Literature DB >> 33957845

Gastric protein digestion of goat and cow milk infant formula and human milk under simulated infant conditions.

Tao He1, Wolf Rombouts1, Alexandra Wilhelmina Carla Einerhand2, Natalie Hotrum3, Fred van de Velde3.   

Abstract

The protein digestion kinetics of goat milk infant formula (GMF) is previously shown to be more comparable to that of human milk (HM) than cow milk infant formula (CMF). To evaluate whether gastric behaviour contributes to differences in protein digestion kinetics, fresh HM, a GMF and a CMF were subjected to in vitro gastric digestion simulating infant conditions. Coagulation behaviour, particle size distribution and viscosity of the digesta were evaluated. After centrifugation of the digesta, total solids and protein distribution, and protein hydrolysis in the cream, serum and pellet fraction were investigated. The GMF and CMF were in general similar with respect to physicochemical and protein breakdown properties. However, a number of notable differences in physicochemical behaviour were observed, which may contribute to faster initial protein digestion of GMF. HM behaved differently from both formulas. These differences provide new insights into the possibilities for improvement of infant formulas.

Entities:  

Keywords:  Human milk; cow milk; goat milk; infant formula; in vitro gastric digestion model; protein digestion

Mesh:

Year:  2021        PMID: 33957845     DOI: 10.1080/09637486.2021.1921705

Source DB:  PubMed          Journal:  Int J Food Sci Nutr        ISSN: 0963-7486            Impact factor:   3.833


  2 in total

Review 1.  Alternatives to Cow's Milk-Based Infant Formulas in the Prevention and Management of Cow's Milk Allergy.

Authors:  Natalia Zofia Maryniak; Ana Isabel Sancho; Egon Bech Hansen; Katrine Lindholm Bøgh
Journal:  Foods       Date:  2022-03-23

2.  A Survey to Identify the Current Management of Cow's Milk Disorders and the Role of Goat Milk-Based Formulas in the Middle East and North Africa Region.

Authors:  Wael A Bahbah; Mostafa ElHodhod; Mohamed Salah; Fawaz AlRefaee; Muath AlTuraiki; Samira Mousa; Ali Al Mehaidib; Wafaa Helmi Ayesh; Ahmed N El-Bazzar; Joseph El Haddad; Heba Y El Khashab; Amr El Zawahry; Mohammed Hasosah; Sanaa Youssef Shaaban; Yvan Vandenplas
Journal:  Nutrients       Date:  2022-03-03       Impact factor: 5.717

  2 in total

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