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Original Articles

Properties of emulsions from milk fat globule membrane and its components

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Pages 1342-1353 | Received 14 Jan 2017, Accepted 14 Jun 2017, Published online: 14 Dec 2017

References

  • Perrechil, F.A.; Ramos, V.A.; Cunha, R.L. Synergistic Functionality of Soybean 7S and 11S Fractions in Oil-in-Water Emulsions: Effect of Protein Heat Treatment. International Journal of Food Properties 2015, 18, 2593–2602.
  • Dewettinck, K.; Rombaut, R.; Thienpont, N.; Le, T.T.; Messens, K.; Camp, J.V. Nutritional and Technological Aspects of Milk Fat Globule Membrane Material. International Dairy Journal 2008, 18, 436–457.
  • Kanno, C. Emulsifying Properties of Bovine Milk Fat Globule Membrane in Milk Fat Emulsion: Conditions for the Reconstitution of Milk Fat Globules. Journal of Food Science 1989, 57, 1534–1539.
  • Martin, H. M.; Hancock, J.T.; Salisbury, V.; Harrison, R. Role of Xanthine Oxidoreductase as an Antimicrobial Agent. Infection and Immunity 2004, 72(9), 4933–4939.
  • Matsumoto, M.; Hara, K.; Kimata, H.; Benno, Y.; Shimamoto, C. Exfoliation of Helicobacter Pylori from Gastric Mucin by Glycopolypeptides from Buttermilk. Journal of Dairy Science 2005, 88, 49–54.
  • Matsumoto, M.; Tani, H.; Ono, H.; Ohishi, H.; Benno, Y. Adhesive Property of Bifidobacterium Lactis LKM512 and Predominant Bacteria of Intestinal Microflora to Human Intestinal Mucin. Current Microbiology 2002, 44, 212–215.
  • Saeland, E.; de Jong, M.A.W.P.; Nabatov, A.A.; Kalay, H.; Geijtenbeek, T.B.H.; Van Kooyk, Y. MUC1 in Human Milk Blocks Transmission of human Immu-nodeficiency Virus from Dendritic Cells to T Cells. Molecular Immunology 2009, 46, 2309–2316.
  • Rombaut, R.; Van Camp, J.; Dewettinck, K. Analysis of Phospho- and Sphingolipids in Dairy Products by a New HPLC Method. Journal of Dairy Science 2005, 88, 482–488.
  • Phan, T.T.Q.; Asaduzzaman, M.; Le, T.T.; Fredrick, E.; Van der Meeren, P.; Dewettinck, K. Composition and Emulsifying Properties of a Milk Fat Globule Membrane Enriched Material. International Dairy Journal 2013, 29, 99–106.
  • Phan, T.T.Q.; Le, T.T.; Walle, D.V.D.; Van der Meeren, P.; Dewettinck, K. Combined effects of Milk Fat Globule Membrane Polar Lipids and Protein Concentration on the Stability of Oil-in-water Emulsions. International Diary Journal 2016, 52, 42–49.
  • Kanno, C., Kim, D.-H. A simple Procedure for the Preparation of Bovine Milk Fat Globule Membrane and a Comparison of Its Composition, Enzymatic Activities, and Electrophoretic Properties with those Prepared by Other Methods. Agricultural and Biological Chemistry 1990, 54, 2845–2854.
  • Lu, J.; Wang, X.Y.; Zhang, W.Q.; Liu, L.; Pang, X.Y.; Zhang, S.W.; Lv, J.P. Comparative Proteomics of Milk Fat Globule Membrane in Different Species Reveals Variations in Lactation and Nutrition. Food Chemistry 2015, 196, 665–672.
  • Tang, H.S., He, S.H., Peng, F.S., Wang, R.C., Li Q., Ma, Y. The Effects of Milk Fat Globule Membrane and Its Individual Components on Dough Properties and Bread Quality. RSC Advances 2016, 6, 102617–102625.
  • AOAC. Official Methods of Analysis, Association of Official Analytical Chemists, 15th edn.; Washington DC, 1990.
  • Lopez, C.; Cauty, C.; Rousseau, F.; Blot, M.; Margolis, A.; Famelart, M. Lipid Droplets Coated with Milk Fat Globule Membrane Fragments: Microstructure and Functional Properties as a Function of pH. Food Research International 2017, 91, 26–37.
  • He, S.H.; Ma, Y.; Wang, J.Q.; Li, Q.M.; Tang, S.H.; Zhao, C.H.; Li, H.M.; Maubois, J.L. Characterization of Fat Globules and Milk Fat Globule Membrane Proteins in Milk of Different Yak Breeds. Dairy Science &Technology 2010, 90, 601–609.
  • Corredig, M.; Dalgleish, D.G. Isolates from Industrial Buttermilk: Emulsifying Properties of Materials Derived from the Milk Fat Globule Membrane. Journal of Agricultural and Food Chemistry 1997, 45, 4595–4600.
  • Morin, P.; Jiménez-Flores, R.; Pouliot, Y. Effect of Processing on the Composition and Microstructure of Buttermilk and Its Milk Fat Globule Membranes. International Dairy Journal 2007, 17, 1179–1187.
  • Lopez, C.; Cauty, C.; Guyomarc’h, F. Organization of Lipids in Milks, Infant Milk Formulas and Various Dairy Products: Role of Technological Processes and Potential Impacts. Dairy Science and Technology 2015, 95, 863–893.
  • Gallier, S.; Vocking, K.; Post, J.A.; van de Heijning, B.; Acton, D.; van der Beek, E.M.; van Baalen, T. A Novel Infant Milk Formula Concept: Mimicking the Human Milk Fat Globule Structure. Colloids and Surfaces B: Biointerfaces 2015, 136, 329–339.
  • Lambert, S.; Leconte, N.; Blot, M.; Rousseau, F.; Robert, B.; Camier, B.; Gésan-Guiziou, G. The Lipid Content and Microstructure of Industrial Whole Buttermilk and Butter Serum Affect the Efficiency of Skimming. Food Research International 2016, 83, 121–130.
  • Ye, A.; Singh H.; Taylor M.W.; Anema S. Characterization of Protein Components of Natural and Heat-Treated Milk Fat Globule Membranes. International Dairy Journal 2002, 12, 393–402.
  • Roesch, R.R.; Rincon, A.; Corredig, M. Emulsifying Properties of Fractions Prepared from Commercial Buttermilk by Microfiltration. Journal of Dairy Science 2004, 87, 4080–4087.
  • Vanderghem, C.; Bodson, P.; Danthine, S.; Paquot, M.; Deroanne, C.; Blecker, C. Milk Fat Globule Membrane and Buttermilks: from Composition to Valorization. Biotechnologie, Agronomie, Société et Environnement 2010, 14, 485–500.
  • Urbina-Villalba, G.; Garcia-Sucre, M. Influence of Surfactant Distribution on the Stability of Oil/Water Emulsions towards Flocculation and Coalescence. Colloids and Surfaces A-Physicochemical and Engineering Aspects 2001, 190, 111–116.
  • Ercelebi, E.A.; Ibanoglu, E. Stability and Rheological Properties of Egg Yolk Granule Stabilized Emulsions with Pectin and Guar Gum. International Journal of Food Properties 2010, 13, 618–630.
  • Faria, J.T.D.; Oliveira, E.B.D.; Minim, V.D.R.P.; Minim, L.A. Emulsifying Properties of β-Lactoglobulin and QuillajaBark Saponin Mixtures: Effects of Number of Homogenization Passes, pH, and NaCl Concentration. International Journal of Food Properties 2016, 1–12.
  • Day, L., Zhai, J.L., Xu, M., Jones, N.C., Hoffmann, S.V., Wooster, T.J. Conformational Changes of Globular Proteins Adsorbed at Oil-in-Water Emulsion Interfaces Examined by Synchrotron Radiation Circular Dichroism. Food Hydrocolloids 2014, 34, 78–87.
  • Kanno, C.; Shimomura, Y.; Takano, E. Physicochemical Properties of Milk Fat Emulsions Stabilized with Bovine Milk Fat Globule-Membrane. Journal of Food Science 1991, 56, 1219–1223.

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