Literature DB >> 22234325

Influence of gastric digestive reaction on subsequent in vitro intestinal digestion of sodium caseinate-stabilized emulsions.

Jessie Li1, Aiqian Ye, Sung Je Lee, Harjinder Singh.   

Abstract

In this study, in vitro intestinal lipid digestion and the physicochemical and microstructural changes of sodium caseinate-stabilized emulsions were examined after the emulsions had been digested in a model simulated gastric fluid containing pepsin for different times. The average size, size distribution, microstructure, proteolysis of interfacial proteins and lipolysis of the emulsion droplets were monitored as a function of digestion time. The emulsion droplets underwent extensive droplet flocculation, with some coalescence together with proteolysis of interfacial proteins, in simulated gastric fluid, resulting in changes in the droplet size and the microstructure of the emulsions. In general, digestion in simulated gastric fluid containing pepsin accelerated coalescence of the emulsion droplets during subsequent digestion in simulated intestinal fluid containing pancreatic lipase. However, the changes in the size, the microstructure and the proteolysis of the interfacial proteins of the emulsions under gastric conditions did not influence the rate and the extent of lipid digestion in the subsequent intestinal environment.

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Year:  2012        PMID: 22234325     DOI: 10.1039/c2fo10242k

Source DB:  PubMed          Journal:  Food Funct        ISSN: 2042-6496            Impact factor:   5.396


  2 in total

1.  Improved bioaccessibility of polymethoxyflavones loaded into high internal phase emulsions stabilized by biopolymeric complexes: A dynamic digestion study via TNO's gastrointestinal model.

Authors:  Wahyu Wijaya; Huijuan Zheng; Ting Zheng; Shiwei Su; Ashok R Patel; Paul Van der Meeren; Qingrong Huang
Journal:  Curr Res Food Sci       Date:  2019-12-16

2.  Ultrasonic-assisted preparation of eucalyptus oil nanoemulsion: Process optimization, in vitro digestive stability, and anti-Escherichia coli activity.

Authors:  Ruiteng Song; Yongqi Lin; Zhenzhen Li
Journal:  Ultrason Sonochem       Date:  2021-12-29       Impact factor: 7.491

  2 in total

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