Antioxidant Activities and Several Bioactive Substances of Different Extracts of Vitis vinifera L.
الموضوعات :M. Babashpour-Asl 1 , M. Piryaei 2
1 - Assistant Professor of the Department of Horticulture, Maragheh Branch, Islamic Azad University, Maragheh, Iran.
2 - Assistant Professor of the Department of Chemistry, Faculty of Science, University of Maragheh, Maragheh, Iran.
الکلمات المفتاحية: Anthocyanin, Ascorbic Acid, Flavonoids, Grape, Total Phenols,
ملخص المقالة :
This study has aimed to determine the amount of flavonoids, anthocyanins, total phenolic compounds, ascorbic acid and antioxidant activity of the grape in the polar and nonpolar sub-fractions of methanolic extracts with two extraction methods, maceration and ultrasonic. The phenolic compounds content and antioxidant activity of selected grape (Vitis vinifera L. "Red Seedless") from Maragheh region, East Azerbaijan (Iran) were investigated with a view to their exploitation as a potential source of natural antioxidants. Antioxidant activities of the samples were determined by three testing systems namely DPPH, β-carotene/linoleic acid and reducing power assays. In the DPPH system, the highest radical scavenging activity was observed by the polar sub-fraction of the methanolic extract in frozen fruits (IC50 = 26.34 ± 6.5 μg/ml). In order to evaluate the efficiency of different methods for the extraction of the main polyphenols in grape, two methods were tested and compared. The results showed that the maceration method is better method as compared to the ultrasonic method. These advantages are visible on extracting of the flavonoids, anthocyanin, total phenolic, ascorbic acid contents and antioxidant capacity. Our findings demonstrate that the methanolic extracts of frozen and dried fruits of Vitis vinifera may be suggested as a strong potential source of natural antioxidant.
Anon. (1997). FAO statistics no. 51. Food and Agriculture Organization of the United Nations, Rome (p.151).
Bagchi, D., Bagchi, M., Stohs, S. J., Das, D. K., Ray, S. D., Kuszynski, C. A, Joshi, S. S. & Pruess, H. G. (2000). Free radicals and grape seed proanthocyanidin extract: importance in human health and disease prevention. Toxicology, 148, 187-197.
Cheng, G. W. & Breen, P. J. (1991). Activity of phenylalanine ammonialyase (PAL) and concentrations of anthocyanins and phenolics in developing strawberry fruit. Journal of the American Society for Horticultural Science, 116, 865-869.
Choi, C. W., Kim, S.C. & Hwang, S. S. (2002). Antioxidant activity and free radical scavenging capacity between Korean medicinal plants and flavonoids by assay-guided comparison. Journal of Plant Sciences, 163, 1161-1168.
Dimitrios, B. (2006). Sources of natural phenolic antioxidants. Trends in Food Science & Technology 17, 505-512.
Dourtoglou, V. G., Mamalos, A. & Makris, D. P. (2006). Storage of olives (Olea europaea) under CO2 atmosphere: Effect on anthocyanins, phenolics, sensory attributes and in vitro antioxidant properties. Food Chemistry, 99, 342-349.
Frankel, E. N., Waterhouse, A. L. & Teissedre, P. L. (1995). Principal phenolic phytochemicals in selected California wines and their antioxidant activity in inhibiting oxidation of human low-density lipoproteins. Journal of Agricultural and Food Chemistry, 43, 890-894.
Gholivand, M. B., Piryaei, M. & Maassoumi, S. M. (2014). Antioxidant activity of Ziziphora tenuoir methanolic extracts and comparison of the essential oil in two stages of growth. Chinese Journal of Natural Medicines, 12, 505-511.
Gladine, C., Morand, C. H., Rock, E., Guffat, D., Bouchart, D. & Durand, D. (2007). The antioxidative effect of plant extracts rich in polyphenols differs between liver and muscle tissues in rats fed n-3 PUFA rich diets. Animal Feed Science and Technology, 139, 257-272.
Gris, E. F., Mattivi, F., Ferreira, E. A., Vrhovsek, U., Wilhelm, D., Pedrosa, R. C. & Bordignon-Luiz, M. T. (2011). Stilbenes and tyrosol as target compounds in the assessment of antioxidant and hypolipidemic activity of Vitis vinifera Red Wines from Southern Brazil. Journal of Agricultural and Food Chemistry, 59, 7954-7961.
Husain, S. R., Cillard, J. & Cillard. P. (1987). Hydroxyl radical scavenging activity of flavonoids. Phytochemistry, 26, 2489-2491.
Jahanban Sfahlan, A., Mahmoodzadeh, A. & Hasanzadeh, A. (2009). Antioxidants and antiradicals in almond hull and shell (Amygdalus communis L.) as a function of genotype. Food Chemistry, 115, 529-533.
Kallithraka, S., Aliaj, L. & Makris, D. P. (2009). Anthocyanin profiles of major red grape (Vitis vinifera L.) varieties cultivated in Greece and their relationship with in vitro antioxidant characteristics. International Journal of Food Science and Technology, 44, 2385-2393.
Kim, D. O., Chun, O. K. & Kim, Y. J. (2003). Quantification of polyphenolics and their antioxidant capacity in fresh plums. Journal of Agricultural and Food Chemistry, 51, 6509-6515.
Kulisic, T., Radonic, A. & Katalinic, V. (2004). Use of different methods for testing antioxidative activity of oregano essential oil. Food Chemistry, 85, 633-640.
Manach, C., Williamson, G., Morand, C., Scalbert, A. & Remesy, C. (2005). Bioavailability and bioefficacy of polyphenols in humans. I. Review of 97 bioavailability studies. The American Journal of Clinical of Nutrition, 81, 230-242.
Mayer, A. S., Ock-Sook, Y., Person, D. A., Waterhouse, A. L. & Frankelm E. N. (1997). Inhibition of human low-density lipoprotein oxidation in relation to composition of phenolic antioxidants in grapes (Vitis vinifera). Journal of Agricultural and Food Chemistry, 45, 1638-1643.
Miller, H. E. (1971). A simplified method for the evaluation of antioxidants. Journal of American Oil Chemists’ Society, 48, 91-97.
Miller, N. J. & Rice-Evansm C. A. (1997). Factors influencing the antioxidant activity determined by the ABTS radical cation assay. Free Radical Research, 26 (3), 195-199.
Molyneux, P. (2004). The use of the stable free radical diphenylpicrylhydrazyl (DPPH) for estimating antioxidant activity. Songklanakarin Journal of Science and Technology, 26, 211-219.
Pantelidis, G. E., Vasilakakis, M. & Manganaris, G. A. (2007). Antioxidant capacity, phenol, anthocyanin, and ascorbic acid contents in raspberries, blackberries, red currants, gooseberries and Cornelian cherries. Food Chemistry, 102, 777-783.
Papandreou, M. A., Dimakopoulou, A., Linardaki, Z. I., Cordopatis, P., Klimis-Zacas, D., Margarity, M. & Lamari, F. N. (2009). Effect of a polyphenol-rich wild blueberry extract on cognitive performance of mice, brain antioxidant markers and acetylcholinesterase activity. Behavioural Brain Research, 198, 352-358.
Sanchez-Moreno, C., Larrauri, J. A. & Saura-Calixto, F. (1998). A procedure to measure the antiradical efficiency of polyphenols. Journal of the Science of Food and Agriculture, 76(2), 270-276.
Saoudi, S., Khennouf, S., Mayouf, N., Amira, S., Dehamna, S. & Karim, H. (2020). Phytochemical screening and in vivo and in vitro evaluation antioxidant capacity of Fargaria ananassa, Prunus armeniaca and Prunus persica fruits growing in Algeria. Progress in Nutrition, 22(1), 236-252.
Sharififar, F., Moshafi, M. H. & Mansouri, S. H. (2007). In vitro evaluation of antibacterial and antioxidant activities of the essential oil and methanol extract of endemic Zataria multiflora Boiss. Food Control, 18, 800-805.
Singleton, V. L. & Rossi, J. A. (1965). Colorimetry of total phenolics with phosphomolybdic-phosphotungstic acid reagents. American Journal of Enology and Viticulture, 16, 144-158.
Sun, J., Chu, Y. F. & Wu, X. (2002). Antioxidant and antiproliferative activities of common fruits. Journal of Agricultural and Food Chemistry, 50, 449-454.
Teissedre, P. L., Frankel, E. N., Waterhouse, A. L., Peleg, H. & German J. B. (1996). Inhibition of in vitro human LDL oxidation by phenolic antioxidants from grapes and wines. Journal of the Science of Food and Agriculture, 70, 55-61.
Vijayakumar, R. S, Surya, D. & Nalini, N. (2004). Antioxidant efficacy of black pepper (Piper nigrum L.) and piperine in rats with high fat diet induced oxidative stress. Redox Report, 9, 105-110.
Vladimir-Knezevic, S., Biljana Blazekovic, B., Stefan, M. B., Alegro, A., Kćszegi, T., & Petrik J. (2011). Antioxidant Activities and Polyphenolic Contents of Three selected Micromeria Species from Croatia. Molecules, 16, 1454-1470.
Yildirim, A., Mavi, A. & Kara, A. (2001). Determination of antioxidant and antimicrobial activities of Rumex crispus L. extracts. Journal of Agricultural and Food Chemistry, 49, 4083-4089.