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Carrot Rhamnogalacturonan-I Supplementation Shapes Gut Microbiota and Immune Responses: A Randomised Trial in healthy adults
Örebro University, School of Medical Sciences. (Nutrition-Gut-Brain Interactions Research Centre)ORCID iD: 0000-0001-8610-342X
Nutrileads BV, Bronland 12-N, 6708 WH Wageningen, The Netherlands.
Örebro University, School of Medical Sciences. Department of Clinical Research Laboratory, Faculty of Medicine and Health, Örebro University, Örebro, Sweden.
Clinical and Experimental Endocrinology, KU Leuven, Herestraat 49 ON1, Box 902, 3000 Leuven, Belgium.
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(English)Manuscript (preprint) (Other academic)
National Category
Other Basic Medicine
Identifiers
URN: urn:nbn:se:oru:diva-120828OAI: oai:DiVA.org:oru-120828DiVA, id: diva2:1954881
Available from: 2025-04-28 Created: 2025-04-28 Last updated: 2025-04-29Bibliographically approved
In thesis
1. The Dietary Fibre–Barrier Alliance: Bridging Gut Integrity, Microbiota Function and Immune Regulation
Open this publication in new window or tab >>The Dietary Fibre–Barrier Alliance: Bridging Gut Integrity, Microbiota Function and Immune Regulation
2025 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

Dietary fibres are key modulators of gut health, including barrier integrity and immune function, yet these effects are not sufficiently characterised. β-Glucans and rhamnogalacturonan-I (RG-I) have been shown to shape microbial composition and immune signalling, but their specific contributions to barrier integrity require further elucidation. Paper I examines how faecal fermentation supernatants (FS) from Pleurotus eryngii (PE) cultivated on distinct substrates influence intestinal barrier integrity in an LPS-stimulated Caco-2 model, revealing substrate-driven variations in tight junction modulation. Paper II describes the comparative effects of whole PE, its digested derivatives and a β-glucan-enriched extract on gut microbiota composition and metabolism in elderly individuals, using an in vitro fermentation model, highlighting the superior modulatory potential of the whole PE. Paper III explores the immunoregulatory properties of PE’s FS in an LPS-stimulated Caco-2 model, demonstrating their role in cytokine signal-ling and barrier’s protection. Paper IV evaluates the capacity of PE FS to mitigate bile acid-induced barrier dysfunction in in vitro and ex vivo colonic models, underscoring their protective effects against hyperpermeability. Paper V investigates the prebiotic potential of carrot RG-I in a human intervention study, showing its ability to enhance bifidobacteria populations, modulate immune responses and support barrier integrity. In conclusion, this thesis advances the understanding of dietary fibre bioactivities beyond conventional microbiota analyses. By demonstrating that β-glucans and RG-I modulate epithelial and immune functions alongside microbial interactions, it establishes a mechanistic foundation for precision nutrition strategies targeting gut health through an integrated, systems-based approach.

Place, publisher, year, edition, pages
Örebro: Örebro University, 2025. p. 124
Series
Örebro Studies in Medicine, ISSN 1652-4063 ; 321
Keywords
prebiotics, fungal polysaccharides, pectic polysaccharides, barrier stress models, microbiome modulation, microbial metabolism, immune training, intestinal permeability, precision gut health
National Category
Other Basic Medicine
Identifiers
urn:nbn:se:oru:diva-119661 (URN)9789175296517 (ISBN)9789175296524 (ISBN)
Public defence
2025-05-21, Örebro universitet, Campus USÖ, Tidefeltsalen, Södra Grev Rosengatan 32, Örebro, 13:00 (English)
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Available from: 2025-03-04 Created: 2025-03-04 Last updated: 2025-04-29Bibliographically approved

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Kerezoudi, Evangelia N.Kurt, SetaBrummer, Robert J.Rangel, Ignacio

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