Studies on the Extraction Method and Polysaccharide of Tricholoma matsutake using the Supersonic wave and Microwave

초음파와 극초단파를 이용한 송이버섯의 추출법과 다당체에 관한 연구

  • Yu, Seung-Hyun (Department of Preventive Medicine, College of Oriental Medicine, Wonkwang University) ;
  • Chong, Myong-Soo (Department of Preventive Medicine, College of Oriental Medicine, Wonkwang University) ;
  • Kim, Hae-Ja (Department of Preventive Medicine, College of Oriental Medicine, Wonkwang University) ;
  • Lee, Ki-Nam (Department of Preventive Medicine, College of Oriental Medicine, Wonkwang University)
  • 유승현 (원광대학교 한의과대학 예방의학교실) ;
  • 정명수 (원광대학교 한의과대학 예방의학교실) ;
  • 김혜자 (원광대학교 한의과대학 예방의학교실) ;
  • 이기남 (원광대학교 한의과대학 예방의학교실)
  • Published : 2007.12.25

Abstract

In order to optimize the extract condition and improve physiological activity of the extract form Tricholoma matsutake, experiments related to extraction methods, totale yield, content of total soluble polysaccharide, SOD-like activity, total polyphenol amount, and volatile flavor compound and the others were carried out, results were obtained as following: Compare with traditional hydrothermal extraction method (Hot water extraction : HWEW), it illustrates that the low temperature extraction method which combines a supersonic waves and microwave (Supersonic microwave extraction : SMEW) causes of increasing the total yield, total soluble polysaccharide. As to the anti-oxident effect, SMEW method leds to increasing of the SOD-like activity, total polyphenol amount as well. Also, cytotoxic effect and growth inhibitory effect against cancer cell line are much higher in SMEW method than HWEW method, especially SMEW5 extracts treated by supersonic 15 min. and microwave 120W, 3 min. and 2 times. The main volatile flavor compound and infinitesimal volatile flavor compound both increase significantly by SMEW method. It is concluded the main components of the volatile flavor compounds extracted from Tricholoma matsutake are 1-octen-3-0l, Methyl cinnamate, 2-octeno1 et al. alcohol typies. Consequently, SMEW5 method is considered as the most effective one for anti-oxidant and is prior to any other methods. And the optimun conditions of this method are : supersonic waves (supersonic, 25KHz, 50W) 15 minutes, microwave spectroscopy (microwave, 2,450MHz, 120W) 3 minutes, and every treatment is performed once followed twice repeats.

Keywords

References

  1. 강선철, 김민정. 식물류를 이용한 송이버섯의 저장성 향상. 생명과학연구 1(3):287-294, 2003
  2. 안장수, 이규한. 한국산 식용버섯의 무기성분 함량에 관한 연구. 한국식품위생안전성학회지 1(2):177-179, 1986
  3. 이시진. 본초강목. 북경, 화하출판사, p 1152, 1153, 1998
  4. 박완희, 이호득. 한국약용버섯도감. 서울, 교학사, p 240, 241, 1999
  5. 전통의학연구소. 동양의학대사전. 서울, 성보사, p 1200, 2000
  6. 허준. 동의보감. 서울, 남산당, p 719, 1987
  7. Ogawa, M. Microbial ecology of 'Shiro' in Tricholoma matsutake(S. Ito et Imai) Sing. and its allied species. VII. Tricholoma fulvocastaneum Hongo in Castanopsis cuspidata forests. Trans Mycol Soc Japan, 19: 37-46, 1978
  8. 구경형, 조명희, 박완수. 생송이 버섯과 냉동송이 버섯의 품질 및 향기 성분 특성. 한국식품과학회지 134(4):625-630, 2002
  9. 이위영, 안진권, 가강현, 권영진. 공기 부양식 생물반응기의 송이균사의 생장 특성 비교. 한국균학회지 3(2):89-93, 2003
  10. 정헌식, 윤광섭. 전처리 방법에 따른 영지버섯 추출액의 품질 특성 변화. 한국식품저장유통학회지 12(2):130-134, 2005
  11. 권종호, 김경은. 상압조건의 마이크로파 공정과 현행방법에 의한 인삼근 유용 성분의 추출효율 비교 연구. 한국식품영양과학회지 28(3):586-592, 1999
  12. Ohno, N., Minura, T., Miura, N.N., Adachi, Y., Yadomae, T. Structure and biological activities of hypochlorite oxidized zymosan. Carbohydr, Polm., 44: 339-349, 2001 https://doi.org/10.1016/S0144-8617(00)00250-2
  13. 김현구, 한호석, 이기동, 김공환. 새송이버섯 추출물의 생리활성 효과. 한국식품영양과학회지 34(4):439-445, 2005 https://doi.org/10.3746/jkfn.2005.34.4.439
  14. Kim, S., Han, D., Park, M.H., Rhee, S. Measurement of superoxide dismutase-like activity of natural antioxidant. Bio. Sci. Biotech. Biochem, 59: 822-826, 1995 https://doi.org/10.1271/bbb.59.822
  15. 안명수, 김현정, 서미숙. 새송이버섯(Pleurotes eryngii) 부위별 추출물의 이화학적 특성. 한국식생활문화학회지 21(3):297-302, 2006
  16. 이승은, 성낙술, 방진기, 박춘근, 송진, 성정숙, 방경환. 한약재의 항산화 효과. 한국약용작물학회지(학술대회지) pp 203-204, 2001
  17. Nice, D., Robinson, D.S., Holden, M.A. Characterisation of a heat stable antioxidant co-purified with the superoxide dismutase activity from dried peas. Food Chem., 52: 393-397, 1995 https://doi.org/10.1016/0308-8146(95)93288-3
  18. 양희천, 홍재식, 이태규, 손희숙. 송이버섯의 polyphenol oxidase에 관하여. 한국농화학회지 26(1):41-46, 1983
  19. 안장수, 이규환, 한국산 식용버섯의 향기성분에 관한 연구(1) -송이버섯의 향기 성분. 한국식품영양과학회지 15(3):253-257, 1986
  20. Bendtzen, K. Iterleukin1, Iterleukin6 and tumor necrosis factor in infection, inflammation and immunity. Immunol. letters 19: 183-192, 1988 https://doi.org/10.1016/0165-2478(88)90141-1
  21. Ikekawa, T., Nakamishi, M., Uehara, N., Chihara, C., Fukuoka, F. Antitumor action of some basidomycetes especially phellinus. Linteus Gann. 59: 155-157, 1968