Literature DB >> 21779576

Development of a simple model device for in vitro gastric digestion investigation.

Jianshe Chen1, Vishwajeet Gaikwad, Melvin Holmes, Brent Murray, Malcolm Povey, Ye Wang, Ying Zhang.   

Abstract

There have been some reports in the literature of model gastric digestion systems to mimic the dynamic physiological processes within the gastrointestinal tract. However, such devices often require the specification of many control parameters making routine digestion tests unfeasible. This paper introduces a simple in vitro digestion device, comprising of a water-jacketed glass vessel into which a spherical Teflon probe of variable diameter can be inserted. The probe is controlled by a texture analyser to simulate the kinetics of a food digestion process. Using this device under well controlled hydrodynamic flow and biochemical conditions key digestion parameters such as pH, food particle size, protein release, lipid release, cloudiness, etc, can be determined. Feasibility tests of the model device have been conducted using roasted and non-roasted peanuts particles. The status of peanut digestion was examined by the changes in particle size distribution and the mean particle size. Significant differences of surface microstructure have also been observed for peanut particles after the digestion. The influence of parameters such as food to gastric juice ratio, the probe speed and pepsin concentration have been examined in this work. Initial results confirm that all these factors influence the kinetic process of gastric digestion considerably and should be well regulated in any in vitro digestion investigations. We propose that the model device has the advantages of easy control and operation and furthermore could be an ideal tool for routine in vitro gastric digestion studies.

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Year:  2011        PMID: 21779576     DOI: 10.1039/c0fo00159g

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


  7 in total

1.  Digestion of starch in a dynamic small intestinal model.

Authors:  M R Jaime-Fonseca; O Gouseti; P J Fryer; M S J Wickham; S Bakalis
Journal:  Eur J Nutr       Date:  2015-12-19       Impact factor: 5.614

2.  In Vitro Evaluation of the Probiotic Potential of Halotolerant Lactobacilli Isolated from a Ripened Tropical Mexican Cheese.

Authors:  Guiomar Melgar-Lalanne; Yadira Rivera-Espinoza; Ana Itzel Reyes Méndez; Humberto Hernández-Sánchez
Journal:  Probiotics Antimicrob Proteins       Date:  2013-12       Impact factor: 4.609

3.  In vitro gastrointestinal resistance of Lactobacillus acidophilus in some dairy products.

Authors:  Emine Mine Comak Gocer; Firuze Ergin; Ikbal Ozen Kücükcetin; Ahmet Kücükcetin
Journal:  Braz J Microbiol       Date:  2021-09-06       Impact factor: 2.214

4.  In Vitro Bioaccessibility, Human Gut Microbiota Metabolites and Hepatoprotective Potential of Chebulic Ellagitannins: A Case of Padma Hepaten® Formulation.

Authors:  Daniil N Olennikov; Nina I Kashchenko; Nadezhda K Chirikova
Journal:  Nutrients       Date:  2015-10-13       Impact factor: 5.717

5.  Influence of Pasteurization and Storage on Dynamic In Vitro Gastric Digestion of Milk Proteins: Quantitative Insights Based on Peptidomics.

Authors:  Xing Li; Yuxiang Gu; Shudong He; Olayemi Eyituoyo Dudu; Qiming Li; Haiyan Liu; Ying Ma
Journal:  Foods       Date:  2020-07-25

Review 6.  Effects of Marine Bioactive Compounds on Gut Ecology Based on In Vitro Digestion and Colonic Fermentation Models.

Authors:  Min Wang; Jianjun Zhou; Joaquim Calvo-Lerma; Yixuan Liu; María Carmen Collado; Francisco J Barba
Journal:  Nutrients       Date:  2022-08-12       Impact factor: 6.706

7.  WPI Gel Microstructure and Mechanical Behaviour and Their Influence on the Rate of In Vitro Digestion.

Authors:  Stephen Homer; Roderick Williams; Allison Williams; Amy Logan
Journal:  Foods       Date:  2021-05-12
  7 in total

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