1. Dynamic In Vitro Gastric Digestion of Sheep Milk: Influence of Homogenization and Heat Treatment
- Author
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Anant Dave, Harjinder Singh, Siqi Li, Aiqian Ye, Karl Fraser, and Zheng Pan
- Subjects
Health (social science) ,Hydrolyzed protein ,Protein digestion ,homogenization ,TP1-1185 ,Plant Science ,Health Professions (miscellaneous) ,Microbiology ,Article ,sheep milk ,fluids and secretions ,fat ,medicine ,Gastric lipase ,Globules of fat ,Food science ,structure ,Sheep milk ,pepsin ,gastric digestion ,Gastric emptying ,Chemistry ,heat treatment ,Chemical technology ,Stomach ,digestive, oral, and skin physiology ,food and beverages ,protein coagulation ,medicine.anatomical_structure ,Digestion ,protein ,Food Science - Abstract
Milk is commonly exposed to processing including homogenization and thermal treatment before consumption, and this processing could have an impact on its digestion behavior in the stomach. In this study, we investigated the in vitro gastric digestion behavior of differently processed sheep milks. The samples were raw, pasteurized (75 °C/15 s), homogenized (200/20 bar at 65 °C)–pasteurized, and homogenized–heated (95 °C/5 min) milks. The digestion was performed using a dynamic in vitro gastric digestion system, the human gastric simulator with simulated gastric fluid without gastric lipase. The pH, structure, and composition of the milks in the stomach and the emptied digesta, and the rate of protein hydrolysis were examined. Curds formed from homogenized and heated milk had much looser and more fragmented structures than those formed from unhomogenized milk, this accelerated the curd breakdown, protein digestion and promoted the release of protein, fat, and calcium from the curds into the digesta. Coalescence and flocculation of fat globules were observed during gastric digestion, and most of the fat globules were incorporated into the emptied protein/peptide particles in the homogenized milks. The study provides a better understanding of the gastric emptying and digestion of processed sheep milk under in vitro gastric conditions.
- Published
- 2021