Functional Properties of Hydrolysates from Proteolysis of Heat‐denatured Whey Protein Isolate
- 1 March 1996
- journal article
- Published by Wiley in Journal of Food Science
- Vol. 61 (2) , 270-275
- https://doi.org/10.1111/j.1365-2621.1996.tb14174.x
Abstract
Heat‐denatured whey protein isolate was hydrolyzed with trypsin, α‐chymotrypsin, Alcalase or Neutrase to 2.8, 4.3, 6.0 or 8.0% degree of hydrolysis. Hydrolysates were fractionated by ultrafiltration and freeze‐dried. Protein content of retentates showed little variation but permeates differed with enzyme. Surface hydrophobicity increased with hydrolysis but was not linear except for α‐chymotrypsin. Ultrafiltration increased solubility and the permeates and retentates had better solubility than hydrolysates. Retentates had higher emulsifying activity index than hydrolysates while permeates did not form stable emulsions. Permeates formed stable foams but hydrolysates and retentates showed poor foaming characteristics. Specificity of the enzyme, and degree of hydrolysis influenced the functional properties of the peptides. Fractions generated by trypsin, at all levels of hydrolysis generally had higher solubility, emulsifying properties and foaming properties. Permeates from Alcalase hydrolysis had the best foam capacity but low foam stability.Keywords
This publication has 23 references indexed in Scilit:
- Hydrolysates from Proteolysis of Heat‐denatured Whey ProteinsJournal of Food Science, 1995
- Gelation and Emulsification Properties of Partially Insolubilized Whey Protein ConcentratesJournal of Food Science, 1992
- Emulsifying Property of Whey Peptide Fractions as a Function of pH and ionic StrengthJournal of Food Science, 1992
- Solubility and emulsifying properties of caseins and whey proteins modified enzymically by trypsinJournal of Agricultural and Food Chemistry, 1988
- Irreversible heat denaturation of bovine α-lactalbuminJournal of Dairy Research, 1986
- Effects of temperature on food proteins and its implications on functional propertiesC R C Critical Reviews in Food Science and Nutrition, 1986
- Relationships Between Hydrophobicity and Foaming Characteristics of Food ProteinsJournal of Food Science, 1983
- Determination of Foaming Properties of Proteins by Conductivity MeasurementsJournal of Food Science, 1983
- Effects of Ca++, Mg++ and Na+ on Heat Aggregation of Whey Protein ConcentratesJournal of Food Science, 1983
- Emulsifying properties of proteins: evaluation of a turbidimetric techniqueJournal of Agricultural and Food Chemistry, 1978