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lntestinal microenvironment, epithelial barrier interactions and human milk oligosaccharide supplementation in irritable bowel syndrome

Human milk oligosaccharides and interactions at the epithelial barrier in IBS

Abstract
Alterations of the microbiota-host interactions at the mucosal border may be of importance in symptom generation in irritable bowel syndrome (IBS), a disorder of gut-brain interaction. Hence, microbiota-targeted interventions may benefit some patients by beneficially modulating the intestinal microenvironment. This thesis aimed to determine the importance of the intestinal microenvironment for the intestinal immune activity and barrier function in IBS, as well as to assess the effects of human milk oligosaccharide (HMO) supplementation in IBS patients. First, we describe that the IBS patients have a distinct intestinal microenvironment, in particular metabolites, that is linked to bowel habits. Second, we present an in vitro model using patient-derived fecal supernatants and healthy-derived epithelial colonoids for exploring the interactions between the intestinal microenvironment and the epithelial barrier in IBS. Third, we show that a HMO mixture of 2’-Ofucosyllactose and lacto-N-neotetraose (4:1 ratio) (2’FL/LNnT) increases the abundance of bifidobacteria, with no risk of symptom deterioration. Finally, we demonstrate that supplementation with 2’FL/LNnT modulates the gut microbiota, increasing bifidobacteria, and fecal and plasma metabolites, but it does not influence the intestinal immune activity and barrier function. In conclusion, the results of this thesis support the importance of the intestinal microenvironment and the microbiota-host interactions at the mucosal border in IBS, which might be modulated by HMO supplementation. Future studies are warranted to provide a better insight into the cross talk at the mucosal border as well as the mechanisms of action of HMO supplementation for the management of IBS symptoms.
Parts of work
I. Ahluwalia B†, Iribarren C†, Magnusson MK, Sundin J, Clevers E, Savolainen O, Ross AR, Törnblom H, Simrén M, Öhman L. A distinct faecal microbiota and metabolite profile linked to bowel habits in patients with irritable bowel syndrome. Cells 2021; 10(6): 1459. https://doi.org/10.3390/cells10061459
 
II. Iribarren C†, Nordlander S†, Sundin J, Isaksson S, Savolainen O, Törnblom H, Magnusson MK, Simrén M, Öhman L. Fecal luminal factors from patients with irritable bowel syndrome induce distinct gene expression of colonoids. Neurogastroenterology & Motility 2022; 00:e14390 [Published online]. https://doi.org/10.1111/nmo.14390
 
III. Iribarren C, Törnblom H, Aziz I, Magnusson MK, Sundin J, Vigsnæs LK, Amundsen ID, McConnell B, Seitzberg D, Öhman L, Simrén M. Human milk oligosaccharide supplementation in irritable bowel syndrome patients: A parallel, randomized, double-blind, placebo-controlled study. Neurogastroenterology & Motility 2020; 32(10): e13920. https://doi.org/10.1111/nmo.13920
 
IV. Iribarren C, Magnusson MK, Vigsnæs LK, Aziz I, Amundsen ID, Šuligoj T, Juge N, Patel P, Sapnara M, Johnsen L, Sørensen N, Sundin J, Törnblom H, Simrén M, Öhman L. The effects of human milk oligosaccharides on gut microbiota, metabolite profiles and host mucosal response in patients with irritable bowel syndrome. Nutrients 2021; 13(11): 3836. https://doi.org/10.3390/nu13113836
 
Degree
Doctor of Philosophy (Medicine)
University
University of Gothenburg. Sahlgrenska Academy
Institution
Institute of Biomedicine. Department of Medical Microbiology and Immunology
Disputation
Torsdagen den 9 juni, kl. 9.00, Hörsal Arvid Carlsson, Academicum, Medicinaregatan 3, Göteborg
Date of defence
2022-06-09
E-mail
cristina.iribarren.gomez@gu.se
ciribarrengomez@gmail.com
URI
https://hdl.handle.net/2077/70931
Collections
  • Doctoral Theses / Doktorsavhandlingar Institutionen för biomedicin
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Cover (3.278Mb)
Thesis frame (3.735Mb)
Abstract (715.1Kb)
Date
2022-05-19
Author
Iribarren Gómez, Cristina
Keywords
colonoids
epithelium
gut microbiota-host interaction
human milk oligosaccharides
intestinal milieu
irritable bowel syndrome
metabolites
microbiota
mucosal border
Publication type
Doctoral thesis
ISBN
978-91-8009-789-5 (PRINT)
978-91-8009-790-1 (PDF)
Language
eng
Metadata
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