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Original Articles

Double emulsion oil-in water-in oil (O/W/O) stabilized by sodium caseinate and k-carrageenan

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Pages 1752-1757 | Received 14 Jan 2018, Accepted 24 Mar 2018, Published online: 09 Jul 2018

References

  • Yoshida, K.; Sekine, T.; Matsuzaki, F.; Yanaki, T.; Yamaguchi, M. Stability of Vitamin A in Oil-In-Water-In-Oil-Type Multiple Emulsions. J. Am. Oil Chem. Soc. 1999, 76, 1–6.
  • Selmi, G. A. R.; Bozza, F. T.; Thomazini, M.; Bolini, H. M. A.; Trindade, C. S. F. Microencapsulation of Aspartame by Double Emulsion Followed by Complex Coacervation to Provide Protection and Prolong Sweetness. Food Chem. 2013, 139, 72–78.
  • Laugel, C.; Baillet, A.; Ferrier, D.; Grossiord, J. L.; Marty, J. P. Incorporation of Triterpenic Derivatives Within an o/w/o Multiple Emulsion: Structure and Release Studies. Int. J. Cosmet. Sci. 1998, 20, 183–91.
  • Regan, J. O.; Mulvihill, D. M. Sodium Caseinate-Maltodextrin Conjugate Stabilized Double Emulsions: Encapsulation and Stability. Food Res. Int. 2010, 43, 224–231.
  • Norton, J. E.; Norton, I. T. Designer Colloids-Towards Healthy Everyday Foods. Soft Matter 2010, 6, 3735–3742.
  • Páez, M. C.; Quezada, C. M.; Bracamontes, L. I.; Ochoa, H. O. G.; Lara, J. L. A. Coalescence in Double Emulsions. Langmuir 2012, 28, 5934–5939.
  • Dickinson, E. Double Emulsions Stabilized by Food Biopolymers. Food Biophys. 2011, 6, 1–11.
  • Weiss, J.; Scherze, I.; Muschiolik, G. Polysaccharide Gel with Multiple Emulsion. Food Hydrocoll. 2005, 19, 605–615.
  • Garti, N.; Aserin, A. Double Emulsion Stabilized by Macromolecular Surfactants. Adv. Colloid Interface Sci. 1996, 65, 37–69.
  • Mun, S.; Choi, Y.; Rho, S.-J.; Kang, C.-G.; Park, C.-H.; Kim, Y.-R. Preparation and Characterization of Water/Oil/Water Emulsions Stabilized by Polyglycerol Polyricinoleate and Whey Protein Isolate. J. Food Sci. 2010, 75 (2), 116–125.
  • Lutz, R.; Aserin, A.; Wicker, L.; Garti, N. Double Emulsions Stabilized by A Charged Complex Of Modified Pectin and Whey Protein Isolate. Colloids Surfaces B: Biointerfaces 2009, 72, 121–127.
  • Benichou, A.; Aserin, A.; Garti, N. Double Emulsions Stabilized With Hybrids of Natural Polymers for Entrapment and Slow Release of Active Matters. Adv. Colloid Interface Sci. 2004, 108–109, 29–41.
  • Benichou, A.; Aserin, A.; Garti, N. O/W/O Double Emulsions Stabilized With WPI-polysaccharide Conjugates. Colloids Surfaces A: Physicochem. Eng. Aspect 2007, 297, 211–220.
  • Schuch, A.; Helfenritter, C.; Funck, M.; Schuchmann, H. P. Observations On The Influence Of Different Biopolymers On Coalescence Of Inner Water Droplets In W/O/W (Water-In-Oil-In-Water) Double Emulsions. Colloids Surfaces A: Physicochem. Eng. Aspect 2015, 475, 2–8.
  • Jahaniaval, F.; Kakuda, Y.; Abraham, V. Characterization of a Double Emulsion System (Oil-In-Water-In-Oil Emulsion) with Low Solid Fats: Microstructure. J. Am. Oil Chem. Soc. 2003, 80, 25–31.
  • Hebishy, E.; Buffa, M.; Guamis, B.; Trujillo, A. -J. Stability of Sub-Micron Oil-in-Water Emulsions Produced by Ultra High Pressure Homogenization and Sodium Caseinate as Emulsifier. Chem. Eng. Trans. 2013, 32, 1813–1818.
  • Perrechil, F. A.; Cunha, R. L. Oil-In-Water Emulsions Stabilized by Sodium Caseinate: Influence of pH, High-pressure Homogenization And Locust Bean Gum Addition. J. Food Eng. 2010, 97, 441–448.
  • Rousseau, D. Fat Crystals and Emulsion Stability - A Review. Food Res. Int. 2000, 33, 3–14.
  • Spyropoulos, F.; Melnik, S. F.; Norton, I. T. W/O/W Emulsions Stabilized by Fat Crystals - Their Formulation, Stability and Ability to Retain Salt. Procedia Food Sci. 2011, 1, 1700–1708.
  • Nadin, M.; Rousseau, D.; Ghosh, S. Fat Crystal-Stabilized Water-in-oil Emulsions as Controlled Release Systems. LWT - Food Sci. Technol. 2014, 56, 248–255.
  • Melnik, S. F.; Norton, I. T.; Spyropoulos, F. Fat-crystal Stabilized W/O Emulsions For Controlled Salt Release. J. Food Eng. 2010, 98, 437–442.
  • Pal, R. Multiple O/W/O Emulsion Rheology. Langmuir 1996, 12, 2220–2225.
  • Pradhan, M.; Rousseau, D. A One-step Process For Oil-in-water-in-oil Double Emulsion Formation Using A Single Surfactant. J. Colloid Interface Sci. 2012, 386, 398–404.
  • Sahin, S.; Sawalha, H.; Schroën, K. High Throughput Production Of Double Emulsions Using Packed Bed Premix Emulsification. Food Res. Int. 2014, 66, 78–85.
  • Tu, F.; Lee, D. Controlling the Stability and Size of Double-Emulsion-Templated Poly(lactic-co-glycolic) Acid Microcapsules. Langmuir 2012, 28, 9944–9952.
  • Li, Z.; Liu, H.; Zeng, L.; Liu, H.; Yang, S.; Wang, Y. Preparation of High Internal Water-Phase Double Emulsions Stabilized by a Single Anionic Surfactant for Fabricating Interconnecting Porous Polymer Microspheres. Langmuir 2014, 30, 12154–12163.
  • Liu, L.; Zhao, Q.; Liu, T.; Kong, J.; Long, Z.; Zhao, M. Sodium Caseinate/carboxymethylcellulose Interactions at Oil-water Interface: Relationship To Emulsion Stability. Food Chem. 2012, 132, 1822–1829.
  • Hanson, J. A.; Chang, C. B.; Graves, S. M.; Li, Z.; Mason, T. G.; Deming, T. J. Nanoscale Double Emulsions Stabilized by Single-component Block Copolypeptides. Nature 2008, 455, 85–88.
  • Jahanzad, F.; Crombie, G.; Innes, R.; Sajjadi, S. Catastrophic Phase Inversion via Formation of Multiple Emulsions: A Prerequisite For Formation Of Fine Emulsions. Chem. Eng. Res. Des. 2009, 87, 492–498.
  • Thakur, R. K.; Villette, C.; Aubry, J. M.; Delaplace, G. Dynamic Emulsification and Catastrophic Phase Inversion of Lecithin-based Emulsions. Colloids Surfaces A: Physicochem. Eng. Aspect 2008, 315, 285–293.
  • Nguyen, V.; Duong, C. T. M.; Vu, V. Effect of Thermal Treatment on Physical Properties And Stability of Whipping And Whipped Cream. J. Food Eng. 2015, 163, 32–36.
  • Estevez, A. C.; Vazquez, J. F. T.; Hartel, R. W. Effect of Processing and Composition on the Crystallization and Mechanical Properties of Water-in-Oil Emulsions. J. Am. Oil Chem. Soc. 2013, 90, 1195–1201.
  • Walstra, P. Physical Chemistry of Foods, CRC Press, 2002.
  • Oh, C.; Park, J.; Shin, S.; Oh, S. O/W/O Multiple Emulsions via One-Step Emulsification Process. J. Disper. Sci. Technol. 2004, 25, 53–62.

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