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Effect of Dietary Supplementation of Quercetin on Oxidative Stability of Chicken Thigh

Quercetin의 급여가 육계 다리육의 산화 안정성에 미치는 영향

  • 장애라 (농촌진흥청 국립축산과학원) ;
  • 박정은 (농촌진흥청 국립축산과학원) ;
  • 김상호 (농촌진흥청 국립축산과학원) ;
  • 채현석 (농촌진흥청 국립축산과학원) ;
  • 함준상 (농촌진흥청 국립축산과학원) ;
  • 오미화 (농촌진흥청 국립축산과학원) ;
  • 김현욱 (농촌진흥청 국립축산과학원) ;
  • 설국환 (농촌진흥청 국립축산과학원) ;
  • 조수현 (농촌진흥청 국립축산과학원) ;
  • 김동훈 (농촌진흥청 국립축산과학원)
  • Received : 2010.11.09
  • Accepted : 2010.12.08
  • Published : 2010.12.31

Abstract

This study was carried out to determine the effect of dietary supplementation of quercetin and methoxylated quercetin extracted from onions on oxidation of chicken thigh during cold storage. For 35 days, 1-day-old 320 broiler chicks (Ross) were divided into 8 groups and supplemented the diet; basal diet only (T1), T1 with antibiotics (T2), vitamin E 20 IU (T3), vitamin E 200 IU (T4), quercetin 20 ppm (T5), quercetin 200 ppm (T6), methoxylated quercetin 20 ppm (T7), methoxylated quercetin 200 ppm (T8). After slaughtering the broilers, thigh meats were collected and analyzed the oxidation stability during storage at $4^{\circ}C$ for 7 days. Volatile basic nitrogen (VBN) was ranged from 10.98~15.37 mg% until day 3 and quercetin 20 ppm (T5) significantly reduced (p<0.05) the VBN value of thigh as much as antibiotics treatment group (T2). The supplementation of quercetin at a 200 ppm level significantly reduced 2-thiobarbituric acid reactive substances value when compared with the control. Supplementation of 20 ppm quercetin also affected fatty acid composition of chicken thigh and resulted in increase of C18:1w9 and decrease of C18:2w6 on day 3. In microbes of chicken thigh during storage, supplementation of 20 ppm quercetin significantly reduced total microbes compare to control on day 7 (p<0.05). There was no effect on the number of coliforms in thigh with quercetin diet. From these results, the dietary supplementation of 20 ppm of quercetin may have effects on enhancing oxidation stability.

본 연구는 quercetin의 급여가 닭고기 다리육의 지방산패 억제 효과에 미치는 영향을 구명하고자 실시하였다. 1일령 Ross 320마리 육계 병아리를 8처리군으로 나누어 대조군(T1), 항생제 처리군(T2), 비타민 E 20 ppm 처리군(T3), 비타민 E 200 ppm 처리군(T4), quercetin 20 ppm(T5), quercetin 200 ppm(T6), methoxylated quercetin 20ppm(T7), methoxylated quercetin 200 ppm(T8) 처리구로 나누어 35일간 급여하였다. 급여 후 36일째 도계하여 다리육만 분리하였고, 0, 3, 7일 냉장 저장 기간 동안의 단백질 변패도(VBN), 지방산패도(TBARS), 지방산 조성 변화, 미생물학적 특성을 조사하였다. 저장 3일에는 대조군보다 항생제처리군(T2), 비타민 E처리군(T3, T4)와 quercetin 20 ppm 처리군(T5)에서 유의적인 감소를 나타내어 quercetin 20 ppm의 높은 단백질 산패 억제 효과를 보였다(P<0.05). 도계 직후 다리살의 지방산패도는 대조군보다 비타민 E 200 IU 급여한 T4에서 가장 낮은 값을 나타내었으며, 이 값은 항생제 처리구인 T2, quercetin 200 ppm 첨가구인 T5와 유의적인 차이를 나타내지 않아, 비타민 E 200 IU와 유사한 항산화력을 나타냄을 보여주었다(p<0.05). 그러나 저장 7일에 quercetin 20 ppm 처리군(T5)과 200 ppm 처리군(T6)은 항생제 처리군보다도 낮은 총 균수를 나타내어 높은 항균력을 나타내었다(P<0.05). 대장균군은 도계 직후부터 냉장 저장 7일까지 quercetin 처리에 의한 유의적인 감소 효과는 없었다.

Keywords

References

  1. Brenes A, Roura E 2010 Essential oils on poultry nutrition: Main effects and modes of action. Anim Feed Sci Technol 158:1-14. https://doi.org/10.1016/j.anifeedsci.2010.03.007
  2. Brewer MS, Ikins WG, Harbers CAZ 1992 TBA values, sensory characteristics, and volatiles in ground pork during longterm frozen storage: Effects of packaging. J Food Sci 57: 558-563. https://doi.org/10.1111/j.1365-2621.1992.tb08042.x
  3. Cho SK, Jo C, Jung S, Kim MK, Oh HM, Lee BD, Lee SK 2010 Effects of dietary quercetin on the feed utilization, blood parameters, and meat quality in Korean Native Goats. J Anim Sci Technol 52:297-304. https://doi.org/10.5187/JAST.2010.52.4.297
  4. Farombi EO, Onyema OO 2006 Monosodium glutamate-induced oxidative damage and genotoxicity in the rat : Modulatory role of vitamin C, vitamin E and quercetin. Hum Exp Toxicol 25:251-259. https://doi.org/10.1191/0960327106ht621oa
  5. Folch J, Lees M, Stanley GHS 1957 A simple method for the isolation and purification of total lipids from animal tissues. J Biol Chem 226:497-509.
  6. Govaris A, Florou-Panerib P, Botsogloub E, Giannenasb I, Amvrosiadisc I, Botsogloub N 2007. The inhibitory potential of feed supplementation with rosemary and/or $\alpha$-tocopheryl acetate on microbial growth and lipid oxidation of turkey breast during refrigerated storage. LWT - Food Sci Technol 40(2): 331-337. https://doi.org/10.1016/j.lwt.2005.10.006
  7. Gowda NKS, Malathi V, Suganthi RU 2004 Effect of some chemical and herbal compounds on growth of Aspergillus parasiticus and aflatoxin production. Anim Feed Sci Technol 116:281-291. https://doi.org/10.1016/j.anifeedsci.2004.02.008
  8. Hernández NE, Tereschuk ML, Abdala LR 2000 Antimicrobial activity of flavonoids in medicinal plants from Tafí del Valle (Tucuman, Argentina). J Ethnopharm 73:317-322. https://doi.org/10.1016/S0378-8741(00)00295-6
  9. Hwang EK 2009 Effect of quercetin supplement on major biochemical parameters in sera of rats fed high fat and high cholesterol diet. J Vet Clin 26(5):413-418.
  10. Jang A, Liu XD, Shin MH, Lee BD, Lee SK, Lee JH, Jo C 2008 Antioxidative potential of raw breast meat from broiler chicks fed a dietary medicinal herb extract mix. Poultry Sci 87:2382-2389. https://doi.org/10.3382/ps.2007-00506
  11. Jin EY, Park YS, Jang JK, Chung MS, Park H, Shim KS, Choi YJ 2009 Extraction of quercetin and its glucosides from onion edible part using solvent extractoin and various extraction assisting methods. Food Eng Prog 13:147-153.
  12. Lee Y, Lee S, Kim BG, Kang K, Ahn JH, Chong Y, Shin SY, Park JC, Lee YH, Lim Y 2010 Rhamnetin production based on the rational design of the poplar O-methyltransferase enzyme and its biological activities. ChemBioChem DOI:10. 1002/cbic.200. https://doi.org/10.1002/cbic.200
  13. Leighton T, Ginther C, Fluss L, Harter W, Cansado J, Notario V 1992 Molecular characterization of quercetin and quercetin glycosides in Allium vegetables; Phenolic compounds in foods and their effects on health 2. Am Chem Soc Sym Ser 507:220-238.
  14. MAF (Ministry of Agriculture and Forestry) 2007 Statistics of agriculture and forestry. pp. 325.
  15. Maraschiello C, Sarraga C, Regueior G 1999 Glutathione peroxidase activity, TBARS, and $\alpha$-tocopherol in meat from chickens fed different diets. J Agric Food Chem 47:867-972. https://doi.org/10.1021/jf980824o
  16. Morrison WR, Smith LM 1964 Preparation of fatty acid methyl esters and dimethylacetals from lipids with boron fluoridemethanol. J Lipid Res 5:600.
  17. Nishino C, Enoki N, Tawata S, Mori A, Kobayashi K, Fukushima M 1987 Antibacterial activity of flavonoids against S. epidermidis, a skin bacterium. Agric Biolog Chem 51:139- 143. https://doi.org/10.1271/bbb1961.51.139
  18. O'Neill LM, Galvin K, Morrissey PA, Buckley DJ 1999 Effect of carnosine, salt and dietary vitamine E on the oxidative stability of chicken meat. Meat Sci 52(1):89-94. https://doi.org/10.1016/S0309-1740(98)00152-1
  19. Reishe DW, Lillard DA. Eitenmiller PR 1998 Antioxidants in food lipids. In: Ahoh CC and Min DB, Editors, Chemistry Nutrition and Biotechnology, Marcel Dekker, New York, pp. 423-448.
  20. SAS 1995 SAS/STAT Software for PC. Release 6.11. SAS Institute, Cary, NC, USA.
  21. Tang SZ, Kerry JP, Sheehan D, Buckley DJ, Morrissey PA. 2001 Antioxidative effect of dietary tea catechins on lipid oxidation of long-term frozen stored chicken meat. Meat Sci 57(3):331-336. https://doi.org/10.1016/S0309-1740(00)00112-1
  22. Vichi S, Zitterl-Eglseer K, Jugl M, Franz Ch 2001 Determination of the presence of antioxidants deriving from sage and oregano extracts added to animal fat by means of assessment of the radical scavenging capacity by photochemiluminescence analysis. Nahrung/Food 45(2):101-104. https://doi.org/10.1002/1521-3803(20010401)45:2<101::AID-FOOD101>3.0.CO;2-W
  23. Vincent CJB, Ashwin AD, Hester VDW, Ilja CWA, Siegfried W, Gerrit MA, Ivonne MC, MR, Jaap K, Peter CHH 2005 Tissue distribution of quercetin in rats and pigs. J Nutr 135: 1617-1618.
  24. Young JF, Stagsted J, Jensen SK, Karlsson AH, Henckel P 2003 Ascorbic acid, α-tocopherol, and oregano supplements reduce stress-induced deterioration of chicken meat quality. Poultry Sci 82:1343-1351. https://doi.org/10.1093/ps/82.8.1343
  25. 高坂和久1975 肉製品の鮮度保持と測定. 食品工業18:105-111.
  26. 안병진 장기 김성호 조남철 국길 최봉환 선상수 2001 양파 함유사료를 급여한 오리고기의 저장 기간 중 이화학적 특성 변화. 한국가금학회지 28(3):289-295.
  27. 안종남 채현석 유영모 유효순 함준상 정석근 김광엽 장애라 2008 감마선처리에 따른 닭고기 가슴육의 냉장 저장 중 품질특성. 한국축산식품학회지 28(3):289-294.
  28. 최준호 장애라 이봉덕 류현덕 송현파 조철훈 2008 복합 한약재 추출물 첨가가 돈육 패티의 저온저장 중 항산화 및 항균성에 미치는 영향 한국축산식품학회지 28(2):122-129. https://doi.org/10.5851/kosfa.2008.28.2.122

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