(01)00148-5
  27. Konopski, Z., Seljelid, R and Eskeland, T. : A novel immunomodulator soluble aminated beta-1,3-D-glucan: binding characteristics to mouse peritoneal macrophages, Biochem. Biophys. Acta., 1221, 61-65(1994) https://doi.org/10.1016/0167-4889(94)90216-X
  28. Lee, Y. K., Han, M. J., Park, S. Y. and Kim, D. H : In vitro and in vivo antitumor activity of the fruit body of Phellinus linteus, Korean J. Food Sci. Technol., 32, 477-480(2000)