Scientia Agricultura Sinica ›› 2012, Vol. 45 ›› Issue (1): 135-141.doi: 10.3864/j.issn.0578-1752.2012.01.016

• STORAGE·FRESH-KEEPING·PROCESSING • Previous Articles     Next Articles

EPR Spectroscopy Studies on DPPH Free Radical Scavenging Activity of Dry Red Wines and Their Relationship with Total Polyphenols Content

 HU  Bo-Ran, WEN  Wen, YIN  Shu-Zhen, ZHU  Yong, ZHANG  Feng-Min   

  1. 1.扬州大学食品科学与工程学院, 江苏扬州 225127
    2.扬州大学生物科学与技术学院,江苏扬州 225009
    3.扬州大学测试中心,江苏扬州 225009
  • Received:2011-07-04 Online:2012-01-01 Published:2011-11-09

Abstract: 【Objective】 The purpose of this study was to compare the antioxidant capacities of dry red wines and analyze their relationship with total polyphenol content. 【Method】 The antioxidant properties of five monoverietal dry red wine samples (from the Shacheng viticultural region of China,) were investigated by Electron Paramagnetic Resonance (EPR) spectroscopy using 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical as oxidants, and their total polyphenols content were analyzed by FC method. 【Result】Generally, the dry red wines which were diluted 200 folds showed high antioxidant in 5 min reaction time, the DPPH scavenging rate of Cabernet was 72.31% which was the highest, Ruby Cabernet 72.23%, Merlot 68.31%, Shiraz 59.03% and Zinfandel 56.34%;the total polyphenols content of Merlot was the highest at 3 044.43 mg•L-1, Ruby Cabernet 3 026.92 mg•L-1, Cabernet 2 886.81 mg•L-1, Shiraz 2 085.51 mg•L-1 and Zinfandel 1 647.64 mg•L-1. 【Conclusion】 It is an efficient method in detecting the antioxidant capacities of wines by EPR method. The DPPH scanvenging activity from dry red wines showed obviously difference. There was a linear correlation between the antioxidant activities and the total polyphenols content, y=0.01116x+ 37.327665, rGAE/DPPHequiv=0.91753.

Key words: dry red wines, antioxidants, DPPH , total polyphenols, EPR

[1]Jackson R S. Wine Science, London: Elsevier, 2008: 686-706.

[2]Avellone G, Di Garbo V, Campisi D, De Simone R, Raneli G, Scaglione R, Licata G. Effects of moderate Sicilian red wine consumption on inflammatory biomarkers of atherosclerosis. European Joural of Clinical Nutrition, 2005, 60(1): 41-47.

[3]Mudnic I, Modun D; Rastija V, Vukovic J, Brizic I, Katalinic V, Kozina B, Medic-Saric M, Boban M. Antioxidative and vasodilatory effects of phenolic acids in wine. Food Chemistry, 2010, 119(3): 1205-1210.

[4]López-Vélez M, Martínez-Martínez F, Valle-Ribes C D. The Study of phenolic compounds as natural antioxidants in wine. Critical Reviews in Food Science and Nutrition, 2003, 43(2): 233-244.

[5]Makris D P, Psarra E, Kallithraka S, Kefalas P. The effect of polyphenolic composition as related to antioxidant capacity in white wines. Food Research International, 2003, 36(8): 805-814.

[6]Rodrigo R, Rivera G. Renal damage mediated by oxidative stress: a hypothesis of protective effects of red wine. Free Radical Biology and Medicine, 2002, 33(3): 409-422.

[7]Arnao M B. Some methodological problems in the determination of antioxidant activity using chromogen radicals: a practical case. Trends in Food Science & Technology, 2000, 11(11): 419-421.

[8]Fogliano V, Verde V, Randazzo G, Ritieni A. Method for measuring antioxidant activity and its application to monitoring the antioxidant capacity of wines. Journal of Agricultural and Food Chemistry, 1999, 47(3): 1035-1040.

[9]Brainina K Z, Ivanova A V, Sharafutdinova E N, Lozovskaya E L, Shkarina E I. Potentiometry as a method of antioxidant activity investigation. Talanta, 2007, 71(1): 13-18.

[10]Antolovich M, Prenzler P D, Patsalides E, McDonald S, Robards K. Methods for testing antioxidant activity. Analyst, 2002, 127(1): 183-198.

[11]Geleti? I V, Balavoine G G, Efimov O N, Kulikova V S. The determination of total concentration and activity of antioxidants in foodstuffs. Russian Journal of Bioorganic Chemistry, 2002, 28(6): 501-514.

[12]Noipa T, Srijaranai S, Tuntulani T, Ngeonate W. New approach for evaluation of the antioxidant capacity based on scavenging DPPH free radical in micelle systems. Food Research International, 2011, 3(44):798-806.

[13]Garcia-Alonso M, Rimbach G, Sasai M, Nakahara M, Matsugo S, Uchida Y, Rivas-Gonzalo J C, Pascual-Teresa S D. Electron spin resonance spectroscopy studies on the free radical scavenging activity of wine anthocyanins and pyranoanthocyanins. Molecular Nutrition & Food Research, 2005, 49(12): 1112-1119.

[14]Ukeda H, Adachi Y, Sawamura M. Flow injection analysis of DPPH radical based on electron spin resonance. Talanta, 2002, 58(6): 1279-1283.

[15]Brezová V, Polovka M, Staško A. The influence of additives on beer stability investigated by EPR spectroscopy. Spectrochimica Acta Part A, 2002, 58: 1279-1291.

[16]Polovka M, Brezov V, Stasko A. Antioxidant properties of tea investigated by EPR spectroscopy. Biophysical Chemistry, 2003, 106(1): 39-56.

[17]Staško A, Polovka M, Brezová V, Biskupi? S, Mal??k F. Tokay wines as scavengers of free radicals (an EPR study). Food Chemistry, 2006, 96(2): 185-196.

[18]Espinoza M, Olea-Azar C, Speisky H, Rodríguez J. Determination of reactions between free radicals and selected Chilean wines and transition metals by ESR and UV-vis technique. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2009, 71(5): 1638-1643.

[19]Gao L, Chu Q, Ye J. Determination of trans-Resveratrol in wines, herbs and health food by capillary electrophoresis with electrochemical detection. Food Chemistry, 2002, 78(2): 255-260.

[20]Staško A, Brezová V, Mazúr M, ?ertík M, Kaliňák M, Gescheidt G. A comparative study on the antioxidant properties of Slovakian and Austrian wines. LWT - Food Science and Technology, 2008, 41(10): 2126-2135.

[21]Puškaš V, Jovi? S, Antov M, Tumbas V. Antioxidative activity of red wine with increased share of phenolic compounds from solid parts of grape. Chemical Industry & Chemical Engineering Quarterly, 2010, 16(1):65-71.

[22]Fang F, Li J, Zhang P, Tang K, Wang W, Pan Q, Huang W. Effects of grape variety, harvest date, fermentation vessel and wine ageing on flavonoid concentration in red wines. Food Research International, 2008, 41(1): 53-60.

[23]Li H, Wang X, Li Y, Li P, Wang H. Polyphenolic compounds and antioxidant properties of selected China wines. Food Chemistry, 2009, 112(2): 454-460.

[24]Rapisarda P, Tomaino A, Lo Cascio R, Bonina F, De Pasquale A, Saija A. Antioxidant effectiveness as influenced by phenolic content of fresh orange juices. Journal of Agricultural and Food Chemistry, 1999, 47(11): 4718-4723.

[25]Fernández-Pachón M S, Villaño D, García-Parrilla M C, Troncoso A M. Antioxidant activity of wines and relation with their polyphenolic composition. Analytica Chimica Acta, 2004, 513:113-118.

[26]Rice-Evans C A, Miller N J, Paganga G. Structure-antioxidant activity relationships of flavonoids and phenolic acids. Free Radical Biology and Medicine, 1996, 20(7): 933-956.

[27]Makris D P, Kallithraka S, Kefalas P. Flavonols in grapes, grape products and wines: Burden, profile and influential parameters. Journal of Food Composition and Analysis, 2006, 19(5): 396-404.
[1] SUN XiaoFang,LIU Min,PAN TingMin,GONG GuoShu. Mating Type and Fertility of Cochliobolus heterostrophus Causing Southern Corn Leaf Blight in Sichuan Province [J]. Scientia Agricultura Sinica, 2021, 54(12): 2547-2558.
[2] HUANG MiaoMiao,CHEN WanQuan,CAO ShiQin,SUN ZhenYu,JIA QiuZhen,GAO Li,LIU Bo,LIU TaiGuo. Surveillance and Genetic Diversity Analysis of Puccinia striiformis f. sp. tritici in Gansu and Qinghai Provinces [J]. Scientia Agricultura Sinica, 2020, 53(18): 3693-3706.
[3] JiaHao WANG,YaQian DUAN,LanChun NIE,LiYan SONG,WenSheng ZHAO,SiYu FANG,JiaTeng ZHAO. Factor Analysis and Comprehensive Evaluation of the Fruit Quality of ‘Yangjiaocui’ Melons [J]. Scientia Agricultura Sinica, 2019, 52(24): 4582-4591.
[4] DING YiBo,XU JiaTun,LI Liang,CAI HuanJie,SUN YaNan. Analysis of Drought Characteristics and Its Trend Change in Shaanxi Province Based on SPEI and MI [J]. Scientia Agricultura Sinica, 2019, 52(23): 4296-4308.
[5] CHEN QingHua,ZENG Juan,YANG Ling,JIA Yong,LI Qing,FENG ChuanHong,CHEN XiaoJuan,HU RongPing. The Structure of Day-Age of Male Spodoptera litura Moths by Sex Pheromone Trapping in the Field [J]. Scientia Agricultura Sinica, 2019, 52(21): 3819-3827.
[6] SHI Lei, LI YunLei, SUN YanYan, CHEN JiLan. Research Progress on the Regulatory Mechanism of Lighting Schedule Affecting the Reproduction Performance of Chickens [J]. Scientia Agricultura Sinica, 2018, 51(16): 3191-3200.
[7] ZHANG YongLing, JIANG MengZhou, YU PeiShi, YAO Qing, YANG BaoJun, TANG Jian. Agricultural Pest Identification Based on Multi-Feature Fusion and Sparse Representation [J]. Scientia Agricultura Sinica, 2018, 51(11): 2084-2093.
[8] ZHOU JingJing, MA HongBin, ZHOU Yao, WANG Li, NIU JiaWei, SHEN Yan, XU DongMei. Effects of Different Rotational Grazing Ways on Grazing Characteristics, Weight and Reproductive Performance of Tan Sheep in Desert Steppe [J]. Scientia Agricultura Sinica, 2017, 50(8): 1525-1534.
[9] LIU YanYang, MEI HongXian, DU ZhenWei, WU Ke, ZHENG YongZhan, CUI XiangHua, ZHENG Lei. Construction of Core Collection of Sesame Based on Phenotype and Molecular Markers [J]. Scientia Agricultura Sinica, 2017, 50(13): 2433-2441.
[10] ZHANG Min-xiu, XIE Zhi-xun, DENG Xian-wen, XIE Zhi-qin, XIE Li-ji, HUANG Li, HUANG Jiao-ling . Establishment of a GeXP Analyser-Based Multiplex PCR Assay for Detection of Eight Reproductive and Respiratory Swine Pathogens [J]. Scientia Agricultura Sinica, 2015, 48(24): 4996-5006.
[11] CONG Lin, JIANG Xuan-zhao, YANG Wen-jia, XU Kang-kang, DOU Wei, RAN Chun, WANG Jin-jun. Identification of Ecdysone Synthesis Pathway Genes and Analysis on the Impact of Food Deprivation on Larvae Development of Bactrocera dorsalis Hendel [J]. Scientia Agricultura Sinica, 2015, 48(22): 4469-4482.
[12] YANG Hai-ming, JU Xiao-jun, WANG Zhi-yue, DING Jia-tong, WANG Xin-xi, CHEN Yong-hua. Effects of Illumination Time and Ambient Temperature on Reproductive System and Gene Expression and Secretion of Hormone in Breeding Geese [J]. Scientia Agricultura Sinica, 2015, 48(13): 2635-2644.
[13] YANG Li-Hong-1, 2 , HUANG Hai-2, WANG Jin-Jun-2. Effect of Exposure to Heat Stress on Survival and Fecundity of Panonychus citri [J]. Scientia Agricultura Sinica, 2014, 47(4): 693-701.
[14] WANG Yu-Hong, LI Bao-Tong, TANG Li-Mei. Effects of Copper Stress on the Growth and Reproduction of Ostrinia furnacalis Guenée [J]. Scientia Agricultura Sinica, 2014, 47(3): 473-481.
[15] JIA Zhen-Wei. Recent Advances in Research of the Expression and Role of C-Type Natriuretic Peptide as a Regulator in Control of Animal Ovary Performance [J]. Scientia Agricultura Sinica, 2014, 47(2): 403-410.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!