Journal of Dairy Science
Volume 92, Issue 11 , Pages 5357-5362 , November 2009

Isolation of caseins from whey proteins by microfiltration modifying the mineral balance in skim milk

Received 30 April 2009 ,Accepted 12 August 2009.

References 

  1. Al-Akoum O, Ding LH, Jaffrin MY. Microfiltration and ultrafiltration of UHT skim milk with a vibrating membrane module. Separ. Purif. Tech. 2002;28:219–234
  2. Brans G, Schroen CGPH, Van der Sman RGM, Boom RM. Membrane fractionation of milk: state of the art and challenges. J. Membr. Sci. 2004;243:263–272
  3. Fox PF. Milk proteins: General and historical aspectsProteins. In:  Fox PF,  McSweeney PLH editor. Advanced Dairy Chemistry. Vol. 1:New York, NY: Kluwer Academic; 2003;p. 1–41
  4. Fox PF, McSweeney PLH. Milk Proteins. In:  Fox PF,  McSweeney PLH editor. Dairy Chemistry and Biochemistry. New York, NY: Blackie Academic & Professional; 1998;p. 146–237
  5. Gaucher I, Piot M, Beaucher E, Gaucheron F. Physico-chemical characterization of phosphate-added skim milk. Int. Dairy J. 2007;17:1375–1383
  6. Gaucheron F. The minerals of milk. Reprod. Nutr. Dev. 2005;45:473–483
  7. Gésan-Guiziou G, Boyaval E, Daufin G. Critical stability conditions in crossflow microfiltration of skimmed milk: Transition to irreversible deposition. J. Membr. Sci. 1999;158:211–222
  8. Gésan-Guiziou G, Daufin G, Boyaval E. Critical stability conditions in skimmed milk crossflow microfiltration: Impact on operating modes. Lait. 2000;80:129–138
  9. Ghosh R. Ultrafiltration-based protein bioseparation. In:  Pabby AK,  Rizvi SSH,  Sastre AM editor. Handbook of Membrane Separations A. Boca Raton, FL: CRC Press; 2009;p. 497–511
  10. Huppertz T, Hennebel J-B, Considine T, Shakeel Ur R, Kelly AL, Fox PF. A method for the large-scale isolation of [beta]-casein. Food Chem. 2006;99:45–50
  11. Korhonen H, Pihlanto A. Technological options for the production of health-promoting proteins and peptides derived from milk and colostrum. Curr. Pharm. Des. 2007;13:829–843
  12. Laemmli UK. Cleavage of structural proteins during assembly of head of bacteriophage-T4. Nature. 1970;227:680–685
  13. Lawrence ND, Kentish SE, O’Connor AJ, Barber AR, Stevens GW. Microfiltration of skim milk using polymeric membranes for casein concentrate manufacture. Separ. Purif. Tech. 2008;60:237–244
  14. Le Berre O, Daufin G. Skimmilk crossflow microfiltration performance versus permeation flux to wall shear stress ratio. J. Membr. Sci. 1996;117:261–270
  15. Le Berre O, Daufin G. Microfiltration (0.1 μm) of milk: Effect of protein size and charge. J. Dairy Res. 1998;65:443–455
  16. Mier MP, Ibañez R, Ortiz I. Influence of process variables on the production of bovine milk casein by electrodialysis with bipolar membranes. Biochem. Eng. J. 2008;40:304–311
  17. Mizuno R, Lucey JA. Effects of emulsifying salts on the turbidity and calcium-phosphate-protein interactions in casein micelles. J. Dairy Sci. 2005;88:3070–3078
  18. Patocka G, Jelen P. Calcium association with isolated whey proteins. Can. Inst. Food Sci. Technol. J. 1991;24:218–223
  19. Philippe M, Gaucheron F, Le Graet Y. Physicochemical characteristics of calcium supplemented skim milk: Comparison of three soluble calcium salts. Milchwissenschaft. 2004;59:498–502
  20. Philippe M, Gaucheron F, Le Graet Y, Michel F, Garem A. Physicochemical characterization of calcium-supplemented skim milk. Lait. 2003;83:45–59
  21. Philippe M, Le Graët Y, Gaucheron F. The effects of different cations on the physicochemical characteristics of casein micelles. Food Chem. 2005;90:673–683
  22. Rosenberg M. Current and future applications for membrane processes in the dairy industry. Trends Food Sci. Technol. 1995;6:12–19
  23. Swaisgood HE. Characteristics of Milk3rd ed. O. R. Fennema. In: Food Chemistry. New York, NY: Marcel Dekker; 1996;p. 841–878

PII: S0022-0302(09)70867-7

doi: 10.3168/jds.2009-2335

Journal of Dairy Science
Volume 92, Issue 11 , Pages 5357-5362 , November 2009