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Comparison of Ingredients and Antioxidant Activity of the Domestic Regional Wolfiporia extensa

국내 지역별 매립 복령의 성분 및 항산화 활성 비교

  • Choi, Su-Hee (College of Veterinary Medicine, Kyungpook National University) ;
  • Lee, Seung-Jin (College of Veterinary Medicine, Kyungpook National University) ;
  • Jo, Woo-Sik (Gyeongsangbuk-do Agricultural Research & Extension Services) ;
  • Choi, Jong-Woon (Gangwon-do Forest Development Institute) ;
  • Park, Seung-Chun (College of Veterinary Medicine, Kyungpook National University)
  • Received : 2016.03.08
  • Accepted : 2016.03.22
  • Published : 2016.03.31

Abstract

This study was conducted for comparison of ingredients, phytochemical compounds and antioxidant activity of Wofiporia extensa cultured in Gangwon-do, Gyeongsang-do, and Jeolla-do. Three contents of Wofiporia extensa were analyzed as oxygen (46~48%), carbon (38~39%), hydrogen (6.05~6.1%) and nitrogen (0.17~0.21%). The mineral contents of 50% ethanol Wofiporia extensa extracts were measured as sulfur (S) 145~149 ppm, Magnesium (Mg) 69~72 ppm, phosphorus (P) 122~154 ppm and calcium (Ca) 210.61~509.98 ppm. Wofiporia extensa from Gyeongsang-do (509.98 ppm) contained a significantly higher quantity of Ca than that from Gangwon-do (210.62 ppm) and Jeolla-do (223.88 ppm). In the gas chromatograph-mass spectrometry (GC-MS) analysis, oleic acid was identified in three 50% ethanol Wofiporia extensa extracts. In the 1,1-diphenyl-2-picrylhydrazyl (DPPH) and 2,2'-azino-bis-3-ethylbenzothiazoline-6-sulphonic acid (ABTS) assay for antioxidant activity, the $IC_{50}$ values of Wofiporia extensa cultured in Gangwon-do, Gyeongsang-do and Jeolla-do were calculated as 2.966 mg/mL, 23.03 mg/mL, and 4.16 mg/mL and 3.521 mg/mL, 12.17 mg/mL, and 7.40 mg/mL. In the ferric reducing antioxidant power (FRAP) assay, the $IC_{50}$ values of Wofiporia extensa cultured in Gangwon-do, Gyeongsang-do, Jeolla-do were 6.585 mg/mL, 19.06 mg/mL, and 18.97 mg/mL, respectively. In summary, Wofiporia extensa cultured in Gangwon-do had stronger antioxidant activity and higher concentration of oleic acid than that of Geyongsang-do and Jeolla-do. However, Wofiporia extensa cultured in Geyongsang-do contained a much higher concentration of Ca than that of Gangwon-do and Jeolla-do.

본 연구에서는 복령의 성장 환경조건이 다른 지역(강원도, 경상도, 전라도)별 복령의 성분 분석 및 생리활성 비교를 위해 연구하였다. 일반성분 분석 결과, oxygen 46~48%로 가장 많이 포함하고 있었고 다음으로 38~39%의 Carbon, 6.05~6.1% Hydrogen, 0.17~0.21% Nitrogen으로 나타났다. 그리고 3개도 복령 모두에서 sulphur 성분은 발견되지 않았다. 지역별 복령을 inductively coupled plasma-mass spectrometry(ICP) 분석으로 11종의 무기질을 분석한 결과 S는 145~149 ppm, Mg은 69~72 ppm, P는 122~154 ppm로 비슷한 함유량을 나타냈고, Ca은 경상도(509.98 ppm)가 강원도(210.61 ppm)와 전라도 (223.88 ppm)보다 약 2~2.35배보다 많이 함유하였다. GC-MS 분석 결과 모든 복령에서 oleic aid 계열의 지방산이 확인되었다. 50% 에탄올 복령 추출물의 DPPH와 ABTS radical 소거활성과 FRAP 방법을 실행하여 항산화 효과를 알아보았다. 복령 추출물 10mg/ml의 농도에서 강원도, 전라도 복령의 DPPH와 ABTS의 $IC_{50}$ 값은 강원도(3 mg/mL), 경상도(23.03 mg/mL), 전라도(4.16 mg/mL)와 강원도(3.52 mg/mL), 경상도(12.17 mg/mL), 전라도(7.40 mg/mL)로 계산되었다. FRAP에서 $IC_{50}$ 값은 강원도(6.59 mg/mL), 경상도(19.06 mg/mL), 전라도(18.97 mg/mL)로 계산되었다. 연구에 사용한 복령의 항산화 활성은 농도 의존적인 증가를 보였으며 강원도, 전라도, 경상도 복령의 순으로 항산화 활성이 나타났다.

Keywords

References

  1. Kang AS, Kang TS, Shon HR, Seo SM, Kang MS, Kim KP, Lee JS. Studies on improvement of artificial cultivation and antioxidative activity of Poria cocos. Kor J Mycol 1999;27:378-82.
  2. Saito H, Misaki A, Harada T. A comparison the structure of curdlan and pachyman. Agric Biol Chem 1968;32:1261-9. https://doi.org/10.1080/00021369.1968.10859213
  3. Lee KS, Lee MW, Lee JY. Studies on the antibacterial activity of Poria cocos. Kor J Mycol 1982;10:27-31.
  4. Hamuro J, Yamashita Y, Ohsaka Y, Maeda YY, Chihara G. Carboxymethylpachymaran, a new water soluble polysaccharide with marked antitumour activity. Nature 1971;233:486-8. https://doi.org/10.1038/233486a0
  5. Kwon MS, Chung SK, Choi JU, Song KS, Kang WW. Quality and functional characteristics of cultivated hoelen (Poria cocos Wolf) under the picking date. J Korean Soc Food Sci Nutr 1998;27:1034-40.
  6. Nukaya H, Yamashiro H, Fukazawa H, Ishida H, Tsuji K. Isolation of inhibitors of TPA-induced mouse ear edema form Hoelen, Poria cocos. Chem Pharm Bull (Tokyo). 1996;44:847-9. https://doi.org/10.1248/cpb.44.847
  7. Jang YA, Lee JT. The evaluation of antioxidant, anti-inflammatory, and anti-aging of extract solvent and Poria cocos by parts. Korean J Aesthet Cosmetol 2015;13:377-83.
  8. Park YW, Koo CD, Lee HY, Ryu SR, Kin TH, Cho YG. Relationship between macrofungi fruiting and environmental factors in Songnisan National Park. Korean J Environ Ecol 2010; 24:657-79.
  9. Song S, Min ES. Characteristics of the inorganic element contents for the Korean ginsengs from various soils of Keumsan. J Ginseng Res 2009;33:13-25. https://doi.org/10.5142/JGR.2009.33.1.013
  10. Choi OB, Cho DB, Kim DP. The components of cultivated Poria cocos. Korean J Food Nutr 1996;9:438-40.
  11. Ghazali N, Abdullah NA, Bakar AA, Mohamad NK. GC-MS analysis of some bioactive components in the root extract of Ixora coccinea linn. Int J Pharma Bio Sci 2014;5:197-203.
  12. Win DT. Oleic acid: the anti-breast cancer component in olive oil. AU J Technol 2005;9:75-8.
  13. Jegadeeswari P, Nishanthini A, Muthukumarasamy S, Mohan VR. GC-MS analysis of bioactive components of Aristolochia krysagathra (Aristolochiaceae). J Curr Chem Pharm Sci 2012; 2:226-32.
  14. Kapoor A, Mishra DN, Narasimhan B. Antibacterial and antifungal evaluation of synthesized 9, 12-octadecadienoic acid derivatives. Pharm Lett 2014;6:246-51.
  15. Cao G, Cai H, Cai B, Tu S. Effect of 5-hydroxymethylfurfural derived from processed Cornus officinalis on the prevention of high glucose-induced oxidative stress in human umbilical vein endothelial cells and its mechanism. Food Chem 2013;140: 273-9. https://doi.org/10.1016/j.foodchem.2012.11.143
  16. French MA, Sundram K, Clandinin MT. Cholesterolaemic effect of palmitic acid in relation to other dietary fatty acids. Asia Pac J Clin Nutr 2002;11 Suppl 7:S401-7. https://doi.org/10.1046/j.1440-6047.11.s.7.3.x
  17. Tai T, Akita Y, Kinoshita K, Koyama K, Takahashi K, Watanabe K. Anti-emetic principles of Poria cocos. Planta Med 1995; 61:527-30. https://doi.org/10.1055/s-2006-959363
  18. Tai T, Mikage M, Tsuda Y, Akahori A. Analytical studies on Poria cocos, II. The relationship between the triterpene contents and the color of the Sclerotium. Nat Med 1994;48:219-22.
  19. Kim JH, Jeong CH, Choi GN, Kwak JH, Choi SG, Heo HJ. Antioxidant and neuronal cell protective effects of methanol extract from Schizandra chinensis using an in vitro system. Korean J Food Sci Technol 2006;41:712-6. https://doi.org/10.1111/j.1365-2621.2005.01140.x

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  1. Comparison of Mineral Contents and Antioxidant Activities of Domestic and Chinese Wolfiporia extensa for Origin Identification vol.14, pp.4, 2016, https://doi.org/10.14480/JM.2016.14.4.232