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Nonalcoholic fatty liver disease (NAFLD) is the most common cause of chronic liver disease. NAFLD begins with steatosis and advances to nonalcoholic steatohepatitis (NASH) and cirrhosis. The molecular mechanisms involved in NAFLD progression are not understood. Based on recent studies showing dysregulation of epidermal growth factor receptor (EGFR) in animal models of liver injury, we sought to determine if inhibition of EGFR mitigates liver fibrosis and HSC activation in NAFLD. We utilized the high fat diet (HFD)-induced murine model of liver injury to study the role of EGFR in NAFLD. The lipid accumulation, oxidative stress, hepatic stellate cell (HSC) activation and matrix deposition were examined in the liver tissues. We also evaluated the EGFR signaling pathway, ROS activation and pro-fibrogenic phenotype in oxidized low density lipoproteins (ox-LDL) challenged cultured HSCs. We demonstrate that EGFR was phosphorylated in liver tissues of HFD murine model of NAFLD. Inhibition of EGFR prevented diet-induced lipid accumulation, oxidative stress, and HSC activation and matrix deposition. In cultured HSCs, we show that ox-LDL caused rapid activation of the EGFR signaling pathway and induce the production of reactive oxygen species. EGFR also mediated HSC activation and promoted a pro-fibrogenic phenotype. In conclusion, our data demonstrate that EGFR plays an important role in NAFLD and is an attractive target for NAFLD therapy.  相似文献   
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目的探讨二乙基亚硝胺(diethylnitrosamine,DEN)诱导大鼠肝癌发生中肝癌组织CLDN1基因表达及其启动子甲基化的规律。方法65只雄性Wistar大鼠随机选择40只作为模型组,其余作为正常组。模型组在1-12周饮用含DEN80mg/L的饮水以诱癌(每日8mg/kg),各组在造模过程的第4周、8周、12周、16周随机5只取肝,第20周剩余大鼠取肝,应用RT-PCR方法检测肝组织CLDN1mRNA的表达,应用MSP法检测肝组织CLDN1启动子甲基化和非甲基化。结果模型大鼠病死率为10%(4/40),正常组无死亡。至第20周,成瘤率达到100%。RT—PCR显示,与正常组比较,模型组在16周和20周CLDN1 mRNA表达下调(P〈0.05),其他各周两组差异不显著。MSP结果表明,模型组肝组织CLDN1甲基化率达77.78%,而正常肝组织甲基化率为24%,两者比较差异有显著性(P〈0.01)。结论CLDN1启动子甲基化及CLDN1基因表达下调与大鼠肝癌病变相关,对其机制值得进一步深入研究。  相似文献   
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Comparison of the nuclear magnetic resonance spectra of chemically synthesized methyl-d1-methanol with the methanol produced in the solvolytic decompostion of 5-(3-methyl-1-triazeno)imidazole-4-carboxamide (MIC) in D2O under acidic, basic or neutral conditions indicated that no deuterium was exchanged for the hydrogens on the methyl group. Diazomethane can therefore be ruled out as an intermediate in this reaction.The methyl-d3-guanine isolated after incubation of methyl-d3-MIC with calfthymus DNA in vitro displayed, on chemical ionization mass spectrometry, a quasimolecular ion (MH+) at m/e 169, which was 3 mass units higher than the quasimolecular ion for an undeuterated 7-methylguanine standard. The major fragment ions for 7-methyl-d3-guanine on electron impact mass spectrometry likewise were situated at positions 3 mass units higher than the fragment ions for 7-methylguanine itself.These data indicate that the methylation of biological macromolecules by MIC must involve the transfer of an intact methyl group.  相似文献   
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The cytosolic polypeptides of hepatocyte nodules in six models of liver carcinogenesis were analysed by SDS-polyacrylamide gel electrophoresis and their patterns compared with these of control and variously treated livers. The amount of a polypeptide of Mr 21,000 was about tenfold elevated in the cytosol of five of the six types of nodules and moderately elevated in the sixth. Certain other polypeptides, particularly one of Mr 26,000, also varied in amount, so that all of the nodules analysed could be distinguished from liver by their electrophoretic patterns. Some possible identities of the two polypeptides are discussed. Their study may have mechanistic as well as diagnostic importance.  相似文献   
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We have developed genetic tests for estimating the proportion of small deletions among chemically induced point mutations in Drosophila. The criteria used allow the detection of deletions that are large enough to include a viable visible mutation as well as a lethal, or a sex-linked lethal as well as a gene that is required for the development of a spermatogonium into a spermatozoon. On these criteria, we have concluded that DEB produces a high proportion of deletions among point mutations; that HA produces no deletions; and that DEN produces either no deletions or only very small ones that cannot be detected by our methods.  相似文献   
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《Autophagy》2013,9(12):1859-1861
Hepatocellular carcinoma (HCC), the most common primary malignant liver tumor, is the third leading cause of cancer deaths. The pathogenesis of HCC is closely associated with chronic liver inflammation fired by a variety of stimulates such as virus infection and metabolic stress. Recent work indicates that autophagy, a homeostatic self-degradation process, which decides cell survival or death upon stress, acts as an effector machinery of immune systems in defending microbial invasion and carcinogenesis. SQSTM1 is a selective target and receptor of autophagy, and the protein content of SQSTM1 reflects the level of autophagic flux in cells. Through degrading SQSTM1, decreasing SQSTM1 aggregates, and therefore interrupting the positive feedback between SQSTM1 aggregates and ROS production, autophagy plays a protective role against hepatocellular carcinoma. Indeed, our studies indicate that toll-like receptor 2 (TLR2)-mediated immune activities in the genotoxic carcinogen diethylnitrosamine (DEN)-injured liver tissue provide essential nutrient stimulates to induce intracellular senescence, which can ensure the activation and maturation of autophagy in liver cells. Loss of TLR2-mediated immune activity and senescence leads to the attenuation of autophagic flux, which cannot eliminate SQSTM1 aggregates, ROS accumulation, and DNA damage, and facilitates the development and progression of HCC.  相似文献   
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Hepatocellular carcinoma (HCC), a highly aggressive form of solid tumor, has been increasing in South East Asia. The lack of effective therapy necessitates the introduction of novel chemopreventive strategies to counter the substantial morbidity and mortality associated with the disease. Recently, we reported that dimethoxy flavone (DMF), a methylated flavone derived from chrysin, significantly suppressed the development of preneoplastic lesions induced by N-nitrosodiethylamine (DEN) in rats, although the mechanism of action was not known. In the present study, we have investigated the effects of DMF administration on gene expression changes related to the inflammation-mediated NF-kB pathway, Wnt pathway and apoptotic mediators in DEN-induced preneoplastic nodules. There was a significant increase in inflammatory markers like cyclooxygenase-2 (COX-2) and inducible nitric oxide synthase (iNOS) and a decrease in apoptotic mediators like p53, caspase-3 and bax in DEN-treated rats when compared to the control group. Activation of NF-kB was noticed by an elevated expression of nuclear protein expression of NF-kB and cytoplasmic phospho-IkBαSer32/36 in the same animals. Likewise, upregulation of canonical Wnt pathway was noticed by elevated expression of nuclear protein levels of phospho-β-cateninThr393 and cytoplasmic casein kinase-2 (CK2), Dvl2 and cyclin D1 levels, along with a simultaneous decrease in expression of phospho-GSK3βSer9. Dietary DMF (100 mg/kg) administration inhibited liver nodule incidence and multiplicity by 82% and 78%, respectively. DMF also reversed the activation of NF-kB and Wnt pathway as shown by the decrease in protein expression of several proteins. Results of the present investigation provide evidence that attenuation of Wnt pathway and suppression of inflammatory response mediated by NF-kB could be implicated, in part, in the chemopreventive effects of methylated flavone. Therefore, the present findings hold great promise for the utilization of DMF as an effective chemotherapeutic agent in treating early stages of liver cancer.  相似文献   
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