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Original Articles

Preparation and characterization of W/O/W type double emulsion containing PGPR–lecithin mixture as lipophilic surfactant

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Pages 486-493 | Received 08 Apr 2016, Accepted 13 Apr 2016, Published online: 20 Apr 2016

References

  • Yan, J. and Pal, R. (2001) Osmotic swelling behavior of globules of W/O/W emulsion liquid membranes. J. Membr. Sci., 190: 79–91.
  • Malone, M.E., Appelqvist, I.A.M., and Norton, I.T. (2003) Oral behaviour of food hydrocolloids and emulsions. Food Hydrocolloids, 17: 775–784.
  • Kaimainen, M., Marze, S., Jarvenpaa, E., Anton, M., and Huopalahti, R. (2015) Encapsulation of betalain into w/o/w double emulsion and release during in vitro intestinal lipid digestion. LWT-Food Sci. Technol., 60: 899–904.
  • Oppermann, A.K.L., Renssen, M., Schuch, A., Stieger, M., and Scholten, E. (2015) Effect of gelation of inner dispersed phase on stability of (w1/o/w2) multiple emulsion. Food Hydrocolloids, 48: 17–26.
  • Benichou, A., Aserin, A., and Garti, N. (2004) Double emulsions stabilized with hybrids of natural polymers for entrapment and slow release of active matters. Adv. Colloid Interface Sci., 10: 29–41.
  • Kanouni, M., Rosano, H.L., and Naouli, N. (2002) Preparation of a stable double emulsion (W1/O/W2): role of the interfacial films on the stability of the system. Adv. Colloid Interface Sci., 99: 229–254.
  • Jiao, J., Rhodes, D.G., and Burgess, D.J. (2002) Multiple emulsion stability: Pressure balance interfacial film strength. J. Colloid Interface Sci., 250: 444–450.
  • Weiss, J. and Muschiolik, G. (2007) Factors affecting the droplet size of water-in-oil emulsions (W/O) and the oil globule size in water-in-oil-in-water emulsions (W/O/W). J. Dispersion Sci. Technol., 28: 703–716.
  • Wilson, R., Van Schie, B.J. & Howes, D. (1998) Overview of the preparation, use and biological studies on polyglycerol polyricinoleate (PGPR). Food Chem. Toxicol., 36: 711–718.
  • CODEX General Standard for Food Additives (2013) CODEX STAN 192-1995, pp.140.
  • Scherze, I., Knoth, A., and Muschioilk, G. (2006) Effect of emulsification method on the properties of lecithin- and PGPR- stabilized water-in-oil-emulsions. J. Dispersion Sci. Technol., 27: 427–434.
  • Behrend, O., Ax, K., and Schubert, H. (2000) Influence of continuous phase viscosity on emulsification by ultrasound. Ultrason. Sonochem., 7: 77–85.
  • Liu, W., Liu, J.H., Xie, M.Y., Liu, C.M., Liu, W.L., and Wan, J. (2009) Characterization and high-pressure microfluidization- induced activation of polyphenoloxidase from Chinese pear (Pyrus pyrifolia Nakai). J Agric. Food Chem., 57: 5376–5380.
  • Fechner, A., Knoth, A., Scherze, I., and Muschiolik, G. (2007) Stability and release properties of double-emulsions stabilized by caseinate-dextran conjugates. Food Hydrocolloids, 21: 943–952.
  • Vermeir, L., Sabatino, P., Balcaen, M., Ranst, G.V., and Meeren, P.V. (2014) Evaluation of the effect of homogenization energy input on the enclosed water volume of the concentrated W/O/W emulsions by low-resolution T2- relaxometry. Food Hydrocolloids, 34: 34–38.
  • Hemar, Y., Li Jiang, C., Olive, C.M., Luz, S., and Augustin, M. (2010) Encapsulation of resveratrol using water-in-oil-in-water double emulsions. Food Biophys., 5: 120–127.
  • Claesson, P.M., Blomberg, E., and Poptoshev, E. (2004) Surfaces forces and emulsion stability. In S. E. Friberg K. Larsson & J. Sjöblom (Eds.), Food emulsions (4th ed.). New York: Marcel Dekker, (chapter 7) (e-book version).
  • Mishchuk, N.A., Sanfeld, A., and Steinchen, A. (2004) Interparticle interaction on concentrate water-oil emulsions. Adv. Colloid Interface Sci., 112: 129–157.
  • Kawashima, Y., Hino T., Takeuchi, H., and Niwa, T. (1992) Stabilization of water/oil/water multiple emulsion with hypertonic inner aqueous phase. Chem. Pharm. Bull., 40: 1240–1246.
  • Rydhag, L. (1979) The importance of phase behavior of phospholipids for emulsion stability. Fett Wiss. Technol., 81: 168–176.
  • Thakur, R.K., Villette, C., Aubry, J.M., and Delaplace, G. (2007) Formulation composition map of a lecithin-based emulsion. Colloids Surf., A, 310: 55–61.
  • Sapei, L., Naqvi, M.A., and Rousseau, D. (2012) Stability and release properties of double emulsions for food applications. Food Hydrocolloids, 27: 316–323.
  • Schmidts, T., Dobler, D., Nissing, C., and Runkel, F. (2009) Influence of hydrophilic surfactants on the properties of multiple W/O/W emulsions. J Colloid Interface Sci., 338: 184–192.
  • Knoth, A., Scherze, I., and Muschiolik, G. (2005) Stability of water-in-oil emulsions containing phosphatidylcoline-depleted lecithin. Food Hydrocolloids, 19: 635–640.
  • Ushikubo, F.Y. and Cunha, R.L. (2014) Stability mechanisms of liquid water-in-oil emulsions. Food Hydrocolloids, 34: 145–153.
  • McClements, D. (2004) Food Emulsions: Principles, practice and techniques, Boca Raton, CRC Press; pp.20–50.
  • Khalid, N., Kobayashi, I., Neves, M:A., Uemura, K., and Nakajima, M. (2013) Preparation and characterization of water-in-oil-in-water emulsions containing a high concentration of L-Ascorbic acid. Bioci. Biotechnol. Biochem., 77: 1171–1178.
  • Aditya, N.P., Aditya, S., Yang, H., Kim, H.W., Park, S.O., and Ko, S. (2015) Co-delivery of hydrophobic curcumin and hydrophilic catechin by a water-in-oil-in-water double emulsion. Food Chem., 173: 7–13.
  • Bou, R., Cofrades, S., and Jimenez-Colmenero, F. (2014) Physicochemical properties and riboflavin encapsulation in double emulsions with different lipid sources. LWT-Food Sci. Technol., 59: 621–628.
  • Huck-Iriart, C., Ruiz-Henestrosa, V.M.P., Candal, R.J., and Herrera, M.L. (2013) Effect of aqueous phase composition on the stability of sodium caseinate/sunflower oil emulsions. Food Bioprocess Technol., 6: 2406–2418.
  • Jafari, S.M., Assadpoor, E., He Y., and Bhandari, B. (2008) Re-coalescence of emulsion droplets during high-energy emulsification. Food Hydrocolloids, 22: 1191–1202.
  • Eberth, K. and Merry, J. (1983) A comparative-study of emulsions prepared by ultrasound and by a conventional method-Droplet size measurements by means of a Coulter-Counter and microscopy. Int. J. Pharmaceutics, 14: 349–353.

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