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PMID: 19374741 Published · epublish English Journal Article

Intestinal barrier function in response to abundant or depleted mucosal glutathione in Salmonella-infected rats.

BMC physiology ·Vol. 9 ·2009-04-17 ·Pages 6

van Ampting MT, Schonewille AJ, Vink C, Brummer RJ, van der Meer R, Bovee-Oudenhoven IM

Abstract

Glutathione, the main antioxidant of intestinal epithelial cells, is suggested to play an important role in gut barrier function and prevention of inflammation-related oxidative damage as induced by acute bacterial infection. Most studies on intestinal glutathione focus on oxidative stress reduction without considering functional disease outcome. Our aim was to determine whether depletion or maintenance of intestinal glutathione changes susceptibility of rats to Salmonella infection and associated inflammation.Rats were fed a control diet or the same diet supplemented with buthionine sulfoximine (BSO; glutathione depletion) or cystine (glutathione maintenance). Inert chromium ethylenediamine-tetraacetic acid (CrEDTA) was added to the diets to quantify intestinal permeability. At day 4 after oral gavage with Salmonella enteritidis (or saline for non-infected controls), Salmonella translocation was determined by culturing extra-intestinal organs. Liver and ileal mucosa were collected for analyses of glutathione, inflammation markers and oxidative damage. Faeces was collected to quantify diarrhoea. Glutathione depletion aggravated ileal inflammation after infection as indicated by increased levels of mucosal myeloperoxidase and interleukin-1beta. Remarkably, intestinal permeability and Salmonella translocation were not increased. Cystine supplementation maintained glutathione in the intestinal mucosa but inflammation and oxidative damage were not diminished. Nevertheless, cystine reduced intestinal permeability and Salmonella translocation. Despite increased infection-induced mucosal inflammation upon glutathione depletion, this tripeptide does not play a role in intestinal permeability, bacterial translocation and diarrhoea. On the other hand, cystine enhances gut barrier function by a mechanism unlikely to be related to glutathione.

MeSH Terms
Animals Bacterial Translocation/drug effects,physiology Buthionine Sulfoximine/pharmacology Cystine/administration & dosage,pharmacology Diarrhea/etiology,physiopathology Disease Susceptibility Glutathione/antagonists & inhibitors,physiology Ileitis/physiopathology Interleukin-1beta/analysis Intestinal Mucosa/physiology Lipopolysaccharides/toxicity Liver/metabolism Male Nitric Oxide/metabolism Oxidative Stress Peroxidase/analysis Rats Rats, Wistar Salmonella Infections, Animal/complications,microbiology,physiopathology Salmonella enteritidis/physiology Specific Pathogen-Free Organisms
Chemicals
Interleukin-1beta Lipopolysaccharides Nitric Oxide Cystine Buthionine Sulfoximine Peroxidase Glutathione
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
van Ampting Marleen T J
TI Food and Nutrition, Wageningen, the Netherlands. marleen.van.ampting@nizo.nl
Schonewille Arjan J
Vink Carolien
Brummer Robert Jan M
van der Meer Roelof
Bovee-Oudenhoven Ingeborg M J
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Article Info
Journal
BMC physiology
Abbr.
BMC Physiol
ISSN
1472-6793
Published
2009-04-17
Epub
2009-00-17
Pages
6
Language
English
Region
England
NLM ID
101088687
PMCID
PMC2678068
Subset
IM
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