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1.
Dig Dis Sci ; 61(5): 1268-81, 2016 May.
Article in English | MEDLINE | ID: mdl-26898658

ABSTRACT

The prevalence of nonalcoholic fatty liver disease has been rapidly increasing worldwide. It has become a leading cause of liver transplantation. Accumulating evidence suggests a significant role for gut microbiota in its development and progression. Here we review the effect of gut microbiota on developing hepatic fatty infiltration and its progression. Current literature supports a possible role for gut microbiota in the development of liver steatosis, inflammation and fibrosis. We also review the literature on possible interventions for NAFLD that target the gut microbiota.


Subject(s)
Gastrointestinal Tract/microbiology , Non-alcoholic Fatty Liver Disease/microbiology , Humans , Inflammation/microbiology , Liver Cirrhosis/microbiology
2.
BMC Med Genomics ; 6: 14, 2013 Apr 29.
Article in English | MEDLINE | ID: mdl-23628382

ABSTRACT

BACKGROUND: Metabolic syndrome (MetS) is an aberration associated with increased risk for cancer and inflammation. Adiponectin, an adipocyte-produced abundant protein hormone, has countering effect on the diabetogenic and atherogenic components of MetS. Plasma levels of adiponectin are negatively correlated with onset of cancer and cancer patient mortality. We previously performed microsatellite linkage analyses using adiponectin as a surrogate marker and revealed two QTLs on chr5 (5p14) and chr14 (14q13). METHODS: Using individuals from 85 extended families that contributed to the linkage and who were measured for 42 clinical and biologic MetS phenotypes, we tested QTL-based SNP associations, peripheral white blood cell (PWBC) gene expression, and the effects of cis-acting SNPs on gene expression to discover genomic elements that could affect the pathophysiology and complications of MetS. RESULTS: Adiponectin levels were found to be highly intercorrelated phenotypically with the majority of MetS traits. QTL-specific haplotype-tagging SNPs associated with MetS phenotypes were annotated to 14 genes whose function could influence MetS biology as well as oncogenesis or inflammation. These were mechanistically categorized into four groups: cell-cell adhesion and mobility, signal transduction, transcription and protein sorting. Four genes were highly prioritized: cadherin 18 (CDH18), myosin X (MYO10), anchor protein 6 of AMPK (AKAP6), and neuronal PAS domain protein 3 (NPAS3). PWBC expression was detectable only for the following genes with multi-organ or with multi-function properties: NPAS3, MARCH6, MYO10 and FBXL7. Strong evidence of cis-effects on the expression of MYO10 in PWBC was found with SNPs clustered near the gene's transcription start site. MYO10 expression in PWBC was marginally correlated with body composition (p = 0.065) and adipokine levels in the periphery (p = 0.064). Variants of genes AKAP6, NPAS3, MARCH6 and FBXL7 have been previously reported to be associated with insulin resistance, inflammatory markers or adiposity studies using genome-wide approaches whereas associations of CDH18 and MYO10 with MetS traits have not been reported before. CONCLUSIONS: Adiponectin QTLs-based SNP association and mRNA expression identified genes that could mediate the association between MetS and cancer or inflammation.


Subject(s)
Adiponectin/genetics , Metabolic Syndrome/genetics , Polymorphism, Single Nucleotide , A Kinase Anchor Proteins/genetics , Adiponectin/blood , Basic Helix-Loop-Helix Transcription Factors , Cadherins/genetics , Cell Transformation, Neoplastic , Chromosomes, Human, Pair 14 , Chromosomes, Human, Pair 5 , Genotype , Haplotypes , Humans , Inflammation/genetics , Inflammation/metabolism , Leukocytes/metabolism , Metabolic Syndrome/metabolism , Metabolic Syndrome/pathology , Myosins/genetics , Nerve Tissue Proteins/genetics , Phenotype , Quantitative Trait Loci , RNA, Messenger/metabolism , Transcription Factors/genetics
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