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Physicochemical properties of micellar casein retentates generated at different microfiltration temperatures.

Authors :
France, Thomas C.
Bot, Francesca
Kelly, Alan L.
Crowley, Shane V.
O'Mahony, James A.
Source :
Journal of Dairy Science. May2024, Vol. 107 Issue 5, p2721-2732. 12p.
Publication Year :
2024

Abstract

Processing temperature has a significant influence on the composition and functionality of the resulting streams following microfiltration (MF) of skim milk. In this study, MF and diafiltration (DF) were performed at 4 or 50°C to produce β-casein (β-CN)-depleted and nondepleted (i.e., native casein profile) micellar casein isolate retentates, respectively. Microfiltration combined with extensive DF resulted in a 40% depletion of β-CN at 4°C, whereas no β-CN depletion occurred at 50°C. Microfiltration at 4°C led to higher transmission of calcium into permeates, with retentate generated at 4°C containing less total calcium compared with retentate generated at 50°C, based on the volume of retentate remaining. Higher heat stability at 120°C was measured for retentates generated at 4°C compared with those at 50°C, across all pH values measured. Retentates generated at 4°C also had significantly lower ionic calcium values at each pH compared with those generated at 50°C. Higher apparent viscosities at 4°C were measured for retentates generated at 4°C compared with retentates generated at 50°C, likely due to increased voluminosity of β-CN-depleted casein micelles. The results of this study provide new information on how changing the composition of MF retentate, by appropriate control of processing temperature and DF, can alter physicochemical properties of casein micelles, with potential implications for ingredient functionality. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00220302
Volume :
107
Issue :
5
Database :
Academic Search Index
Journal :
Journal of Dairy Science
Publication Type :
Academic Journal
Accession number :
176632281
Full Text :
https://doi.org/10.3168/jds.2023-23918