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Evaluation of Gastrointestinal Leakage in Multiple Enteric Inflammation Models in Chickens

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Journal Front Vet Sci
Date 2015 Dec 24
PMID 26697435
Citations 26
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Abstract

Enteric inflammation models can help researchers' study methods to improve health and performance and evaluate various growth promoters and dietary formulations targeted to improve performance in poultry. Oral administration of fluorescein isothiocyanate-dextran (FITC-d; 3-5 kDa) and its pericellular mucosal epithelial leakage are an established marker to evaluate enteric inflammation in multiple species. The present study evaluated different methods to induce gut inflammation in poultry based on FITC-d leakage. Four independent experiments were completed with different inflammation treatment groups, and serum FITC-d and/or retention of FITC-d in GI tract were determined. In experiment 1 (n = 10 birds/treatment, broilers, processed at 14 days), groups included control (CON), dextran sodium sulfate (DSS; drinking water at 0.75%) and feed restriction (FRS; 24 h before processing). Experiment 2 (n = 14 birds/treatment, leghorns, processed at 7 days) included CON, DSS, FRS, and rye-based diet (RBD). In experiments 3 and 4 (n = 15 birds/treatment, broilers, processed at 7 days), groups were CON, DSS, high fat diet (HFD), FRS, and RBD. In all experiments, FRS and RBD treatments showed significantly higher serum FITC-d levels compared to the respective CON. This indicates that FRS and RBD results in disruption of the intact barrier of the gastrointestinal tract (GIT), resulting in increased gut permeability. DSS and HFD groups showed elevation of serum FITC-d levels although the magnitude of difference from respective CON was inconsistent between experiments. FRS was the only treatment which consistently showed elevated retention of FITC-d in GIT in all experiments. The results from present studies showed that FRS and RBD, based on serum FITC-d levels, can be robust models to induce gut leakage in birds in different age and species/strains.

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References
1.
Yan Y, Kolachala V, Dalmasso G, Nguyen H, Laroui H, Sitaraman S . Temporal and spatial analysis of clinical and molecular parameters in dextran sodium sulfate induced colitis. PLoS One. 2009; 4(6):e6073. PMC: 2698136. DOI: 10.1371/journal.pone.0006073. View

2.
Shah Y, Ma X, Morimura K, Kim I, Gonzalez F . Pregnane X receptor activation ameliorates DSS-induced inflammatory bowel disease via inhibition of NF-kappaB target gene expression. Am J Physiol Gastrointest Liver Physiol. 2006; 292(4):G1114-22. DOI: 10.1152/ajpgi.00528.2006. View

3.
Choct M, Hughes R, Trimble R, Angkanaporn K, Annison G . Non-starch polysaccharide-degrading enzymes increase the performance of broiler chickens fed wheat of low apparent metabolizable energy. J Nutr. 1995; 125(3):485-92. DOI: 10.1093/jn/125.3.485. View

4.
Sansonetti P . War and peace at mucosal surfaces. Nat Rev Immunol. 2004; 4(12):953-64. DOI: 10.1038/nri1499. View

5.
Tellez G, Latorre J, Kuttappan V, Kogut M, Wolfenden A, Hernandez-Velasco X . Utilization of rye as energy source affects bacterial translocation, intestinal viscosity, microbiota composition, and bone mineralization in broiler chickens. Front Genet. 2014; 5:339. PMC: 4174888. DOI: 10.3389/fgene.2014.00339. View