Bioactive arabinoxylan oligomers via colonic fermentation and enzymatic catalysis: Evidence of interaction with toll-like receptors from in vitro, in silico and functional analysis.

Victor Castro-Alves, Samira B R Prado, Cynthia Fernández-Lainez, Gabriel López-Velázquez, Robert J Brummer, Caroline de A Guerreiro, Leandro A D Andrade, Layanne N Fraga, Tatiana M Marques, João Roberto O Nascimento

Journal: Carbohydrate polymers 2025;352():123175

PMID: 39843080

Abstract

Dietary fibers (DF) from plant-based foods promote health benefits through their physicochemical properties and fermentation by the gut microbiota, often studied in relation to changes in gut microbiota profile and production of gut microbiota-derived metabolites. Here, we characterized structural motifs (i.e., oligomers) produced during DF breakdown upon colonic fermentation and explored their interaction with toll-like receptors (TLRs) present on the surface of human intestinal and immune system cells. Wheat arabinoxylan (WAX) was subjected to in vitro colonic fermentation, with its structural motifs identified and tracked throughout the fermentation process. Using carbohydrate-active enzymes, six well-defined fractions of arabinoxylans and linear xylans identified during colonic fermentation were produced and tested for interaction with tool-like receptors (TLR)2 and TLR4 via reporter cell assay. The results showed structure-dependent effects, with TLR2 inhibition and TLR4 activation varying based on the degree of polymerization and branching. Molecular docking confirmed that minor structural changes in oligomers structure significantly influenced these interactions. The study supports the hypothesis that oligomers and polysaccharides affect cell receptors through complex, multi-receptor interactions, and highlights the potential for enzymatic tailoring of DF to create functional ingredients with targeted effects on human health.

Copyright © 2024 The Author(s). Published by Elsevier Ltd.. All rights reserved.

Address: School of Science and Technology, Örebro University, 701 82 Örebro, Sweden.; Department of Food Science and Experimental Nutrition, University of São Paulo, 05508 900 São Paulo, Brazil.; Laboratorio de Errores Innatos del Metabolismo y Tamiz, Instituto Nacional de Pediatría, 04530 CDMX, Mexico.; Laboratorio de Biomoléculas y Salud Infantil, Instituto Nacional de Pediatría, 04530 CDMX, Mexico.; School of Medical Sciences, Örebro University, 703 62 Örebro, Sweden.; Department of Food Science and Experimental Nutrition, University of São Paulo, 05508 900 São Paulo, Brazil; Food Research Center (FoRC-CEPID), University of São Paulo, 05508 000 São Paulo, Brazil.; School of Science and Technology, Örebro University, 701 82 Örebro, Sweden. Electronic address: [email protected].
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