Literature DB >> 19637282

Toll-like receptor 4 is involved in the development of fructose-induced hepatic steatosis in mice.

Astrid Spruss1, Giridhar Kanuri, Sabine Wagnerberger, Synia Haub, Stephan C Bischoff, Ina Bergheim.   

Abstract

UNLABELLED: A link between dietary fructose intake, gut-derived endotoxemia, and nonalcoholic fatty liver disease (NAFLD) has been suggested by the results of human and animal studies. To further investigate the role of gut-derived endotoxin in the onset of fructose-induced NAFLD, Toll-like receptor (TLR-) 4-mutant (C3H/HeJ) mice and wildtype (C3H/HouJ) mice were either fed plain water or water enriched with 30% fructose for 8 weeks. Hepatic steatosis, plasma alanine aminotransferase (ALT), and markers of insulin resistance as well as portal endotoxin levels were determined. Hepatic levels of myeloid differentiation factor 88 (MyD88), interferon regulatory factor (IRF) 3 and 7, and tumor necrosis factor alpha (TNFalpha) as well as markers of lipid peroxidation were assessed. Chronic intake of 30% fructose solution caused a significant increase in hepatic steatosis and plasma ALT levels in wildtype animals in comparison to water controls. In fructose-fed TLR-4 mutant mice, hepatic triglyceride accumulation was significantly reduced by approximately 40% in comparison to fructose-fed wildtype mice and plasma ALT levels were at the level of water-fed controls. No difference in portal endotoxin concentration between fructose-fed wildtype and TLR-4-mutant animals was detected. In contrast, hepatic lipid peroxidation, MyD88, and TNFalpha levels were significantly decreased in fructose-fed TLR-4-mutant mice in comparison to fructose-fed wildtype mice, whereas IRF3 and IRF7 expression remained unchanged. Markers of insulin resistance (e.g., plasma TNFalpha, retinol binding protein 4, and hepatic phospho-AKT) were only altered in fructose-fed wildtype animals.
CONCLUSION: Taken together, these data further support the hypothesis that in mice the onset of fructose-induced NAFLD is associated with intestinal bacterial overgrowth and increased intestinal permeability, subsequently leading to an endotoxin-dependent activation of hepatic Kupffer cells.

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Year:  2009        PMID: 19637282     DOI: 10.1002/hep.23122

Source DB:  PubMed          Journal:  Hepatology        ISSN: 0270-9139            Impact factor:   17.425


  197 in total

1.  Ozone-induced lung injury and sterile inflammation. Role of toll-like receptor 4.

Authors:  Agnieszka J Connor; Jeffrey D Laskin; Debra L Laskin
Journal:  Exp Mol Pathol       Date:  2012-01-24       Impact factor: 3.362

2.  Fast food diet mouse: novel small animal model of NASH with ballooning, progressive fibrosis, and high physiological fidelity to the human condition.

Authors:  Michael Charlton; Anuradha Krishnan; Kimberly Viker; Schuyler Sanderson; Sophie Cazanave; Andrea McConico; Howard Masuoko; Gregory Gores
Journal:  Am J Physiol Gastrointest Liver Physiol       Date:  2011-08-11       Impact factor: 4.052

3.  The role of lipopolysaccharide/toll-like receptor 4 signaling in chronic liver diseases.

Authors:  João-Bruno Soares; Pedro Pimentel-Nunes; Roberto Roncon-Albuquerque; Adelino Leite-Moreira
Journal:  Hepatol Int       Date:  2010-10-21       Impact factor: 6.047

4.  Yes-Associated Protein in Kupffer Cells Enhances the Production of Proinflammatory Cytokines and Promotes the Development of Nonalcoholic Steatohepatitis.

Authors:  Kyoungsub Song; Hyunjoo Kwon; Chang Han; Weina Chen; Jinqiang Zhang; Wenbo Ma; Srikanta Dash; Chandrashekhar R Gandhi; Tong Wu
Journal:  Hepatology       Date:  2020-04-11       Impact factor: 17.425

5.  No differential effect of beverages sweetened with fructose, high-fructose corn syrup, or glucose on systemic or adipose tissue inflammation in normal-weight to obese adults: a randomized controlled trial.

Authors:  Jessica N Kuzma; Gail Cromer; Derek K Hagman; Kara L Breymeyer; Christian L Roth; Karen E Foster-Schubert; Sarah E Holte; David S Weigle; Mario Kratz
Journal:  Am J Clin Nutr       Date:  2016-06-29       Impact factor: 7.045

Review 6.  Gut-liver axis, nutrition, and non-alcoholic fatty liver disease.

Authors:  Irina A Kirpich; Luis S Marsano; Craig J McClain
Journal:  Clin Biochem       Date:  2015-07-04       Impact factor: 3.281

Review 7.  Carbohydrate intake and nonalcoholic fatty liver disease: fructose as a weapon of mass destruction.

Authors:  Metin Basaranoglu; Gokcen Basaranoglu; Elisabetta Bugianesi
Journal:  Hepatobiliary Surg Nutr       Date:  2015-04       Impact factor: 7.293

8.  Diet high in fructose leads to an overexpression of lipocalin-2 in rat fatty liver.

Authors:  Salamah Mohammad Alwahsh; Min Xu; Hatice Ali Seyhan; Shakil Ahmad; Sabine Mihm; Giuliano Ramadori; Frank Christian Schultze
Journal:  World J Gastroenterol       Date:  2014-02-21       Impact factor: 5.742

Review 9.  [The intestinal microbiome and metabolic diseases : From obesity to diabetes and nonalcoholic steatohepatitis].

Authors:  S C Bischoff
Journal:  Internist (Berl)       Date:  2017-05       Impact factor: 0.743

Review 10.  Beverage consumption and paediatric NAFLD.

Authors:  Antonella Mosca; Claudia Della Corte; Maria Rita Sartorelli; Francesca Ferretti; Francesco Nicita; Andrea Vania; Valerio Nobili
Journal:  Eat Weight Disord       Date:  2016-08-26       Impact factor: 4.652

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