Temperature and Acidified Solvent Effect on Total Anthocyanins and RP-HPLC Phenolic Acids Determination in Selected Spices
- 1 Department of Nutrition and Food Technology, Faculty of Agriculture, Jordan University of Science and Technology, Irbid, Jordan
- 2 Department of Food Science and Human Nutrition, University of Illinois, Urbana-Champaign, USA
- 3 Department of Food Science and Human Nutrition, University of Illinois, Urbana-Champaign, USA
- 4 Department of Nutrition and Food Technology, Faculty of Agriculture, Jordan University of Science and Technology, Irbid, Jordan
- 5 Department of Nutrition and Food Technology, Faculty of Agriculture, Jordan University of Science and Technology, Irbid, Jordan
- 6 Department of Nutrition and Food Technology, Faculty of Agriculture, Jordan University of Science and Technology, Irbid, Jordan
- 7 Department of Animal Production, Faculty of Agriculture, Mutah University, Al-Karak, Jordan
Abstract
Total anthocyanins of spices ( Syzygium aromaticum L., Coriadrum sativum L., Cuminum cyminum L., Zingiber officinale Rosc., Elettaria cardamomum, Curcuma longa, Rhus coriaria L., Cinnamomum zeylanicum Blume, Foeniculum vulgare Mill and Laurus nobilis L.) were determined using acidified (1% HCl) solvents (methanol, ethanol and acetone) at three temperatures (20℃, 40℃ and 60℃). Also phenolic acids were separated and identified by RP-HPLC. Results showed that sumac and cinnamon had the highest levels of anthocyanins, while for the acetone the cinnamon indicated the highest amount of anthocyanins when methanol and ethanol were used as extracting solvents at 20℃. At 40℃ using ethanol, sumac showed the highest level of anthocyanins whereas acetone solvent yielded the highest anthocyanin contents for cinnamon. At 60℃, cinnamon showed the highest level of anthocyanins when methanol and acetone were the solvents, while sumac had the highest anthocyanins level using ethanol as solvent. HPLC results showed ten phenolic acids found in those spices and varied in their concentrations. Gallic acid had the highest level (1642.3 mg/100g) (cloves). Gentisic acid had the lowest level (1.2 mg/100g) in ginger. Also sumac showed the highest level of chlorogenic acid (1528.7 mg/100g). Some acids were not found in some spices, for instance, benzoic acid was not found in coriander, cumin, ginger, green cardamom, cinnamon and sweet laurel.
- Lako, J., Trenerry, V., Wahlqvist, M., Wattanapenpaiboon, N., Sotheeswaran, S. and Premier, R. (2007) Phytochemical Flavonols, Carotenoids and the Antioxidant Properties of a Wide Selection of Fijian Fruit, Vegetables and Other Readily Available Foods. Food Chemistry, 102, 777-783. http://dx.doi.org/10.1016/j.foodchem.2006.01.031
- Shahidi, F. and Naczk, M. (2004) Phenolics in Food and Nutraceuticals. CRC Press.
- K?hk?nen, M., Hopia, A., Vuorela, H., Rauha, J., Pihlaja, K., Kujala, T. and Heinonen, M. (1999) Antioxidant Activity of Plants Extracts Containing Phenolic Compounds. Journal of Agricultural and Food Chemistry, 47, 3954-3962. http://dx.doi.org/10.1021/jf990146l
- Ereifej, K.I., Feng, H., Rababah, T.M., Tashtoush, S.H., Al-U’datt, M.H., Al-Rabadi, G.J., Torley, P. and Alkasrawi, M. (2015) Microbiological Status and Nutritional Composition of Spices Used in Food Preparation. Food and Nutrition Sciences, 6, 1134-1140. http://dx.doi.org/10.4236/fns.2015.612118
- Pokorny, J., Yanishlieva, N. and Gordon, M. (2001) Antioxidants in Food: Practical Applications. CRC Press, Chapters 1 and 3.
- Rabino, I. and Mancinelli, A. (1986) Light, Temperature and Anthocyanin Production. Journal of Plant Physiology, 81, 922-924. http://dx.doi.org/10.1104/pp.81.3.922
- Randy, W. (2001) Leaf Pigment and Canopy Photosynthetic Response to Early Flower Removal in Cotton. Crop Science, 41, 1522-1529. http://dx.doi.org/10.2135/cropsci2001.4151522x
- SAS (2004) User’s Guide. Release 8.2 Edition. SAS Institute Inc., Cary.
- Prata, E. and Oliveira, L. (2007) Fresh Coffee Husks as Potential of Anthocyanins. Journal of Food Science and Technology, 40, 1555-1560. http://dx.doi.org/10.1016/j.lwt.2006.10.003
- Wang, S. and Ballington, J. (2007) Free Radical Scavenging Capacity and Antioxidant Enzyme Activity in Deerberry (Vaccinium stamineum L.). Journal of Food Science and Technology, 40, 1352-1361. http://dx.doi.org/10.1016/j.lwt.2006.09.005
- Suhaj, M. (2006) Spice Antioxidants Isolation and Their Antiradical Activity: A Review. Journal of Food Composition and Analysis, 19, 531-537. http://dx.doi.org/10.1016/j.jfca.2004.11.005
- Awika, J., Rooney, L. and Waniska, R. (2004) Anthocyanins from Black Sorghum and Their Antioxidant Properties. Food Chemistry, 90, 293-301. http://dx.doi.org/10.1016/j.foodchem.2004.03.058
- Rababah, T., Ereifej, K. and Howard, L. (2005) Effect of Ascorbic Acid and Dehydration on Concentrations of Total Phenolics, Antioxidants Capacity, Anthocyanins and Color in Fruits. Journal of Agricultural and Food Chemistry, 53, 4444-4447. http://dx.doi.org/10.1021/jf0502810