Pepsin diffusivity in whey protein gels and its effect on gastric digestion

Protein is essential to human health, but its digestion kinetics in varied structures are not yet well understood. We previously found different kinetics of protein hydrolysis in solution and in gels, and we hypothesized that the difference stemmed from the steric hindrance of gel structure to the diffusion of pepsin and its hydrolysates. To better understand the pepsin diffusivity in food matrices and its effect on digestion, we determined the diffusivity of pepsin in water and in whey protein isolate (WPI) gels by fluorescence correlation spectroscopy (FCS). We estimated the pepsin concentration gradient during digestion based on the determined diffusivity, which showed that the pepsin is constrained within a thin layer from the gel surface. Gel composition analysis confirmed this constraint: peptides as protein fragments were observed only in the first 2 mm of the WPI gels after 6 h of in vitro gastric digestion. Scanning electron microscopy indicated that pepsin loosened the microstructure of whey protein gel surfaces, which may accelerate pepsin diffusion and consequently gel surface disintegration. We conclude that the mode of whey protein gel digestion is determined by the summed effect of diffusion limitation, hydrolysis rate and microstructure transformation.

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Main Authors: Luo, Q., Borst, J.W., Westphal, A.H., Boom, R.M., Janssen, A.E.M.
Format: Article/Letter to editor biblioteca
Language:English
Subjects:Diffusion, FCS, GFP, Gastric digestion, Pepsin, Whey protein gel,
Online Access:https://research.wur.nl/en/publications/pepsin-diffusivity-in-whey-protein-gels-and-its-effect-on-gastric
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spelling dig-wur-nl-wurpubs-5124692025-01-17 Luo, Q. Borst, J.W. Westphal, A.H. Boom, R.M. Janssen, A.E.M. Article/Letter to editor Food Hydrocolloids 66 (2017) ISSN: 0268-005X Pepsin diffusivity in whey protein gels and its effect on gastric digestion 2017 Protein is essential to human health, but its digestion kinetics in varied structures are not yet well understood. We previously found different kinetics of protein hydrolysis in solution and in gels, and we hypothesized that the difference stemmed from the steric hindrance of gel structure to the diffusion of pepsin and its hydrolysates. To better understand the pepsin diffusivity in food matrices and its effect on digestion, we determined the diffusivity of pepsin in water and in whey protein isolate (WPI) gels by fluorescence correlation spectroscopy (FCS). We estimated the pepsin concentration gradient during digestion based on the determined diffusivity, which showed that the pepsin is constrained within a thin layer from the gel surface. Gel composition analysis confirmed this constraint: peptides as protein fragments were observed only in the first 2 mm of the WPI gels after 6 h of in vitro gastric digestion. Scanning electron microscopy indicated that pepsin loosened the microstructure of whey protein gel surfaces, which may accelerate pepsin diffusion and consequently gel surface disintegration. We conclude that the mode of whey protein gel digestion is determined by the summed effect of diffusion limitation, hydrolysis rate and microstructure transformation. en application/pdf https://research.wur.nl/en/publications/pepsin-diffusivity-in-whey-protein-gels-and-its-effect-on-gastric 10.1016/j.foodhyd.2016.11.046 https://edepot.wur.nl/404586 Diffusion FCS GFP Gastric digestion Pepsin Whey protein gel https://creativecommons.org/licenses/by-nc-nd/4.0/ Wageningen University & Research
institution WUR NL
collection DSpace
country Países bajos
countrycode NL
component Bibliográfico
access En linea
databasecode dig-wur-nl
tag biblioteca
region Europa del Oeste
libraryname WUR Library Netherlands
language English
topic Diffusion
FCS
GFP
Gastric digestion
Pepsin
Whey protein gel
Diffusion
FCS
GFP
Gastric digestion
Pepsin
Whey protein gel
spellingShingle Diffusion
FCS
GFP
Gastric digestion
Pepsin
Whey protein gel
Diffusion
FCS
GFP
Gastric digestion
Pepsin
Whey protein gel
Luo, Q.
Borst, J.W.
Westphal, A.H.
Boom, R.M.
Janssen, A.E.M.
Pepsin diffusivity in whey protein gels and its effect on gastric digestion
description Protein is essential to human health, but its digestion kinetics in varied structures are not yet well understood. We previously found different kinetics of protein hydrolysis in solution and in gels, and we hypothesized that the difference stemmed from the steric hindrance of gel structure to the diffusion of pepsin and its hydrolysates. To better understand the pepsin diffusivity in food matrices and its effect on digestion, we determined the diffusivity of pepsin in water and in whey protein isolate (WPI) gels by fluorescence correlation spectroscopy (FCS). We estimated the pepsin concentration gradient during digestion based on the determined diffusivity, which showed that the pepsin is constrained within a thin layer from the gel surface. Gel composition analysis confirmed this constraint: peptides as protein fragments were observed only in the first 2 mm of the WPI gels after 6 h of in vitro gastric digestion. Scanning electron microscopy indicated that pepsin loosened the microstructure of whey protein gel surfaces, which may accelerate pepsin diffusion and consequently gel surface disintegration. We conclude that the mode of whey protein gel digestion is determined by the summed effect of diffusion limitation, hydrolysis rate and microstructure transformation.
format Article/Letter to editor
topic_facet Diffusion
FCS
GFP
Gastric digestion
Pepsin
Whey protein gel
author Luo, Q.
Borst, J.W.
Westphal, A.H.
Boom, R.M.
Janssen, A.E.M.
author_facet Luo, Q.
Borst, J.W.
Westphal, A.H.
Boom, R.M.
Janssen, A.E.M.
author_sort Luo, Q.
title Pepsin diffusivity in whey protein gels and its effect on gastric digestion
title_short Pepsin diffusivity in whey protein gels and its effect on gastric digestion
title_full Pepsin diffusivity in whey protein gels and its effect on gastric digestion
title_fullStr Pepsin diffusivity in whey protein gels and its effect on gastric digestion
title_full_unstemmed Pepsin diffusivity in whey protein gels and its effect on gastric digestion
title_sort pepsin diffusivity in whey protein gels and its effect on gastric digestion
url https://research.wur.nl/en/publications/pepsin-diffusivity-in-whey-protein-gels-and-its-effect-on-gastric
work_keys_str_mv AT luoq pepsindiffusivityinwheyproteingelsanditseffectongastricdigestion
AT borstjw pepsindiffusivityinwheyproteingelsanditseffectongastricdigestion
AT westphalah pepsindiffusivityinwheyproteingelsanditseffectongastricdigestion
AT boomrm pepsindiffusivityinwheyproteingelsanditseffectongastricdigestion
AT janssenaem pepsindiffusivityinwheyproteingelsanditseffectongastricdigestion
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