logo
Loading...
A combined microphysiological-computational omics approach in dietary protein evaluation
Food Science and Technologynpj Science of Food

A combined microphysiological-computational omics approach in dietary protein evaluation

P. G. M. Jochems, W. R. Keusters, et al.

This groundbreaking study explores a comparative analysis of seventeen diverse protein sources against cow's whey protein concentrate. Using innovative experimental and computational techniques, the researchers uncovered unexpected insights into bioactive peptide delivery and biological efficacy. This research was conducted by Paulus G. M. Jochems and colleagues.... show more
Abstract
Food security is under increased pressure due to the ever-growing world population. To tackle this, alternative protein sources need to be evaluated for nutritional value, which requires information on digesta peptide composition in comparison to established protein sources and coupling to biological parameters. Here, a combined experimental and computational approach is presented, which compared seventeen protein sources with cow's whey protein concentrate (WPC) as the benchmark. In vitro digestion of proteins was followed by proteomics analysis and statistical model-based clustering. Information on digesta peptide composition resulted in 3 cluster groups, primarily driven by the peptide overlap with the benchmark protein WPC. Functional protein data was then incorporated in the computational model after evaluating the effects of eighteen protein digests on intestinal barrier integrity, viability, brush border enzyme activity, and immune parameters using a bioengineered intestine as microphysiological gut system. This resulted in 6 cluster groups. Biological clustering was driven by viability, brush border enzyme activity, and significant differences in immune parameters. Finally, a combination of proteomic and biological efficacy data resulted in 5 clusters groups, driven by a combination of digesta peptide composition and biological effects. The key finding of our holistic approach is that protein source (animal, plant or alternative derived) is not a driving force behind the delivery of bioactive peptides and their biological efficacy.
Publisher
npj Science of Food
Published On
Dec 17, 2020
Authors
Paulus G. M. Jochems, Willem R. Keusters, Antoine H. P. America, Pascale C. S. Rietveld, Shanna Bastiaan-Net, Renata M. C. Ariëns, Monic M. M. Tomassen, Fraser Lewis, Yang Li, Koen G. C. Westphal, Johan Garssen, Harry J. Wichers, Jeroen van Bergenhenegouwen, Rosalinde Masereeuw
Tags
protein sourcescow's whey proteinbioactive peptidesin vitro digestionbiological effects
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 22+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny