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Formation and Physical Properties of Milk Protein Gels

Journal of Dairy Science · 2002 · Vol. 85(2) · pp. 281–294
J.A. Lucey

Abstract

Gelation of milk proteins is the crucial first step in both cheese and yogurt manufacture. Several types of milk gels are discussed, with an emphasis on recent developments in our understanding of how these gels are formed and some of their key physical properties. Areas discussed include the latest dual-binding model for casein micelles; some recent developments in rennet-induced gelation; review of the methods that have been used to monitor milk coagulation; and a discussion of some of the possible causes for the wheying-off defect in yogurts. Casein micelles are the primary building blocks of casein-based gels; however, controversy about its structure continues. The latest model proposed for the formation of casein micelles is the dual-binding model proposed by Horne, 1998, which suggests that casein micelles are formed as a result of two binding mechanisms, namely hydrophobic attraction and colloidal calcium phosphate (CCP) bridging. Most previous models for the casein micelle have treated milk gelation from the viewpoint of simple particle destabilization and aggregation, but they have not been able to explain several unusual rheological properties of milk gels. Although there have been many techniques used to monitor the milk gelation process over the past few decades, only a few appear attractive as possible in-vat coagulation sensors. Another important aspect of milk gels is the defect in yogurts called wheying-off, which is the appearance of whey on the gel surface. The factors responsible for its occurrence are still unclear, but they have been investigated in model acid gel systems.

Proteins in Food SystemsMicroencapsulation and Drying ProcessesFood Chemistry and Fat AnalysisMicelleRennetCaseinChemistryRheologyMilk proteinCoagulationColloidChemical engineeringFood science

MeSH terms

Whey ProteinsAnimalsAwards and PrizesCaseinsCattleDairy ProductsDairyingFood TechnologyGelsMicellesMilkMilk ProteinsModels, ChemicalRheologySocieties, Scientific

Funding

  • U.S. Department of Agriculture
  • Cooperative State Research, Education, and Extension Service
Citations
632
FWCI
19.17
field-weighted impact
References
116
Percentile
100%
vs. same field & year
Citations per year
References
Yoghurt Science and Technology
Food Research International · 2000 · 781 citations
Formation and physical properties of acid milk gels: a review
Food Research International · 1997 · 562 citations
Developments in dairy chemistry—1
Food Chemistry · 1983 · 919 citations
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