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Effect of Black Garlic and Gaeddongssuk (Artemisia annua L.) Extracts on the Lipid Profile and Hepatic Antioxidant Enzyme Activities of Exercised Rats

흑마늘 및 개똥쑥 추출물의 급이가 강제운동 시 흰쥐의 체내 지질 성분 및 간조직의 항산화효소 활성에 미치는 영향

  • Kang, Jae-Ran (Dept. of Food Science and Nutrition and Institute of Agriculture and Life Sciences, Gyeongsang National University) ;
  • Lee, Soo-Jung (Dept. of Food Science and Nutrition and Institute of Agriculture and Life Sciences, Gyeongsang National University) ;
  • Hwang, Cho-Rong (Namhae Garlic Research Institute) ;
  • Kim, In-Sung (Dept. of Food Science and Nutrition and Institute of Agriculture and Life Sciences, Gyeongsang National University) ;
  • Sung, Nak-Ju (Dept. of Food Science and Nutrition and Institute of Agriculture and Life Sciences, Gyeongsang National University)
  • 강재란 (경상대학교 식품영양학과.농업생명과학연구원) ;
  • 이수정 (경상대학교 식품영양학과.농업생명과학연구원) ;
  • 황초롱 ((재)남해마늘연구소) ;
  • 김인성 (경상대학교 식품영양학과.농업생명과학연구원) ;
  • 성낙주 (경상대학교 식품영양학과.농업생명과학연구원)
  • Received : 2013.03.11
  • Accepted : 2013.05.14
  • Published : 2013.06.30

Abstract

To develop functional products based on black garlic, a black garlic extract (BG) of 7 brix, a gaeddongssuk extract (GS) of 0.7 brix and two types of mixtures (MBS-I, black garlic 7 brix : gaeddongssuk 0.7 brix; MBS-II, black garlic 14 brix : gaeddongssuk 1.4 brix, 93:7, v/v) were supplemented to rats training on a treadmill for 4 weeks. Body weight from the training did not decrease during the experimental period. Serum albumin content significantly increased in the groups fed an experimental diet compared to the control. The BUN content significantly decreased in BG and MBS-II groups compared to the control. AST and ALP activities significantly decreased in the groups fed an experimental diet compared to the control. Serum triglyceride and total cholesterol levels in MBS-I and MBS-II groups significantly decreased compared to the control. Lipid levels in the serum and liver tissue were not significantly different between the MBS-I and MBS-II groups. The lipid peroxide content in the serum and liver tissue was significantly reduced in the groups fed all extracts compared to the control; the serum and liver lipid contents was lowest in the MBS-I and MBS-II groups, respectively. Hepatic catalase activity in the GS and MBS groups increased by 1.8~2.3 times compared to the control. SOD and GSH-px activities significantly increased from treatment with the extracts by 1.3~1.5 times and 1.2~1.7 times, respectively. These results indicate that a mixture of BG and GS extracts has higher biological activity than a single supplementation of BG or GS extract. Therefore, the addition of gaeddongssuk to black garlic (MBS-I and MBS-II) is effective as a defense material against oxidative stress. MBS-I may be especially effective for its biological activities.

생리활성이 증강된 흑마늘 음료 개발을 위하여 흑마늘(BG), 개똥쑥(GS) 추출물 및 2종의 혼합물(MBS-I, 흑마늘 추출물 7 brix :개똥쑥 추출물 0.7 brix=93:7; MBS-II, 흑마늘 추출물 14 brix :개똥쑥 추출물 1.4 brix=93:7, v/v)을 트레드밀에 의해 강제운동 시킨 실험쥐에게 급이하였다. 실험 기간 동안 강제운동에 의한 체중감소는 없었다. 혈청 알부민 함량은 대조군에 비해 실험 식이 급이군에서 유의적으로 증가되었다. BUN 함량은 대조군에 비해 BG군과 MBS-II군에서 유의적으로 낮았다. AST 및 ALP 활성은 대조군에 비하여 실험 식이 급이군에서 유의적으로 감소하였다. 혈청의 중성지방 및 총 콜레스테롤 함량은 흑마늘과 개똥쑥의 혼합물 급이군에서 유의적인 감소를 보였다. 혈청과 간조직의 지질 함량은 MBS-I군과 MBS-II군 간에 유의차가 없었다. 혈청과 간조직에서 지질과산화물 함량은 대조군에 비하여 모든 시료 급이군에서 유의적으로 감소되었으며, 혈청에서는 MBS-I군, 간조직에서는 MBS-II군에서 가장 낮은 함량이었다. 간조직의 catalase 활성은 대조군에 비해 GS군과 혼합물 급이군에서 1.8~2.3배의 증가를 보였다. SOD 및 GSH-px 활성은 대조군에 비해 시료 급이군에서 각각 1.3~1.5배, 1.2~1.7배 정도 증가하였다. 전반적으로 혼합물 급이군이 흑마늘이나 개똥쑥의 단독 급이군에 비해 활성이 높아, 이들 혼합물은 체내 산화적 스트레스 완화에 효과적일 것으로 판단된다. 특히 MBS-I은 MBS-II에 비해 낮은 농도에 의해서도 생리활성의 증가에 효과적인 것으로 생각된다.

Keywords

References

  1. Droge W. 2002. Free radicals in the physiological control of cell function. Physiol Rev 82: 47-95.
  2. Kang WS, Kim JH, Park EJ, Yoon KR. 1998. Antioxidant property of turmeric (Curcumae Rhizoma) ethanol extract. Korean J Food Sci Technol 30: 266-271.
  3. Rim YS, Park YM, Park MS, Kim KY, Kim MJ, Choi YH. 2000. Screening of antioxidants and antimicrobial activity in native plants. Korean J Medicinal Crop Sci 8: 342-350.
  4. Ohno H, Yamashita H, Ookawara T, Saitoh D, Wakabayashi K, Taniguchi N. 1992. Training effects on concentrations of immunoreactive superoxide dismutase iso-enzymes in human plasma. Acta Physiol Scand 146: 291-292. https://doi.org/10.1111/j.1748-1716.1992.tb09421.x
  5. Reznick AZ, Witt E, Matsumoto M, Packer L. 1992. Vitamin E inhibits protein oxidation in skeletal muscle of resting and exercised rats. Biochem Biophys Res Commun 189:801-806. https://doi.org/10.1016/0006-291X(92)92273-Z
  6. Nagae S, Ushijima M, Hatono S, Imai J, Kasuga S, Matsuura H, Itakura Y, Higashi Y. 1994. Pharmacokinetics of the garlic compound S-allylcysteine. Planta Med 60: 214-217. https://doi.org/10.1055/s-2006-959461
  7. Ichikawa M, Yoshida J, Ide N, Sasaoka T, Yamaguchi H, Ono K. 2006. Tetrahydro-${\beta}$-carboline derivatives in aged garlic extract show antioxidant properties. J Nutr 136:726S-731S.
  8. Min JU, Kim YJ, Jung WS, Kim SH. 2011. The effect of the intake quantity of black garlic on fatigue recovery and total antioxidant capacity after maximal exercise. J Sport Leisure Studies 46: 1223-1233.
  9. Baek YH, Lee SH, Han MH, Choi YH, Kim SH, Kwak YS. 2012. Effects of black garlic supplementation and exercise on TBARS, HSP 70 and COX-2 expression after high-intensity exercise. J Life Sci 22: 772-777. https://doi.org/10.5352/JLS.2012.22.6.772
  10. Ryu JH, Lee SJ, Kim MJ, Shin JH, Kang SK, Cho KM, Sung NJ. 2011. Antioxidant and anticancer activities of Artemisia annua L. and determination of functional compounds. J Korean Soc Food Sci Nutr 40: 509-516. https://doi.org/10.3746/jkfn.2011.40.4.509
  11. Ryu JH, Kim RJ, Lee SJ, Kim IS, Lee HJ, Sung NJ. 2011. Nutritional properties and biological activities of Artemisia annua L.. J Korean Soc Food Sci Nutr 40: 163-170. https://doi.org/10.3746/jkfn.2011.40.2.163
  12. Klayman DL. 1985. Qinghaosu (artemisinin): an antimalarial drug from China. Science 228: 1049-1055. https://doi.org/10.1126/science.3887571
  13. Kang JR, Lee SJ, Hwang CR, Shin JH, Kang MJ, Sung NJ. 2012. Optimization of extraction conditions for mixing beverage development of black garlic and Gaeddongssuk by response surface methodology. J Agric Life Sci 46: 139-149.
  14. Dudley GA, Abraham WM, Terjung RL. 1982. Influence of exercise intensity and duration on biochemical adaptation in skeletal muscle. J Appl Phsiol 53: 844-850.
  15. Frings CS, Fendley TW, Dunn RT, Queen CA. 1972. Improved determination of total serum lipids by the sulfo-phospho-vanillin reaction. Clin Chem 18: 673-674.
  16. Friedewald WT, Levy RI, Fredrickson DS. 1972. Estimation of the concentration of low-density lipoprotein cholesterol in plasma, without use of the preparative ultracentrifuge. Clin Chem 18: 499-502.
  17. Cheung PC. 1998. Plasm and hepatic cholesterol levels and fecal neutral sterol excretion are altered in hamsters fed straw mushroom diets. J Nutr 128: 1512-1516.
  18. Folch J, Lees M, Sloane Stanley GH. 1957. A simple method for the isolation and purification of total lipids from animal tissues. J Biol Chem 226: 497-509.
  19. Yagi K. 1984. Assay for blood plasma or serum. In Method in Enzymology. Packer L, ed. Academic Press, Inc., New York, NY, USA. Vol 105, p 328-331.
  20. Uchiyama M, Mihara M. 1978. Determination of malonaldehyde precursor in tissues by thiobarbituric acid test. Anal Biochem 86: 271-278. https://doi.org/10.1016/0003-2697(78)90342-1
  21. Lowry OH, Resebrough NJ, Farr AL, Randall RJ. 1951. Protein measurement with the folin phenol reagent. J Biol Chem 193: 265-275.
  22. Abei H. 1974. Catalase in vitro methods. In Methods of Enzymatic Analysis. Bergmeyer HU, ed. Academic Press, Inc., New York, NY, USA. Vol 2, p 673-684.
  23. Marklund S, Marklund G. 1974. Involvement of the superoxide anion radical in the autoxidation of pyrogallol and a convenient assay for superoxide dismutase. Eur J Biochem 47: 469-474. https://doi.org/10.1111/j.1432-1033.1974.tb03714.x
  24. Flohe L, Wolfgang A, Gunzler WA. 1984. Assay of glutathione peroxidase. In Methods Enzymology. Packer L, ed. Academic Press, Inc., New York, NY, USA. Vol 105, p 114-121.
  25. Noh BK, Lee JK, Won YD, Park HJ, Lee SJ. 2011. The antioxidative effect of black garlic extract on paraquat-induced oxidative stress in ICR mice. Korean J Food Sci Technol 43: 760-765. https://doi.org/10.9721/KJFST.2011.43.6.760
  26. Kang MJ, Lee SJ, Shin JH, Kang SK, Kim JG, Sung NJ. 2008. Effect of garlic with different processing on lipid metabolism in 1% cholesterol fed rats. J Korean Soc Food Sci Nutr 37: 162-169. https://doi.org/10.3746/jkfn.2008.37.2.162
  27. Lee SJ, Zhang GF, Sung NJ. 2011. Hypolipidemic and hypoglycemic effects of Orostachys japonicus A. Berger extracts in streptozotocin-induced diabetic rats. Nutr Res Pract 5: 301-307. https://doi.org/10.4162/nrp.2011.5.4.301
  28. Han HK, Yoon SJ, Kim GH. 2009. Effects of compositae plants on plasma glucose and lipid level in streptozotocin induced diabetic rats. J Korean Soc Food Sci Nutr 38:674-682. https://doi.org/10.3746/jkfn.2009.38.6.674
  29. Koh JB, Kim JY. 2002. Effect of Okcheonsan on blood glucose, lipid and protein levels in streptozotocin-induced diabetic female rats. J Korean Soc Food Sci Nutr 31: 284-289. https://doi.org/10.3746/jkfn.2002.31.2.284
  30. Kim SM, Ko JH, Shim EJ, Lee DH, Cho DJ, Kim DH, Min KS, Yoo KY. 2008. Serum creatinine, blood urea nitrogen change in low birth weight infants during their first days of life. Korean J Perinatol 19: 181-189.
  31. Kang YJ, Kim HJ, Han JS. 2011. Effects of Ishige okamurae extract supplement on blood glucose and antioxidant systems in type 2 diabetic patients. J Korean Soc Food Sci Nutr 40: 1726-1733. https://doi.org/10.3746/jkfn.2011.40.12.1726
  32. Lee SJ, Sung DM, Shin JH, Sung NJ. 2010. Effects of functional extracts made from fermented plants on serum glucose and lipids level in streptozotocin-induced diabetic rats. J Food Sci Nutr 15: 167-175. https://doi.org/10.3746/jfn.2010.15.3.167
  33. Kim HK. 2007. Effect on the change in blood lipids, blood pressure and GOT, GPT of combined exercise training in the older men during 12 weeks. Korea J Sports Sci 16: 643-651.
  34. Jin YS, Kim MJ, Park JY, Kim YK, Lee HJ. 1999. The effect of exercise pattern and antioxidant supplement on antioxidant enzymes and total antioxidant status. Korean J Physical Edu 38: 451-460.
  35. Ban HN. 2010. The effects of circuit training and black garlic intake on health related fitness, lipid profiles, c-reactive protein and bone density in middle-aged women. MS Thesis. Pusan National University, Busan, Korea.
  36. Yeh YY, Yeh SM. 1994. Garlic reduces plasma lipids by inhibiting hepatic cholesterol and triacylglycerol synthesis. Lipids 29: 189-193. https://doi.org/10.1007/BF02536728
  37. Shin JH, Choi DJ, Lee SJ, Cha JY, Kim JG, Sung NJ. 2008. Changes of physicochemical components and antioxidant activity of garlic during its processing. J Life Sci 18: 1123-1131. https://doi.org/10.5352/JLS.2008.18.8.1123
  38. Kim SH, Baek YH. 2011. Effects of aerobic exercise and black garlic intake on blood lipids, lipid peroxidation and BAP in rats. J Life Sci 21: 1025-1031. https://doi.org/10.5352/JLS.2011.21.7.1025
  39. Thompson PD, Buchner D, Pina IL, Balady GJ, Williams MA, Marcus BH, Berra K, Blair SN, Costa F, Franklin B, Fletcher GF, Gordon NF, Pate RR, Rodriguez BL, Yancey AK, Wenger NK. 2003. Exercise and physical activity in the prevention and treatment of atherosclerotic cardiovascular disease: a statement from the Council on Clinical Cardiology (Subcommittee on Exercise, Rehabilitation, and Prevention) and the Council on Nutrition, Physical Activity, and Metabolism (Subcommittee on Physical Activity). Circulation 107: 3109-3116. https://doi.org/10.1161/01.CIR.0000075572.40158.77
  40. Cha BY. 2001. Drug therapy of dyslipidemia. J Korean Med Assoc 44: 772-782.
  41. Aouadi R, Aouidet A, Elkadhi A, Ben Rayana MC, Jaafoura H, Tritar B, Nagati K. 2000. Effect of fresh garlic (Allium sativum) on lipid metabolism in male rats. Nutr Res 20:273-280. https://doi.org/10.1016/S0271-5317(99)00159-1
  42. Lee SJ, Kwon MH, Kwon HJ, Shin JH, Kang MJ, Kim SH, Sung NJ. 2013. Effect of red garlic-composites on the fecal lipid level and hepatic antioxidant enzyme activity in rats fed a high fat-cholesterol diet. J Korean Soc Food Sci Nutr 42: 17-25. https://doi.org/10.3746/jkfn.2013.42.1.017
  43. Goldfarb AH, Sen CK. 1994. Antioxidant supplementation and the control of oxygen toxicity during exercise. In Exercise and Oxygen Toxicity. Sen CK, Packer L, Hanninen O, eds. Elsevier Science, Amsterdam, Netherlands. p 163-189.
  44. Kwon T, Ryu S, Jang W, Lee S. 2002. Effects of green tea polyphenol ingestion on blood lipids, MDA and SOD in rats. Korean J Exerc Nutr 6: 85-88.
  45. Baek YH, Lee SH. 2010. The effect of aerobic exercise and allium tuberosum intake on blood lipids, MDA and antioxidant enzyme in rats. J Life Sci 20: 245-252. https://doi.org/10.5352/JLS.2010.20.2.245
  46. Haenen GRMM, Paquay JBG, Korthouwer REM, Bast A. 1997. Peroxynitrite scavenging by flavonoids. Biochem Biophy Res Commun 236: 591-593. https://doi.org/10.1006/bbrc.1997.7016
  47. Yoon GA. 2007. Antioxidant effect of garlic supplement against exercise-induced oxidative stress in rats. Korean J Nutr 40: 701-707.
  48. Duda G, Suliburska J, Pupek-Musialik D. 2008. Effects of shorts-term garlic supplementation on lipid metabolism and antioxidant status in hypertensive adults. Pharmacol Rep 60: 163-170.
  49. Brisibe EA, Umoren UE, Brisibe F, Magalhäes PM, Ferreira JFS, Luthria D, Wu X, Prior RL. 2009. Nutritional characterisation and antioxidant capacity of different tissues of Artemisia annua L. Food Chem 115: 1240-1246. https://doi.org/10.1016/j.foodchem.2009.01.033
  50. Jenkins RR. 1988. Free radical chemistry. Relationship to exercise. Sports Med 5: 156-170. https://doi.org/10.2165/00007256-198805030-00003
  51. Parker L. 1998. Oxidants, antioxidant nutrients and the athlete. J Sports Sci 15: 353-363.
  52. Sen CK, Atalay M, Hänninen O. 1994. Exercise-induced oxidative stress: glutathione supplementation and deficiency. J Appl Physiol 77: 2177-2187.

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