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J Mol Endocrinol


Title:Molecular pathways involved in the improvement of non-alcoholic fatty liver disease
Author(s):Paz-Filho G; Mastronardi CA; Parker BJ; Khan A; Inserra A; Matthaei KI; Ehrhart-Bornstein M; Bornstein S; Wong ML; Licinio J;
Address:"Department of Translational Medicine, The John Curtin School of Medical Research, The Australian National University, Garran Road, Building 131, Acton, Canberra, Australian Capital Territory 0200, Australia"
Journal Title:J Mol Endocrinol
Year:2013
Volume:20130629
Issue:1
Page Number:167 - 179
DOI: 10.1530/JME-13-0072
ISSN/ISBN:1479-6813 (Electronic) 0952-5041 (Linking)
Abstract:"Non-alcoholic fatty liver disease (NAFLD) and non-alcoholic steatohepatitis are components of the metabolic syndrome. Serum leptin levels are elevated in obesity, but the role of leptin in the pathophysiology of the liver involvement is still unclear. To identify the effects and mechanisms by which leptin influences the pathogenesis of NAFLD, we performed epididymal white adipose tissue (eWAT) transplantation from congenic wild-type mice into the subcutaneous dorsal area of Lep(ob/ob) recipient mice and compared the results with those of the Lep(ob/ob) sham-operated mice. The mice were followed for 102-216 days. During killing, the transplanted mice had significantly lost body weight and exhibited significantly higher leptin levels, improved glucose tolerance, and lower liver injury scores than the sham-operated mice. Liver microarray analysis showed that novel pathways related to GA-binding protein (GABP) transcription factor targets, pheromone binding, and olfactory signaling were differentially expressed in the transplanted mice. Our data also replicate pathways known to be involved in NAFLD, such as those involved in the regulation of microRNAs, lipid, glucose, and glutathione metabolism, peroxisome proliferator-activated receptor signaling, cellular regulation, carboxylic acid processes, iron, heme, and tetrapyrrole binding, immunity and inflammation, insulin signaling, cytochrome P450 function, and cancer. CONCLUSION: wild-type eWAT transplantation into Lep(ob/ob) mice led to improvements in metabolism, body weight, and liver injury, possibly attributed to the production of leptin by the transplanted eWAT. These improvements were accompanied by the differential expression of novel pathways. The causal relationship between GABP downregulation and NAFLD improvement remains to be determined"
Keywords:"Adipose Tissue, White/metabolism/transplantation Animals Fatty Acids/metabolism Fatty Liver/*genetics/immunology/*metabolism Gene Expression Profiling Gene Expression Regulation Glucose Tolerance Test Hormones/blood Inflammation Mediators/immunology/metab;"
Notes:"MedlinePaz-Filho, Gilberto Mastronardi, Claudio Alberto Parker, Brian J Khan, Ainy Inserra, Antonio Matthaei, Klaus I Ehrhart-Bornstein, Monika Bornstein, Stefan Wong, Ma-Li Licinio, Julio eng Research Support, Non-U.S. Gov't England 2013/05/31 J Mol Endocrinol. 2013 Jun 29; 51(1):167-79. doi: 10.1530/JME-13-0072. Print 2013"

 
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