Medical Journals

Aggregation of Rennet-altered Casein Micelles at Low Temperatures.

Authors:
  • Bansal Nidhi
  • Fox Patrick F
  • McSweeney Paul L H

From: Department of Food and Nutritional Sciences, University College, Cork, Ireland.

Journal of agricultural and food chemistry

  • Publish Date: Apr 2007
  • ISSN: 0021-8561
  • Volume: 55
  • Issue: 8
  • Pages: 3120-6
  • Medium: Print
  • Language: English
  • Citation (JAMA): Bansal Nidhi, Fox Patrick F, McSweeney Paul L H, et al. Aggregation of Rennet-altered Casein Micelles at Low Temperatures.. J. Agric. Food Chem. Apr 2007;55:3120-6

Abstract

The rennet-induced coagulation of bovine milk at 10 degrees C was investigated. The rate of change of absorbance at 600 nm was higher in milk renneted at 30 degrees C than that at 10 degrees C. The amount of casein sedimented on centrifuging skim milk at 5000g for 1 h at 10 degrees C increased with time after renneting. The viscosity of milk at 10 degrees C at low shear rates did not change significantly until 10 h after rennet addition, but it increased markedly after 20 h. Smaller particles in milk at 10 degrees C disappeared slowly over 36 h after rennet addition and aggregated into larger particles. These results suggested that casein micelles in milk aggregate at low temperatures. Reasons for the slow aggregation of milk renneted at 10 degrees C were investigated by inhibiting chymosin activity by pepstatin A. It is likely that beta-casein, or its hydrolysis, plays a role in aggregation of rennet-altered casein micelles at low temperatures.

Mesh Headings (Keywords): Animals, Caseins, Chemistry, Physical, Chymosin, Cold, Micelles, Milk, Particle Size, Viscosity


Check for Full Text / PubMed Unique Identifier (PMID): 17381108


This abstract is part of PubMed, a service of the U.S. National Library of Medicine. PubMed includes more than 17 million citations from MEDLINE and other life science journals for biomedical articles. See Copyright and Disclaimers.

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The data herein was last updated on July 8th, 2008 and may not reflect the most current and accurate data available from NLM.


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