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Changes in Physically-Chemical Parameters of Latvian Cranberries During Storage Cover

Changes in Physically-Chemical Parameters of Latvian Cranberries During Storage

Open Access
|Jan 2014

References

  1. 1. Ali, L., Svensson, B., Alsanius, B.W., & Olsson, M.E. (2011). Late season harvest and storage of Rubus berries - Major antioxidant and sugar levels. J. Scientia Horticulturae, 129(3), 376-381.10.1016/j.scienta.2011.03.047
  2. 2. Berregi, I., Santos, J.I., Del Campo, G., & Miranda, J.I. (2003). Quantitative determination of (-)- epicatechin in cider apple juice by HNMR. J. Talanta, 61:2(17), 139-145.10.1016/S0039-9140(03)00236-4
  3. 3. Boath, A.S., Stewart, D., & McDougall, G.J. (2012). Berry components inhibit α-glucosidase in vitro: Synergies between acarbose and polyphenols from black currant and rowanberry.J. Food Chemistry, 135(3), 929-936.10.1016/j.foodchem.2012.06.065
  4. 4. Bordignon-Luiz, M.T., Gauche, C., Gris, E.F., & Falcao, L.D. (2007). Colour stability of anthocianins from Isabel grapes (Vitis labrusca L.) in model systems. J. LWT-Food Science and Technology, 40(4), 594-599.10.1016/j.lwt.2006.02.022
  5. 5. Caillet, S., Côté, J., Doyon, G., Sylvain, J.-F., & Lacroix, M. (2011a). Antioxidant and antiradical properties of cranberry juice and extracts.J. Food Research International, 44(5), 1408-1413.10.1016/j.foodres.2011.02.019
  6. 6. Caillet, S., Côté, J., Doyon, G., Sylvain, J.-F., & Lacroix, M. (2011b). Effect of juice processing on the cancer chemopreventive effect of cranberry.Food Research International, 44(4), 902-910.10.1016/j.foodres.2011.01.055
  7. 7. Camire, M.E., Dougherty, M.P., & Briggs, J.L. (2007). Functionality of fruit powders in extruded corn breakfast cereals. J. Food Chemistry, 101:2(13), 765-770.10.1016/j.foodchem.2006.02.031
  8. 8. Ceponis, M.J., & Stretch, A.W. (1983).Berry color, water-immersion time, rot, and physiological breakdown of cold-stored cranberry fruits. HortScience, 18, 484-485.10.21273/HORTSCI.18.4.484
  9. 9. Chen, H., Zuo, Y., & Deng, Y. (2001).Separation and determination of flavonoids and other phenolic compounds in cranberry juice by high-performance liquid chromatography.Journal of Chromatography A, 913(1-2), 387-395.10.1016/S0021-9673(00)01030-X
  10. 10. De Rosso, V.V., & Mercadante, A.Z. (2007). Evaluation of colour and stability of anthocyanins from tropical fruits in an isotonic soft drink system. J. Innovative Food Science & Emerging Technologies, 8(3), 347-352.10.1016/j.ifset.2007.03.008
  11. 11. Ellingsen, I., Seljeflot, I., Arnesen, H., & Tonstad, S. (2009). Vitamin C consumption is associated with less progression in carotid intima media thickness in elderly men: A 3-year intervention study. Nutrition, Metabolism and Cardiovascular Diseases, 19(1), 8-14.10.1016/j.numecd.2008.01.00618472409
  12. 12. Eyéghé-Bickong, H.A., Alexandersson, E.O., Gouws, L.M., Young, P.R., & Vivier, M.A. (2012). Optimisation of an HPLC method for the simultaneous quantification of the major sugars and organic acids in grapevine berries.J. Chromatography B, 885-886:15:43-49.
  13. 13. Hendry, G.A., & Houghton, J.D. (1996). Natural Food Colourants. Glasgow: Backie Academic and Professional.10.1007/978-1-4615-2155-6
  14. 14. Hernandez, Y., Lobo, M.G., & Gonzalez, M. (2009). Factors affecting sample extraction in the liquid chromatographic determination of organic acids in papaya and pineapple. J. Food Chemistry, 114(2), 734-741.10.1016/j.foodchem.2008.10.021
  15. 15. Hoffmann, G. (2008). CIELab Color Space.Retrieved from http://www.fho-emden.de/~hoffmann/cielab03022003.pdf
  16. 16. Jackman, R.L., & Smith, J.L. (1996).Natural Food Colourants. London, Glasgow: Chapman & Hall.
  17. 17. Kalt, W., Forney, C.F., Martin, A., & Prior, R.L. (1999). Antioxidant capacity, vitamin C, phenolics, and anthocyanins after fresh storage of small fruits. J. Agric. Food Chem, 47, 4638-4644.10.1021/jf990266t
  18. 18. Lacombe, A., Wu, V.C.H., Tyler, S., & Edwards, K. (2010). Antimicrobial action of the American cranberry constituents; phenolics, anthocyanins, and organic acids, against Escherichia coli O157:H7.Int. J. of Food Microbiology, 139(1-2), 102-107.10.1016/j.ijfoodmicro.2010.01.035
  19. 19. Mupondwa, E.K. (2009). Economic benefits of controlled atmosphere storage and modified atmosphere packaging. In E.M. Yahia (Ed.), Modified and controlled atmospheres for storage, transportation, and packaging of horticultural commodities (pp. 527-552). Boca Raton, FL: CRC Press.
  20. 20. Nohynek, L.J., Alakomi, H.-L., Kähkönen, M.P., Heinonen, M., Helander, I.M., Oksman- Caldentey, K.-M., & Puupponen-Pimiä, R.H. (2006). Berry phenolics: Antimicrobial properties and mechanisms of action against severe human pathogens. J. Nutrition and Cancer, 54(1), 18-32.10.1207/s15327914nc5401_4
  21. 21. Özgen, M., Palta, J.P., & Smith, J.D. (2002).Ripeness stage at harvest influences postharvest life of cranberry fruit: Physiological and anatomical explanations. Postharvest Biology and Technology, 24, 291-299.10.1016/S0925-5214(01)00154-5
  22. 22. Perkins-Veazie, P., & Collins, J.K. (2002).Quality of erect-type blackberry fruit after short intervals of controlled atmosphere storage.Postharvest Biol. Technol., 25, 235-239.
  23. 23. Reynoso, R.O., & Michelis, A. (1994). Parameters affecting freezing storage and transport of individually frozen Schoeneman raspberries. Int.J. Refrigeration, 17, 209-213.10.1016/0140-7007(94)90021-3
  24. 24. Temmingoff, E.E.J.M., & Houba, V.J.G. (2004).Plant Analysis Procedures. Springer-Verlag New York Inc, Kluwer Academic Publisher.10.1007/978-1-4020-2976-9
  25. 25. Wong, M., & Stanton, D.W. (1992). Effect of removal of amino acids and phenolic compounds on non-enzymatic browning in stored kiwi fruit juice concentrates. LWT - Food Science and Technology, 26, 138-144.10.1006/fstl.1993.1029
  26. 26. Zhao, J. (2007). Berry fruit. Taylor & Francis Group, CRC Press. 10.1201/9781420006148
Language: English
Page range: 11 - 19
Published on: Jan 29, 2014
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2014 Karina Ruse, Tatjana Rakcejeva, Lija Dukalska, Fredijs Dimins, published by Latvia University of Life Sciences and Technologies
This work is licensed under the Creative Commons License.