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Articles

Physical, textural, and rheological properties of whipped cream affected by milk fat globule membrane protein

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Pages 1190-1202 | Received 14 Sep 2017, Accepted 31 Mar 2018, Published online: 27 Jun 2018

References

  • 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. DOI: 10.1016/j.idairyj.2007.10.014.
  • Hasenhuettl, G. L.; Hartel, R. Food Emulsifiers and Their Applications, Second ed. Springer: New York. 2008, 419.
  • Hotrum, N. E.; Cohen Stuart, M. A.; Van Vliet, T.; Avino, S. F.; Van Aken, G. A. Elucidating the Relationship between the Spreading Coefficient, Surface-Mediated Partial Coalescence and Whipping Time of Artificial Cream. Colloids and Surfaces 2005, 206, 71–78. DOI: 10.1016/j.colsurfa.2005.03.004.
  • Walstra, P.; Wouters, J. T. M.; Geurts, T. G. Dairy Science and Technology, 2nd ed.; CRC Press: Boca Raton, FL, 2006; pp 782.
  • Nguyen, V.; Duong, C. T. M.; Vu, V. Effect of Thermal Treatment on Physical Properties and Stability of Whipping and Whipped Cream. Journal of Food Engineering 2015, 163, 32–36. DOI: 10.1016/j.jfoodeng.2015.04.026.
  • Zhou, X. L.; Chen, L. T. X.; Han, J.; Shi, M. X.; Wang, Y. N.; Zhang, L. B.; Li, Y.; Wu, W. Stability and Physical Properties of Recombined Dairy Cream: Effects of Soybean Lecithin. International Journal of Food Properties 2017, 20, 10, 2223–2233. DOI: 10.1080/10942912.2016.1233434.
  • Thanasukarn, P.; Pongsawatmanit, R.; Mc Clements, D. J. Influence of Emulsifier Type on Freeze-Thaw Stability of Hydrogenated Palm Oil-In-Water Emulsions. Food Hydrocolloids 2004, 18, 1033–1043. DOI: 10.1016/j.foodhyd.2004.04.010.
  • Wollenweber, C.; Makievski, A. V.; Miller, R.; Daniels, R. Adsorption of Hydroxypropyl Methylcellulose at the Liquid/Liquid Interface and the Effect on Emulsion Stability. Colloids and Surfaces A: Physicochemical and Engineering Aspects 2000, 172, 91–101.
  • Allen, K. E.; Dickinson, E.; Murray, B. Acidified Sodium Caseinate Emulsion Foams Containing Liquid Fat: A Comparison with Whipped Cream. LWT-Food Science and Technology 2006, 39, 225–234. DOI: 10.1016/j.lwt.2005.02.004.
  • Firebaugh, J. D.; Daubert, C. R. Emulsifying and Foaming Properties of a Derivatized Whey Protein Ingredient. International Journal of Food Properties 2005, 8, 2, 243–253. DOI: 10.1081/JFP-200060245.
  • Needs, E. C.; Huitson, A. The Contribution of Milk Serum Proteins to the Development of Whipped Cream Structure. Food Structures 1991, 10, 353–360.
  • He, S. H.; Tang, H. S.; Yi, H. X.; Xu, W. L.; Ma, Y.; Wang, R. C. Properties of Emulsions from Milk Fat Globule Membrane and Its Components. International Journal of Food Properties 2017, 1, 343–348.
  • 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. DOI: 10.1016/j.foodchem.2015.10.005.
  • Sajedi, M.; Nasirpour, A.; Keramat, J.; Desobry, S. Effect of Modified Whey Protein Concentrate on Physical Properties and Stability of Whipped Cream. Food Hydrocolloids 2014, 36, 5, 93–101. DOI: 10.1016/j.foodhyd.2013.09.007.
  • Michalski, M.; Briard, V.; Michel, F. Apparent Zeta-Potential as a Tool to Assess Mechanical Damages to the Milk Fat Globule Membrane. Lait 2001, 81, 787–796. DOI: 10.1051/lait:2001105.
  • Scurlock, P.;. Production of Cream from Ultrafiltered Milk. Journal of Dairy Research 1986, 53, 431. DOI: 10.1017/S0022029900025048.
  • Palanuwech, J.; Potineni, R.; Roberts, R. F.; Coupland, J. N. A Method to Determine Free Fat in Emulsions. Food Hydrocolloids 2003, 17, 55–62. DOI: 10.1016/S0268-005X(02)00035-8.
  • Mather, I. H.;. A Review and Proposed Nomenclature for Major Proteins of the Milk-Fat Globule Membrane. Journal of Dairy Science 2000, 83, 203–247. DOI: 10.3168/jds.S0022-0302(00)74870-3.
  • 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. DOI: 10.1016/S0958-6946(02)00034-1.
  • Vanapalli, S. A.; Coupland, J. N. Emulsion Under Shear –The Formation and Properties of Partially Coalesced Lipid Structures. Food Hydrocolloids 2001, 15, 507–512. DOI: 10.1016/S0268-005X(01)00057-1.
  • Hotrum, N. E.; Stuart, M. A. C.; Van Vliet, T.; Van Aken, G. A. Spreading of Partially Crystallized Oil Droplets on an Air/Water Interface. Colloids and Surfaces A: Physicochemical and Engineering Aspects 2004, 240, 83–92. DOI: 10.1016/j.colsurfa.2004.03.015.
  • Zhao, Q. Z.; Zhao, M. M.; Wang, J. S.; Wang, C. H.; Yang, B. Effects of Sodium Caseinate and Whey Proteins on Whipping Properties and Texture Characteristics of Whipped Cream. Journal of Food Process Engineering 2008, 31, 671–683. DOI: 10.1111/jfpe.2008.31.issue-5.
  • Goff, H. D. Colloidal Aspects of Ice Cream – A Review. International Dairy Journal 1997, 7, 363–373. DOI: 10.1016/S0958-6946(97)00040-X.
  • Leser, M.; Michel, M. Aerated Milk Protein Emulsions – New Microstructural Aspects. Current Opinion in Colloid and Interface Science 1999, 4, 239–244. DOI: 10.1016/S1359-0294(99)00037-0.
  • Sofjan, R. P.; Hartel, R. W. Effects of Overrun on Structural and Physical Characteristics of Ice Cream. International Dairy Journal 2004, 14, 255–262. DOI: 10.1016/j.idairyj.2003.08.005.
  • Dickinson, E.; Golding, M. Depletion flocculation of Emulsions Containing Unadsorbed Sodium Caseinates. Food Hydrocolloids 1997, 11, 13–18. DOI: 10.1016/S0268-005X(97)80005-7.
  • Zhao, Q. Z.; Zhao, M. M.; Li, J. R.; Yang, B.; Su, G. W.; Cui, C.; Jiang, Y. M. Effect of Hydroxypropyl Methylcellulose on the Textural and Whipping Properties of Whipped Cream. Food Hydrocolloids 2009, 23, 2168–2173. DOI: 10.1016/j.foodhyd.2009.04.007.
  • Jakubczyk, E.; Niranjan, K. Transient Development of Whipped Cream Properties. Journal of Food Engineering 2006, 77, 79–83. DOI: 10.1016/j.jfoodeng.2005.06.046.
  • Birkett, R. J. Role of Interfacial Processes in the Whipping of Dairy Cream. In Proceedings of Sixth International Congress of Food Science and Technology; Mc Loughlin, J. V., McKenna, B. M., Ed(s).; Boole Press: Dublin, 1983; Vol. 2, pp 149–150.
  • Speroni, F.; Beaumal, V.; De Lamballerie, M.; Anton, M.; Anon, M. C.; Puppo, M. C. Gelation of Soybean Proteins Induced by Sequential High-Pressure and Thermal Treatments. Food Hydrocolloids 2009, 23, 1433–1442. DOI: 10.1016/j.foodhyd.2008.11.008.
  • Kneifel, W.; Paquin, P.; Abert, T.; Richard, J. P. Water-Holding Capacity of Proteins with Special Regard to Milk-Proteins and Methodological Aspects – A Review. Journal of Dairy Science 1991, 74, 2027–2041. DOI: 10.3168/jds.S0022-0302(91)78373-2.
  • Stanley, D. W.; Goff, H. D.; Smith, A. K. Texture-Structure Relationships in Foamed Dairy Emulsions. Food Research International 1996, 29, 1–13. DOI: 10.1016/0963-9969(95)00063-1.
  • Szczesniak, A. S.;. Texture Is a Sensory Property. Food Quality and Preference 2002, 13, 215–225. DOI: 10.1016/S0950-3293(01)00039-8.
  • Rullier, B.; Axelos, M. A. V.; Langevin, D.; Novales, B. ß-Lactoglobulin Aggregates in Foam Films: Effect of the Concentration and Size of the Protein Aggregates. Journal of Colloid and Interface Science 2010, 343, 330–337. DOI: 10.1016/j.jcis.2009.11.015.
  • Lal, S. N. D.; O’Connor, C. J.; Eyres, L. Application of Emulsifiers/Stabilizers in Dairy Products of High Rheology. Advances in Colloid and Interface Science 2006, 123, 433–437. DOI: 10.1016/j.cis.2006.05.009.