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Encapsulation of vegetable oils as source of omega-3 fatty acids for enriched functional foods

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  • Abang, S., Chan, E.-S. and Poncelet, D. (2012). Effects of process variables on the encapsulation of oil in ca-alginate capsules using an inverse gelation technique. J. Microencapsul. 29(5):417–428.
  • Aliabadi, H. M., Elhasi, S., Mahmud, A., Gulamhusein, R., Mahdipoor, P. and Lavasanifar, A. (2007). Encapsulation of hydrophobic drugs in polymeric micelles through co-solvent evaporation: The effect of solvent composition on micellar properties and drug loading. Int. J. Pharm. 329:158–165.
  • Beristain, C. I., Vazquez, A., Garcia, H. S. and Vernon-Carter, E. J. (1996). Encapsulation of orange peel oil by co-crystallization. LWT-Food Sci. Technol. 29:645–647.
  • Bouchemal, K., Briancon, S., Fessi, H., Chevallier, Y., Bonnet, I. and Perrier, E. (2006). Simultaneous emulsification and interfacial polycondensation for the preparation of colloidal suspensions of nanocapsules. Mat. Sci. Eng. C. 26:472–480.
  • Burdge, G. and Calder, P. (2005). Conversion of alpha-linolenic acid to longer-chain polyunsaturated fatty acids in human adults. Reprod. Nut. Dev. 45:581–597.
  • Calder, P. C. (2001). Polyunsaturated fatty acids, inflammation and immunity. Lipids. 36:1007–1024.
  • Calder, P. C. (2006). n-3 polyunsaturated fatty acids, inflammation, and inflammatory diseases. Am. J. Clin. Nut. 83:1505–1519.
  • Calvo, P., Hernández, T., Lozano, M. and González-Gómez, D. (2010). Microencapsulation of extra-virgin olive oil by spray-drying: Influence of wall material and olive quality. Eur. J. Lipid Sci. Technol. 112:852–858.
  • Chan, E. S. (2011). Preparation of ca-alginate beads containing high oil content: Influence of process variables on encapsulation efficiency and bead properties. Carbohydr. Polym. 84:1267–1275.
  • Chan, L. W., Lim, L. T. and Heng, P. W. (2000). Microencapsulation of oils using sodium alginate. J Microencapsul. 17(6):757–766.
  • Cohen, Z., Norman, H. A. and Heimer, Y. M. (1995). Microalgae as a source of omega-3 fatty acids. World Rev. Nutr. Diet. 77:1–31.
  • Cunnane, S. C., Hamadeh, A. C., Liede, L. U., Thompson, T. M. S and Jenkins, D. J. A. (1995). Nutritional attributes of traditional flaxseed in healthy young adults. Am. J. Clin. Nutr. 61(1):62–68.
  • De Barros-Fernandes, R. V., Borges, S. V. and Botrel, D. A. (2013). Influence of spray drying operating conditions on microencapsulated rosemary essential oil properties. Ciênc. Tecnol. Aliment, Campinas. 33(1):171–178.
  • De Deckere, E. A. M. and Verschuren, P. M. (2000). Functional fats and spreads. In: Functional Foods, pp. 233–250. Gibson, G. R. and Williams, C. M., Eds., CRC Press, Cambridge, UK.
  • Desobry, S. A., Netto, F. M. and Labuza, T. P. (1999). Influence of maltodextrin systems at an equivalent 25DE on encapsulated beta-carotene loss during storage. J. Food Process Preserv. 23:39–55.
  • Devi, N., Hazarika, D., Deka, C. and Kakati, D. K. (2012). Study of complex coacervation of gelatin A and sodium alginate for microencapsulation of olive oil. J. Macromol. Sci. Pure Appl. Chem. 49:936–945.
  • Devi, N. and Maji, T. K. (2010). Genipin crosslinked microcapsules of gelatin A and κ-carrageenan polyelectrolyte complex for encapsulation of Neem (Azadirachta Indica A. Juss.) seed oil. Polym. Bull. 65(4):347–362.
  • Diplock, A. T., Aggett, P., Ashwell, M., Bornet, F., Fern, E. and Roberfroid, M. (1999). Scientific concepts of functional food science in Europe: Consensus document. Brit. J. Nutr. 1:1–28.
  • Djordjevic, D., McClements, D. J. and Decker, E. A. (2004). Oxidative stability of whey protein-stabilized oil-in-water emulsions at pH 3: Potential x-3 fatty acid delivery systems (Part B). J. Food Sci. 69(5):C356–C362.
  • Domian, E. (2005). Physical properties of model food powders in the aspect of the agglomeration method. Żywność Technol. Jakość. 45:87–97.
  • Domian, E. and Wąsak, I. (2008). Microencapsulation of rapeseed oil based on the spray drying method. Pol. J. Food Nutr. Sci. 58(4):477–483.
  • Dulvy, N. K., Sadovy, Y. and Reynolds, J. D. (2003). Extinction vulnerability in marine populations. Fish Fish. 4:25–64.
  • Dziki, D., Mioe, A., Gladyszewska, B., Laskowski, J., Kwiatkowski, S. and Gawlik-Dziki, U. (2013). Physicochemical and grinding characteristics of dragonhead seeds. Int. Agrophys. 27:403–408.
  • Dzondo-Gaget, M., Nzikou, J. M., Etoumongo, A., Linder, M. and Desobry, S. (2005). Encapsulation and storage of safou oil in 6DE maltodextrins. Process Biochem. 40:265–271.
  • Fioriti, J. A., Stahl, H. D., Cseri, J. and Sims, R. J. (1975). Chemical and organoleptic properties of dried emulsions. J. Am. Oil Chem. Soc. 52:395–399.
  • Fujiwara, G. M., Campos, R., Costa, C. K., Gaspari-Dias, J. F., Gomes-Miguel, O., Dallarmi-Miguel, M., Marques, F. A. and Warumby-Zanin, S. M. (2013). Production and characterization of alginate-starch-chitosan microparticles containing stigmasterol through the external ionic gelation technique. Braz. J. Pharm. Sci. 49(3):537–547.
  • Garg, M. L., Wood, L. G., Singh, H. and Moughan, P. J. (2006). Means of delivering recommended levels of long chain n-3 polyunsaturated fatty acids in human diets. J. Food Sci. 71(5):66–71.
  • Ghosh, S. K. (2006). Functional Coatings and Microencapsulation: A General Perspective. Wiley-VCH, Verlag GmbH & Co. KGoaA, Weinheim.
  • Gómez-Candela, C., Bermejo-López, L. M. and Loria-Kohen, V. (2011). Importance of a balanced omega 6/omega 3 ratio for the maintenance of health. Nutritional recommendations. Nut. Hosp. 26(2):323–329.
  • Hirashima, K., Alves da Silva, S., Fernandes-Caruso, M. S. and Aued-Pimentel, S. (2013). Encapsulated specialty oils commercialized in São Paulo state, Brazil: Evaluation of identity (fatty acid profile) and compliance of fatty acids and Vitamin E contents with nutrition labeling. Food Sci. Technol. Campinas. 33(1):107–115.
  • Jafari, S. M., Assadpoor, E., Bhandari, B. and He, Y. (2008). Nano-particle encapsulation of fish oil by spray drying. Food Res. Int. 41:172–183.
  • Jyothi, M. V. N., Prasanna, P. M., Sakarkar, S. N., Surya Prabha, K. S., Ramaiah, P. S. and Srawan, G. Y. (2010). Microencapsulation techniques, factors influencing encapsulation efficiency. J. Microencapsul. 27(3):187–197.
  • Katona, J. M., Sovilj, V. J. and Petrovic, L. B. (2010). Microencapsulation of oil by polymer mixture-ionic surfactant interaction induced coacervation. Carbohydr. Polym. 79:563–570.
  • Kaushika, P., Dowlinga, K., Barrowb, C. J. and Adhikaric, B. (2015). Microencapsulation of omega-3 fatty acids: A review of microencapsulation and characterization methods. J. Funct. Foods. 19:868–881.
  • Keogh, M. K., O´Kennedy, B. T., Kelly, J., Auty, M. A., Kelly, P. M., Fureby, A. and Haahr, A. M. (2001). Stability to oxidation of spray dried fish oil powder microencapsulated using milk ingredients. J. Food Sci. 66(2):217–224.
  • Law, M. (2000). Plant sterol and stanol margarines and health. Br. Med. J. 320:861–864.
  • Lenihan-Geels, G., Bishop, K. S. and Ferguson, L. R. (2013). Alternative sources of omega-3 fats: Can we find a sustainable substitute for fish? Nutrients. 5:1301–1315.
  • Mantzioris, E., Cleland, L. G., Gibson, R. A., Neumann, M. A., Demasi, M. and James, M. J. (2000). Biochemical effects of a diet containing foods enriched with n-3 fatty acids. Am. J. Clin. Nutr. 72(1):42–48.
  • Mathiowitz, E., Kreitz, M. R. and Brannon-Peppas, L. (1999). Microencapsulation. In: Encyclopedia of Controlled Drug Delivery, pp. 493–546. Mathiowitz, E., Ed., John Wiley and Sons, New York.
  • McClements, D. J., Decker, E. A. and Weiss, J. (2007). Emulsion-based delivery systems for lipophilic bioactive components. J. Food. Sci. 72:R109–R124.
  • Minemoto, Y., Adachi, S. and Matsuno, R. (2001). Effect of relative humidity during storage on the autoxidation of linoleic acid encapsulated with a polysaccharide by hot-air-drying and freeze-drying. Food Sci. Technol. Res. 7:91–93.
  • Miyazawa, K., Yajima, I., Kaneda, I. and Yanaki, T. (2000). Preparation of a new soft capsule for cosmetics. Int. J. Cosmet. Sci. 51:239–252.
  • Mostafa, R. A., Moharram, Y. G., Attia, R. S. and El-Sharnouby, S. A. (2013). Utilization of some vegetable oil blends rich in omega-3 fatty acids: Biological evaluation. Emir. J. Food Agric. 25(5):320–330.
  • Munin, A. and Edwards-Lévy, F. (2011). Encapsulation of natural polyphenolic compounds; a review. Pharmaceutics. 3:793–829.
  • Oarada, M., Ito, E., Terao, K., Miyazawa, T., Fujimoto, K. and Kaneda, T. (1988). The effect of dietary-lipid hydroperoxide on lymphoid-tissues in mice. Biochim. Biophys. Acta. 960(2):229–235.
  • Ostlund, R. E., Racette, S. B. and Stenson, W. F. (2002). Effects of trace components of dietary fat on cholesterol metabolism: Phytosterols, oxysterols and squalene. Nutr. Rev. 60:349–359.
  • Poncelet, D. (2001). Production of alginate beads by emulsification/internal gelation. Ann. N.Y. Acad. Sci. 944:74–82.
  • Popa, V. M., Gruia, A., Raba, D. R., Dumbrava, D., Moldovan, C., Bordean, D. and Mateescu, C. (2012). Fatty acids composition and oil characteristics of linseed (Linum usitatissimum L.) from Romania. J. Agroalimet. Process. Technol. 18(2):136–140.
  • Prasetya, R. A. and Hasokowati, W. (2010). Mechanism of microencapsulation with urea-formaldehyde polymer. Am. J. Appl. Sci. 7(6):739–745.
  • Ren, P. W., Ju, X. J. and Chu, L. Y. (2010). Monodisperse alginate microcapsules with oil core generated from a microfluidic device. J. Colloid. Interface. Sci. 343:392–395.
  • Ribeiro, A. J., Neufeld, R. J., Arnaud, P. and Chaumeil, J. C. (1999). Microencapsulation of lipophilic drugs in chitosan-coated alginate microspheres. Int. J. Pharm. 187:115–123.
  • Riechart, R. D. (2002). Oilseed medicinals in natural drugs and dietary supplements - new functional foods. Trends Food Sci. Technol. 13(11):353–360.
  • Rubilar, M., Morales, E., Contreras, K., Ceballos, C., Acevedo, F., Villarroel, M. and Shene, C. (2012). Development of a soup powder enriched with microencapsulated linseed oil as a source of omega-3 fatty acids. Eur. J. Lipid. Sci. Technol. 114:423–433.
  • Sasaki, E., Kurayama, F., Ida, J., Matsuyama, T. and Yamamoto, H. (2008). Preparation of microcapsules by electrostatic atomization. J. Electrostat. 66:312–318.
  • Schubert, H., Ax, K. and Behrend, O. (2003). Product engineering of dispersed system. Trends Food Sci. Technol. 14:9–16.
  • Segura-Campos, M. R., Ciau-Solís, N., Rosado-Rubio, G., Chel-Guerrero, L. and Betancur-Ancona, D. (2014). Physicochemical characterization of chia (Salvia hispanica) seed oil from Yucatán, México. Agric. Sci. 5(3):220–226.
  • Shin, H.-S. and Kim, S.-W. (1994). Lipid composition of perilla seed. J. Am. Oil. Chem. Soc. 71(6):619–622.
  • Silva, C. M., Ribeiro, A. J., Figueiredo, I. V., Gonçalves, A. R. and Veiga, F. (2006). Alginate microspheres prepared by internal gelation: Development and effect on insulin stability. Int. J. Pharm. 311:1–10.
  • Simopoulos, A. P., Leaf, A. and Salem, N. (1999). Essentiality of and recommended dietary intakes for omega-6 and omega-3 fatty acids. Ann. Nutr. Metab. 43:127–130.
  • Soliman, E. A., El-Moghazy, A. Y., Mohy El-Din, M. S., Magdy, A. and Massoud, M. A. (2013). Microencapsulation of essential oils within alginate: Formulation and in vitro evaluation of antifungal activity. J. Encapsulation Adsort. Sci. 3:48–55.
  • Southon, S. (2000). Factors to consider when undertaking clinical trials for functional foods. In: Functional Foods II. Claims and Evidence, pp. 3–7. Buttriss, J. and Saltmarsh, M., Eds., The Royal Society of Chemistry, Cambridge.
  • Stamey, J. A., Shepherd, D. M., de Veth, M. J. and Corl, B. A. (2012). Use of omega-3-fatty-acid-rich algae and their oil as a feed supplement for dairy cattle. J. Dairy Sci. 95(9):5269–5275.
  • Stapelfeldt, H., Nielsen, B. R., Jensen, S. K. and Skibsted, L. H. (1999). Free radical formation in freeze-dried raw milk in relation to alpha-tocopherol level. J. Dairy Res. 66:461–466.
  • Stensby, M. E. (1969). Nutritional properties of fish oils. World Rev. Nutr. Diet. 11:46–105.
  • Strobel, C., Jahreis, G. and Kuhnt, K. (2012). Survey of n-3 and n-6 polyun-saturated fatty acids in fish and fish products. Lipids Health Dis. 11:144–153.
  • Stuchlík, M. and Žák, S. (2002). Vegetable lipids as components of functional foods. Biomed. Papers. 146(2):3–10.
  • Taguchi, K., Iwami, K., Ibuk, F. and Kawabata, M. (1992). Oxidative stability of sardine oil embedded in spray-dried egg white powder and its use for n-3 unsaturated fatty acid fortification of cookies. Biosci. Biotechnol. Biochem. 56:560–563.
  • Tiwari, S. and Verma, P. (2011). Microencapsulation technique by solvent evaporation method. Int. J. Pharm. Life Sci. 2(8):998–1005.
  • Velasco, J., Dobarganes, C. and Márquez-Ruiz, G. (2003). Variables affecting lipid oxidation in dried microencapsulated oils. Grasas y Aceites. 54(3):304–314.
  • Wakil, A., Mackenzie, G., Diego-Taboada, A., Bell, J. G. and Atkin, S. L. (2010). Enhanced bioavailability of eicosapentaenoic acid from fish oil after encapsulation within plant spore exines as microcapsules. Lipids. 45(7):645–649.
  • Whateley, T. (1996). Microcapsules: Preparation by interfacial polymerization and interfacial complexation and their applications. In: Microencapsulation: Methods and Industrial Practices, pp. 349–375. Benita, S., Ed., Marcel Dekker Inc., New York, NY, USA.
  • Willumsen, R. (2006). Omega-3 in food and beverages. Agro Food Ind. 17(3):6–8.
  • Wyss, A., von Stockar, U. and Marison, I. (2004). Production and characterization of liquid-core capsules made from cross-linked acrylamide copolymers for biotechnological applications. Biotechnol. Bioeng. 86:563–572.
  • Ye, A., Cui, J., Taneja, A., Zhu, X. and Singh, H. (2009). Evaluation of processed cheese fortified with fish oil emulsion. Food Res. Int. 42(8):1093–1098.
  • Yilmaz, G., Jongboom, R. O. J., Feil, H. and Hennink, W. E. (2001). Encapsulation of sunflower oil in starch matrices via extrusion: Effect of the interfacial properties and processing conditions on the formation of dispersed phased morphologies. Carbohydr. Polym. 45:403–410.
  • Yu, D., Qiao, W., Li, Q. and Pei, G. (2012). Preparation and properties of olive oil microcapsules. J. Fiber. Bioeng. Inform. 5(1):67–76.
  • Yuliani, S., Torley, P. J., D'Arcy, B., Nicholson, T. and Bhandari, B. (2006). Extrusion of mixtures of starch and D-limonene encapsulated with β-cyclodextrin: Flavour retention and physical properties. Food Res. Int. 39(3):318–331.
  • Zoldesi, C. I., Steegstra, P. and Imhof, A. (2007). Encapsulation of emulsion droplets by organo-silica shells. J. Colloid Interf. Sci. 308:121–129.
  • Zuidam, N. and Shimoni, E. (2010). Overview of microencapsulates for use in food products or processes and methods to make them. In: Encapsulation Technologies for Active Food Ingredients and Food Processing, pp. 3–29. Zuidam, N. J. and Nedovic, V. A., Eds., Springer, New York, USA.

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