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Drying Technology
An International Journal
Volume 35, 2017 - Issue 3
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Original Articles

Quality of dried haskap berries (Lonicera caerulea L.) as affected by prior juice extraction, osmotic treatment, and drying conditions

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References

  • Paredes-Lopez, O.; Cervantes-Ceja, M.L.; Vigna-Perez, M.; Hernandez-Perez, T. Berries: improving human health and healthy aging, and promoting quality life—A review. Plant Foods for Human Nutrition 2010, 65, 299–308.
  • Khoddami, A.; Wilkes, M.A.; Roberts, T.H. Techniques for analysis of plant phenolic compounds—A review. Molecules 2013, 18, 2328–2375.
  • Tavares, L.; Figueira, I.; McDougall, G.J.; Vieira, H.L.; Stewart, D.; Alves, P.M.; Ferreira, R.B.; Santos, C.N. Neuroprotective effects of digested polyphenols from wild blackberry species. European Journal of Nutrition 2013, 52, 225–236.
  • Jurikova, T.; Rop, O.; Mlcek, J.; Sochor, J.; Balla, S.; Szekeres, L.; Hegedusova, A.; Hubalek, J.; Adam, V.; Kizek, R. Phenolic profile of edible honeysuckle berries (Genus Lonicera) and their biological effects—A review. Molecules 2012, 17, 61–79.
  • Celli, G.B.; Ghanem, A.; Brooks, M.S. Haskap berries (Lonicera caerulea L.)—A critical review of antioxidant capacity and health-related studies for potential value-added products. Food and Bioprocess Technology 2014, 7, 1541–1554.
  • Bakowska, A.; Kucharska, A.Z.; Oszmianski, J. The effect of heating, UV-irradiation, and storage on stability of the anthocyanin–polyphenol copigment complex. Food Chemistry 2003, 81, 349–355.
  • Bakowska, A.; Marianchuk, M.; Kolodziejczyk, P. Survey of bioactive components in Western Canadian berries. Canadian Journal of Physiology and Pharmacology 2007, 85, 1139–1152.
  • Rupasinghe, H.P.V.; Yu, L.J.; Bhullar, K.S.; Bors, B. Haskap (Lonicera caerulea): A new berry crop with high antioxidant capacity. Canadian Journal of Plant Science 2012, 92, 1311–1317.
  • Khattab, R.; Brooks, M.S.; Ghanem, A. Phenolic analyses of haskap berries (Lonicera caerulea L.): Spectrophotometry versus high performance liquid chromatography. International Journal of Food Properties 2016, 19, 1708–1725. doi:10.1080/10942912.2015.1084316
  • Mundada, M.; Hathan, B.S.; Maske, S. Convective dehydration kinetics of osmotically pretreated pomegranate arils. Biosystems Engineering 2010, 107, 307–316.
  • Santosa, P.H.S.; Silvaa, M.A. Retention of vitamin C in drying processes of fruits and vegetables—A review. Drying Technology 2008, 26, 1421–1437.
  • Oliveira, S.M.; Brandão, T.R.S.; Silva, C.L.M. Influence of drying processes and pretreatments on nutritional and bioactive characteristics of dried vegetables: A review. Food Engineering Reviews 2016, 8, 134–163. doi: 10.1007/s12393-015-9124-0.
  • Osorio, C.; Franco, M.S.; Castaño, M.P.; González-Miret, M.L.; Heredia, F.J.; Morales, A.L. Color and flavor changes during osmotic dehydration of fruits. Innovative Food Science and Emerging Technologies 2007, 8, 353–359.
  • Chottamom, P.; Kongmanee, R.; Manklang, C.; Soponronnarit, S. Effect of osmotic treatment on drying kinetics and antioxidant properties of dried mulberry. Drying Technology 2012, 30, 80–87.
  • Grabowski, S.; Marcotte, M.; Quan, D.; Taheiran, A.R.; Zareifard, M.R. Kinetics and quality aspects of Canadian blueberries and cranberries dried by osmo-convective method. Drying Technology 2007, 25, 367–374.
  • Sette, P.A.; Franceschinis, L.E.; Schebor, C.; Salvatori, D. Osmotic dehydrated raspberries: Changes in physical aspects and bioactive compounds. Drying Technology 2015, 33, 659–670.
  • Araya-Farias, M.; Macaigne, O.; Ratti, C. On the development of osmotically dehydrated seabuckthorn fruits: Pretreatments, osmotic dehydration, post drying techniques, and nutritional quality. Drying Technology 2014, 32, 813–819.
  • Germer, S.P.M.; Ferrari, C.C.; Lancha, J.P.; Berbari, S.A.G.; Carmello-Guerreiro, S.M.; Ruffi, C.R.G. Influence of processing additives on the quality and stability of dried papaya obtained by osmotic dehydration and conventional air drying. Drying Technology 2014, 32, 1956–1969.
  • Sritongtae, B.; Mahawanich, T.; Duangmal, K. Drying of osmosed cantaloupe: Effect of polyols on drying and water mobility. Drying Technology 2011, 29, 527–535.
  • Cao, H.; Zhang, M.; Mujumdar, A.S.; Du, W.; Sun, J. Optimization of osmotic dehydration of kiwifruit. Drying Technology 2006, 24, 89–94.
  • Germer, S.P.M.; de Queiroz, M.R.; Aguirre, J.M.; Berbari, S.A.; Arruda Silveira, N.F. Reuse of sucrose syrup in the osmotic dehydration of peaches. Drying Technology 2012, 30, 1532–1540.
  • Brooks, M.S.; Ghaly, A.E.; Abou El-Hana, N.H. Effect of osmotic pre-treatment on the air-drying behavior and quality of plum tomato pieces. International Journal of Food Engineering 2008, 4, Article 13.
  • Brooks, M.S., Ghaly, A.E.; Abou El-Hana, N.H. Drying kinetics of osmotically pre-treated plum tomato pieces. International Journal of Food Engineering 2008, 4, Article 1.
  • International Organization of Standardization (ISO). Cereals and cereal products - Determination of moisture content - Reference method. ISO 712, 2009.
  • Giusti, M.M.; Wrolstad, R.E. Characterization and measurement of anthocyanins by UV-visible spectroscopy. Current Protocols in Food Analytical Chemistry 2001, F1.2.1–F1.2.13.
  • Giusti, M.; Wrolstad, R. Acylated anthocyanins from edible sources and their application in food systems. Biochemical Engineering Journal 2003, 14, 217–225.
  • Khattab, R.; Celli, G.B.; Ghanem, A.; Brooks, M.S. Effect of frozen storage on polyphenol content and antioxidant activity of haskap berries (Lonicera caerulea L.). Journal of Berry Research 2015, 5, 231–242.
  • Sanchez-Mata, M.C.; Camara-Hurtado, M.; Diez-Marques, C.; Torija-Isasa, M.E. Comparison of high-performance liquid chromatography and spectrofluorimetry for vitamin C analysis of green beans (Phaseolus vulgaris L.). European Food Research & Technology 2000, 210, 220–225.
  • Pimpao, R.C.; Dew, T.; Oliveira, P.B.; Williamson, G.; Ferreira, R.P.; Santos, C.N. Analysis of phenolic compounds in Portuguese wild and commercial berries after multienzyme hydrolysis. Journal of Agricultural and Food Chemistry 2013, 61, 4053–4062.
  • Reddy, L. Drying characteristics of Saskatoon berries under microwave and combined microwave-convection heating. MS thesis. University of Saskatchewan, Canada, 2006.
  • Al-Amin, M.; Hossain, M.S.; Iqbal, A. Effect of pre-treatments and drying methods on dehydration and rehydration characteristics of carrot. Universal Journal of Food and Nutrition Science 2015, 3, 23–28.
  • Sapers, G.M.; Jones, S.B.; Maher, G.T. Factors affecting the recovery of juice and anthocyanins from cranberries. Journal of the American Society for Horticultural Science 1983, 108, 246–249.
  • Shamsudin, R.; Buang, S.; Aziz, N.A. Effect of different extraction methods on the physicochemical properties of pomelo juice. Chemical Engineering Transactions 2015, 44, 2283–9216.
  • Oyeleke, F.I.; Olaniyan, A.M. Extraction of juice from some tropical fruits using a small scale multi-fruit juice extractor. African Crop Science Conference Proceedings 2007, 8, 1803–1808.
  • Aviara, N.A.; Lawa, A.A.; Nyam, D.S.; Bamisaye, J. Development and performance evaluation of a multi-fruit juice extractor. Global Journal of Engineering, Design & Technology 2013, 2, 16–21.
  • Zadernowski, R.; Naczk, M.; Nesterowicz, J. Phenolic acid profiles in some small berries. Journal of Agricultural & Food Chemistry 2005, 53, 2118–2124.
  • Celli, G.B.; Khattab, R.; Ghanem, A.; Brooks, M.S. Refractance WindowTM drying of haskap berry – preliminary results on anthocyanin retention and physicochemical properties. Food Chemistry 2016, 194, 218–221.
  • Chaovanalikit, A.; Thompson, M.M.; Wrolstad, R.E. Characterization and quantification of anthocyanins and polyphenolics in blue honeysuckle (Lonicera caerulea L.). Journal of Agricultural & Food Chemistry 2004, 52, 848–852.
  • Andersen, M.; Jordheim, M. The Anthocyanins: Chemistry, Biochemistry and Applications, 4th ed.; CRC Press: Boca Raton, FL, 2007; 471–553.
  • Rein, M. Copigmentation reactions and color stability of berry anthocyanins. Ph.D. thesis. Helsinki University, Finland, 2005. Available at: http://ethesis.helsinki.fi/julkaisut/maa/skemi/vk/rein/
  • Hager, A.; Howard, L.R.; Prior, R.L.; Brownmiller, C. Processing and storage effects on monomeric anthocyanins, percent polymeric color, and antioxidant capacity of processed black raspberry products. Journal of Food Science 2008, 73, H139–H143.
  • Ochmian, I.; Oszmianski, J.; Skupień, K. Chemical composition, phenolics, and firmness of small black fruits. Journal of Applied Botany & Food Quality 2009, 83, 64–69.
  • Yang, B.; Jiang, Y.; Shi, J.; Chen, F.; Ashraf, M. Extraction and pharmacological properties of bioactive compounds from longan (Dimocarpus longan Lour.) fruit—A review. Food Research International 2011, 44, 1837–1842.
  • Khan, M.; Khalil, S.A.; Bibi, N. Effect of dipping in sugar solutions on drying behavior of cantaloupe. Science, Technology and Development 2015, 34, 86–89.
  • Garcia-Noguera, J.; Francisca, I.P.; Oliveira, M.I.G.; Curtis, L.W.; Sueli, R.; Fabiano, A.N.F. Ultrasound-assisted osmotic dehydration of strawberries: Effect of pretreatment time and ultrasonic frequency. Drying Technology 2010, 28, 294–303.
  • Meda, V.; Gupta, M.; Opoku, A. Drying kinetics and quality characteristics of microwave-vacuum dried Saskatoon berries. Journal of Microwave Power & Electromagnetic Energy 2008, 42, 4–12.
  • Ferenczi, S.; Czukor, B.; Cserhalmi, Z. Evaluation of microwave vacuum drying combined with hot-air drying and compared with freeze- and hot-air drying by the quality of the dried apple product. Periodica Polytechnica Chemical Engineering 2014, 58, 111–116.
  • Jackman, R.L.; Smith, J.L. Anthocyanin and betalains. In Natural Food Colorants; Hendry, G.A.F.; Houghton, J.D., Eds.; Blackie Academic & Professional: Glasgow, 1996; 249–309.
  • Sadilova, E.; Stintzing, F.C.; Carle, R. Thermal degradation of acylated and nonacylated anthocyanins. Journal of Food Science 2006, 71, C504–C512.
  • Ochoa, M.R.; Kesseler, A.G.; Vullioud, M.B.; Lozano, J.E. Physical and chemical characteristics of raspberry pulp: storage effect on composition and color. LWT–Food Science and Technology 1999, 149, 149–153.
  • Lohachoompol, V.; Srzednicki, G.; Craske, J. The change of total anthocyanins in blueberries and their antioxidant effect after drying and freezing. Journal of Biomedicine & Biotechnology 2004, 5, 248–252.
  • Sapers, G.M.; Phillips, J.G. Leakage of anthocyanins from skin of raw and cooked highbush blueberries (Vaccinium corymbosum L.). Journal of Food Science 1985, 50, 437–439, 443.
  • Drdak, M.; Daucik, P. Changes of elderberry (Sambucus nigra) pigments during the production of pigment concentrates. Acta Alimentaria 1990, 19, 3–7.
  • Rhim, J.W. Kinetics of thermal degradation of anthocyanin pigment solutions driven from red flower cabbage. Food Science and Biotechnology 2002, 11, 361–364.
  • Garcia-Viguera, C.; Zafrilla, P.; Romero, P.; Abellan, P.; Artes, F.; Tomas-Barberan, F.A. Color stability of strawberry jam as affected by cultivar and storage temperature. Journal of Food Science 1999, 64, 243–247.
  • Patras, A.; Brunton, N.P.; Gormely, T.R.; Butler, F. Impact of high pressure processing on antioxidant activity, ascorbic acid, anthocyanins and instrumental colour of blackberry and strawberry puree. Innovative Food Science and Emerging Technologies 2009, 10, 308–313.
  • Liaotrakoon, W.; Clercq, N.D.; Hoed, V.V.; Walle, D.V.D.; Lewille, B.; Dewettinck, K. Impact of thermal treatment on physicochemical, antioxidative and rheological properties of white-flesh and red-flesh dragon fruit (Hylocereus spp.) purees. Food and Bioprocess Technology 2013, 6, 416–430.
  • Khraisheh, M.A.M.; McMinn, W.A.M.; Magee, T.R.A. Quality and structural changes in starchy foods during microwave and convective drying. Food Research International 2004, 37, 497–503.
  • Goula, A.M.; Adamopoulos, K.G. Retention of ascorbic acid during drying of tomato halves and tomato pulp. Drying Technology 2006, 24, 57–64.
  • Yang, C.S.T.; Atallah, W.A. Effect of four drying methods on the quality of intermediate moisture lowbush blueberries. Journal of Food Science 1985, 50, 1233–1237.
  • Pomeranz, Y.; Meloan, C.E. Determination of moisture. In Food Analysis: Theory and Practice, 3rd ed.; Chapman & Hall: New York, 1994; 576.
  • Mayor, L.; Pissarra, J.; Sereno, A.M. Microstructural changes during osmotic dehydration of parenchymatic pumpkin tissue. Journal of Food Engineering 2008, 85,  326–339.
  • Venkatachalapathy, K.; Raghavan, G.S.V. Combined osmotic and microwave drying of strawberries. Drying Technology 1999, 17, 837–853.
  • Haas, G.J.; Prescott, H.E.; Cante, C.J. On rehydration and respiration of dry and partially dried vegetables. Journal of Food Science 1974, 39, 681–684.
  • Beaudry, C.; Raghavan, G.S.V.; Ratti, C.; Rennie, T.J. Effect of four drying methods on the quality of osmotically dehydrated cranberries. Drying Technology 2004, 22, 521–539.

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