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1.
Oncogene ; 40(1): 127-139, 2021 01.
Article in English | MEDLINE | ID: mdl-33093654

ABSTRACT

The oncofetal long noncoding RNA (lncRNA) H19 is postnatally repressed in most tissues, and re-expressed in many cancers, including hepatocellular carcinoma (HCC). The role of H19 in carcinogenesis is a subject of controversy. We aimed to examine the role of H19 in chronic inflammation-mediated hepatocarcinogenesis using the Mdr2/Abcb4 knockout (Mdr2-KO) mouse, a well-established HCC model. For this goal, we have generated Mdr2-KO/H19-KO double knockout (dKO) mice and followed spontaneous tumor development in the dKO and control Mdr2-KO mice. Cellular localization of H19 and effects of H19 loss in the liver were determined in young and old Mdr2-KO mice. Tumor incidence and tumor load were both significantly decreased in the liver of dKO versus Mdr2-KO females. The expression levels of H19 and Igf2 were variable in nontumor liver tissues of Mdr2-KO females and were significantly downregulated in most matched tumors. In nontumor liver tissue of aged Mdr2-KO females, H19 was expressed mainly in hepatocytes, and hepatocyte proliferation was increased compared to dKO females. At an early age, dKO females displayed lower levels of liver injury and B-cell infiltration, with higher percentage of binuclear hepatocytes. In human samples, H19 expression was higher in females, positively correlated with cirrhosis (in nontumor liver samples) and negatively correlated with CTNNB1 (beta-catenin) mutations and patients' survival (in tumors). Our data demonstrate that the lncRNA H19 is pro-oncogenic during the development of chronic inflammation-mediated HCC in the Mdr2-KO mouse model, mainly by increasing liver injury and decreasing hepatocyte polyploidy in young mice.


Subject(s)
ATP Binding Cassette Transporter, Subfamily B/genetics , Carcinoma, Hepatocellular/pathology , Fibrosis/genetics , Liver Neoplasms/pathology , RNA, Long Noncoding/genetics , beta Catenin/genetics , Animals , Carcinoma, Hepatocellular/genetics , Female , Fibrosis/complications , Gene Expression Regulation, Neoplastic , Humans , Liver Neoplasms/genetics , Male , Mice , Mice, Knockout , Sex Characteristics , Tumor Burden , Up-Regulation , ATP-Binding Cassette Sub-Family B Member 4
2.
FASEB J ; 33(7): 7995-8007, 2019 07.
Article in English | MEDLINE | ID: mdl-30897344

ABSTRACT

Chronic liver inflammation (CLI) is a risk factor for development of hepatocellular carcinoma (HCC). Galectin-1 (Gal1) is involved in the regulation of inflammation, angiogenesis, and tumorigenesis, exhibiting multiple anti-inflammatory and protumorigenic activities. We aimed to explore its regulatory role in CLI and HCC progression using an established model of CLI-mediated HCC development, Abcb4 [multidrug-resistance 2 (Mdr2)]-knockout (KO) mice, which express high levels of Gal1 in the liver. We generated double-KO (dKO) Gal1-KO/Mdr2-KO mice on C57BL/6 and FVB/N genetic backgrounds and compared HCC development in the generated strains with their parental Mdr2-KO strains. Loss of Gal1 increased liver injury, inflammation, fibrosis, and ductular reaction in dKO mice of both strains starting from an early age. Aged dKO mutants displayed earlier hepatocarcinogenesis and increased tumor size compared with control Mdr2-KO mice. We found that osteopontin, a well-known modulator of HCC development, and oncogenic proteins Ntrk2 (TrkB) and S100A4 were overexpressed in dKO compared with Mdr2-KO livers. Our results demonstrate that in Mdr2-KO mice, a model of CLI-mediated HCC, Gal1-mediated protection from hepatitis, liver fibrosis, and HCC initiation dominates over its known procarcinogenic activities at later stages of HCC development. These findings suggest that anti-Gal1 treatments may not be applicable at all stages of CLI-mediated HCC.-Potikha, T., Pappo, O., Mizrahi, L., Olam, D., Maller, S. M., Rabinovich, G. A., Galun, E., Goldenberg, D. S. Lack of galectin-1 exacerbates chronic hepatitis, liver fibrosis, and carcinogenesis in murine hepatocellular carcinoma model.


Subject(s)
Galectin 1/physiology , Hepatitis/metabolism , Liver Cirrhosis/metabolism , Liver Neoplasms, Experimental/metabolism , Neoplasm Proteins/metabolism , Precancerous Conditions/metabolism , Alternative Splicing , Animals , Cell Division , Chronic Disease , Cocarcinogenesis , Female , Galectin 1/deficiency , Galectin 1/genetics , Hep G2 Cells , Hepatitis/genetics , Hepatitis/pathology , Hepatocytes/pathology , Humans , Liver Cirrhosis/genetics , Liver Cirrhosis/pathology , Liver Neoplasms, Experimental/etiology , Liver Neoplasms, Experimental/genetics , Liver Neoplasms, Experimental/pathology , Male , Membrane Glycoproteins/biosynthesis , Membrane Glycoproteins/genetics , Mice , Mice, Inbred C57BL , Mice, Inbred Strains , Mice, Knockout , Neoplasm Proteins/genetics , Osteopontin/biosynthesis , Osteopontin/deficiency , Osteopontin/genetics , Precancerous Conditions/genetics , Precancerous Conditions/pathology , Protein-Tyrosine Kinases/biosynthesis , Protein-Tyrosine Kinases/genetics , Specific Pathogen-Free Organisms
3.
Oncotarget ; 8(62): 104772-104784, 2017 Dec 01.
Article in English | MEDLINE | ID: mdl-29285212

ABSTRACT

Chronic inflammation precedes the majority of hepatocellular carcinoma (HCC) cases. We investigated the chemopreventive potential of S-adenosylmethionine (SAM), an essential donor for all methylation reactions in the cell, at the late precancerous stage of HCC development using the Mdr2-knockout (Mdr2-KO, Abcb4-/-) mice, a model of inflammation-mediated hepatocarcinogenesis. Previously, we revealed down-regulation of the genes regulating SAM metabolism in the liver of these mice at the precancerous stages. Now, we have supplied Mdr2-KO mice at the late precancerous stage with SAM during either a short-term (17 days) or a long-term (51 days) period and explored the effects of such supplementation on tumor development, DNA methylation and gene expression in the liver. The short-term SAM supplementation significantly decreased the number of small tumor nodules, proliferating hepatocytes and the total DNA methylation level, while it increased expression of the tumor suppressor proteins Mat1a and p21. Surprisingly, the long-term SAM supplementation did not affect tumor growth and hepatocyte proliferation, while it increased the total liver DNA methylation. Our results demonstrate that the short-term SAM supplementation in the Mdr2-KO mice inhibited liver tumor development potentially by increasing multiple tumor suppressor mechanisms resulting in cell cycle arrest. The long-term SAM supplementation resulted in a bypass of the cell cycle arrest in this HCC model by a yet unknown mechanism.

4.
Oncotarget ; 7(22): 31738-54, 2016 May 31.
Article in English | MEDLINE | ID: mdl-27166189

ABSTRACT

Galectin-1 (Gal1) is a known immune/inflammatory regulator which acts both extracellularly and intracellularly, modulating innate and adaptive immune responses. Here, we explored the role of Gal1 in liver regeneration using 70% partial hepatectomy (PHx) of C57BL/6 wild type and Gal1-knockout (Gal1-KO, Lgals1-/-) mice. Gene or protein expression, in liver samples collected at time intervals from 2 to 168 hours post-operation, was tested by either RT-PCR or by immunoblotting and immunohistochemistry, respectively. We demonstrated that Gal1 transcript and protein expression was induced in the liver tissue of wild type mice upon PHx. Liver regeneration following PHx was significantly delayed in the Gal1-KO compared to the control liver. This delay was accompanied by a decreased Akt phosphorylation, and accumulation of the hepatocyte nuclear p21 protein in the Gal1-KO versus control livers at 24 and 48 hours following PHx. Transcripts of several known regulators of inflammation, cell cycle and cell signaling, including some known PHx-induced genes, were aberrantly expressed (mainly down-regulated) in Gal1-KO compared to control livers at 2, 6 and 24 hours post-PHx. Transient steatosis, which is imperative for liver regeneration following PHx, was significantly delayed and decreased in the Gal1-KO compared to the control liver and was accompanied by a significantly decreased expression in the mutant liver of several genes encoding lipid metabolism regulators. Our results demonstrate that Gal1 protein is essential for efficient liver regeneration following PHx through the regulation of liver inflammation, hepatic cell proliferation, and the control of lipid storage in the regenerating liver.


Subject(s)
Cell Proliferation , Galectin 1/metabolism , Hepatectomy , Liver Regeneration , Liver/surgery , Animals , Cell Cycle , Cyclin-Dependent Kinase Inhibitor p21/metabolism , Fatty Liver/genetics , Fatty Liver/metabolism , Fatty Liver/pathology , Galectin 1/deficiency , Galectin 1/genetics , Genotype , Hepatitis/genetics , Hepatitis/metabolism , Hepatitis/pathology , Liver/metabolism , Liver/pathology , Mice, Inbred C57BL , Mice, Knockout , Phenotype , Phosphorylation , Proto-Oncogene Proteins c-akt/metabolism , Signal Transduction , Time Factors
5.
Oncotarget ; 6(13): 11047-60, 2015 May 10.
Article in English | MEDLINE | ID: mdl-25918251

ABSTRACT

Chronic liver inflammation precedes the majority of hepatocellular carcinomas (HCC). Here, we explore the connection between chronic inflammation and DNA methylation in the liver at the late precancerous stages of HCC development in Mdr2(-/-) (Mdr2/Abcb4-knockout) mice, a model of inflammation-mediated HCC. Using methylated DNA immunoprecipitation followed by hybridization with "CpG islands" (CGIs) microarrays, we found specific CGIs in 76 genes which were hypermethylated in the Mdr2(-/-) liver compared to age-matched healthy controls. The observed hypermethylation resulted mainly from an age-dependent decrease of methylation of the specific CGIs in control livers with no decrease in mutant mice. Chronic inflammation did not change global levels of DNA methylation in Mdr2(-/-) liver, but caused a 2-fold decrease of the global 5-hydroxymethylcytosine level in mutants compared to controls. Liver cell fractionation revealed, that the relative hypermethylation of specific CGIs in Mdr2(-/-) livers affected either hepatocyte, or non-hepatocyte, or both fractions without a correlation between changes of gene methylation and expression. Our findings demonstrate that chronic liver inflammation causes hypermethylation of specific CGIs, which may affect both hepatocytes and non-hepatocyte liver cells. These changes may serve as useful markers of an increased regenerative activity and of a late precancerous stage in the chronically inflamed liver.


Subject(s)
ATP Binding Cassette Transporter, Subfamily B/physiology , Carcinoma, Hepatocellular/etiology , DNA Methylation , Inflammation/complications , Liver Neoplasms/etiology , Liver/pathology , Precancerous Conditions/etiology , Animals , Carcinoma, Hepatocellular/pathology , Cells, Cultured , Chronic Disease , CpG Islands , Gene Expression Profiling , Hepatocytes/metabolism , Hepatocytes/pathology , Humans , Inflammation/pathology , Liver/metabolism , Liver Neoplasms/pathology , Mice , Mice, Knockout , Precancerous Conditions/pathology , RNA, Messenger/genetics , Real-Time Polymerase Chain Reaction , Reverse Transcriptase Polymerase Chain Reaction , ATP-Binding Cassette Sub-Family B Member 4
6.
Hepatology ; 58(1): 192-204, 2013 Jul.
Article in English | MEDLINE | ID: mdl-23423643

ABSTRACT

UNLABELLED: Chronic inflammation is strongly associated with an increased risk for hepatocellular carcinoma (HCC) development. The multidrug resistance 2 (Mdr2)-knockout (KO) mouse (adenosine triphosphate-binding cassette b4(-/-) ), a model of inflammation-mediated HCC, develops chronic cholestatic hepatitis at an early age and HCC at an adult age. To delineate factors contributing to hepatocarcinogenesis, we compared the severity of early chronic hepatitis and late HCC development in two Mdr2-KO strains: Friend virus B-type/N (FVB) and C57 black 6 (B6). We demonstrated that hepatocarcinogenesis was significantly less efficient in the Mdr2-KO/B6 mice versus the Mdr2-KO/FVB mice; this difference was more prominent in males. Chronic hepatitis in the Mdr2-KO/B6 males was more severe at 1 month of age but was less severe at 3 months of age in comparison with age-matched Mdr2-KO/FVB males. A comparative genome-scale gene expression analysis of male livers of both strains at 3 months of age revealed both common and strain-specific aberrantly expressed genes, including genes associated with the regulation of inflammation, the response to oxidative stress, and lipid metabolism. One of these regulators, galectin-1 (Gal-1), possesses both anti-inflammatory and protumorigenic activities. To study its regulatory role in the liver, we transferred the Gal-1-KO mutation (lectin galactoside-binding soluble 1(-/-) ) from the B6 strain to the FVB strain, and we demonstrated that endogenous Gal-1 protected the liver against concanavalin A-induced hepatitis with the B6 genetic background but not the FVB genetic background. CONCLUSION: Decreased chronic hepatitis in Mdr2-KO/B6 mice at the age of 3 months correlated with a significant retardation of liver tumor development in this strain versus the Mdr2-KO/FVB strain. We found candidate factors that may determine strain-specific differences in the course of chronic hepatitis and HCC development in the Mdr2-KO model, including inefficient anti-inflammatory activity of the endogenous lectin Gal-1 in the FVB strain.


Subject(s)
Carcinoma, Hepatocellular/pathology , Cell Transformation, Neoplastic/pathology , Galectin 1/physiology , Hepatitis, Chronic/pathology , Liver Neoplasms/pathology , Mice, Inbred Strains/genetics , ATP Binding Cassette Transporter, Subfamily B/deficiency , ATP Binding Cassette Transporter, Subfamily B/genetics , Animals , Carcinoma, Hepatocellular/etiology , Chemical and Drug Induced Liver Injury/prevention & control , Concanavalin A , Hepatitis, Chronic/complications , Hepatitis, Chronic/etiology , Liver/metabolism , Liver Neoplasms/etiology , Male , Methionine Adenosyltransferase/biosynthesis , Mice , Mice, Knockout , ATP-Binding Cassette Sub-Family B Member 4
7.
PLoS One ; 4(4): e5025, 2009.
Article in English | MEDLINE | ID: mdl-19340302

ABSTRACT

BACKGROUND: The hepatitis C virus (HCV) is one of the major risk factors for the development of hepatocellular carcinoma (HCC). Nevertheless, transgenic mice which express the whole HCV polyprotein (HCV-Tg) do not develop HCC. Whereas chronic HCV infection causes inflammation in patients, in HCV-Tg mice, the host immune reaction against viral proteins is lacking. We aimed to test the role of HCV proteins in HCC development on the background of chronic inflammation in vivo. METHODOLOGY/PRINCIPAL FINDINGS: We crossed HCV-Tg mice that do not develop HCC with the Mdr2-knockout (Mdr2-KO) mice which develop inflammation-associated HCC, to generate Mdr2-KO/HCV-Tg mice. We studied the effect of the HCV transgene on tumor incidence, hepatocyte mitosis and apoptosis, and investigated the potential contributing factors for the generated phenotype by gene expression and protein analyses. The Mdr2-KO/HCV-Tg females from the N2 generation of this breeding (having 75% of the FVB/N genome and 25% of the C57BL/6 genome) produced significantly larger tumors in comparison with Mdr2-KO mice. In parallel, the Mdr2-KO/HCV-Tg females had an enhanced inflammatory gene expression signature. However, in the N7 generation (having 99.2% of the FVB/N genome and 0.8% of the C57BL/6 genome) there was no difference in tumor development between Mdr2-KO/HCV-Tg and Mdr2-KO animals of both sexes. The HCV transgene was similarly expressed in the livers of Mdr2-KO/HCV-Tg females of both generations, as revealed by detection of the HCV transcript and the core protein. CONCLUSION: These findings suggest that the HCV transgene accelerated inflammation-associated hepatocarcinogenesis in a host genetic background-dependent manner.


Subject(s)
Hepacivirus/physiology , Liver Neoplasms, Experimental/virology , Animals , Base Sequence , DNA Primers , Female , Gene Expression Profiling , Hepacivirus/genetics , Immunohistochemistry , Liver Neoplasms, Experimental/pathology , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Mice, Transgenic , Reverse Transcriptase Polymerase Chain Reaction , Transgenes
8.
PLoS One ; 3(11): e3726, 2008.
Article in English | MEDLINE | ID: mdl-19015728

ABSTRACT

BACKGROUND/AIMS: microRNAs (miRNAs) are small noncoding RNAs that regulate cognate mRNAs post-transcriptionally. Human embryonic stem cells (hESC), which exhibit the characteristics of pluripotency and self-renewal, may serve as a model to study the role of miRNAs in early human development. We aimed to determine whether endodermally-differentiated hESC demonstrate a unique miRNA expression pattern, and whether overexpression of endoderm-specific miRNA may affect hESC differentiation. METHODS: miRNA expression was profiled in undifferentiated and NaButyrate-induced differentiated hESC of two lines, using microarray and quantitative RT-PCR. Then, the effect of lentiviral-based overexpression of liver-specific miR-122 on hESC differentiation was analyzed, using genomewide gene microarrays. RESULTS: The miRNA profiling revealed expression of three novel miRNAs in undifferentiated and differentiated hESC. Upon NaButyrate induction, two of the most upregulated miRNAs common to both cell lines were miR-24 and miR-10a, whose target genes have been shown to inhibit endodermal differentiation. Furthermore, induction of several liver-enriched miRNAs, including miR-122 and miR-192, was observed in parallel to induction of endodermal gene expression. Stable overexpression of miR-122 in hESC was unable to direct spontaneous differentiation towards a clear endodermal fate, but rather, delayed general differentiation of these cells. CONCLUSIONS: Our results demonstrate that expression of specific miRNAs correlates with that of specific genes upon differentiation, and highlight the potential role of miRNAs in endodermal differentiation of hESC.


Subject(s)
Embryonic Stem Cells/cytology , Endoderm/metabolism , Gene Expression Profiling , MicroRNAs/genetics , Algorithms , Cell Differentiation , Cell Line , Flow Cytometry , Genetic Vectors , Genome, Human , Humans , Oligonucleotide Array Sequence Analysis , Reverse Transcriptase Polymerase Chain Reaction , Sodium Oxybate/pharmacology , Transcription Factors/metabolism
9.
Mol Cancer Res ; 5(11): 1159-70, 2007 Nov.
Article in English | MEDLINE | ID: mdl-18025261

ABSTRACT

Mouse models of hepatocellular carcinoma (HCC) simulate specific subgroups of human HCC. We investigated hepatocarcinogenesis in Mdr2-knockout (Mdr2-KO) mice, a model of inflammation-associated HCC, using gene expression profiling and immunohistochemical analyses. Gene expression profiling showed that although Mdr2-KO mice differ from other published murine HCC models, they share several important deregulated pathways and many coordinately differentially expressed genes with human HCC data sets. Analysis of genome positions of differentially expressed genes in liver tumors revealed a prolonged region of down-regulated genes on murine chromosome 8 in three of the six analyzed tumor samples. This region is syntenic to human chromosomal regions that are frequently deleted in human HCC and harbor multiple tumor suppressor genes. Real-time reverse transcription-PCR analysis of 16 tumor samples confirmed down-regulation of several tumor suppressors in most tumors. We show that in the aged Mdr2-KO mice, cyclin D1 nuclear level is increased in dysplastic hepatocytes that do not form nodules; however, it is decreased in most dysplastic nodules and in liver tumors. We found that this decrease is mostly at the protein, rather than the mRNA, level. These findings raise the question on the role of cyclin D1 at early stages of hepatocarcinogenesis in the Mdr2-KO HCC model. Furthermore, we show that most liver tumors in Mdr2-KO mice were characterized by the absence of beta-catenin activation. In conclusion, the Mdr2-KO mouse may serve as a model for beta-catenin-negative subgroup of human HCCs characterized by low nuclear cyclin D1 levels in tumor cells and by down-regulation of multiple tumor suppressor genes.


Subject(s)
ATP Binding Cassette Transporter, Subfamily B , Carcinoma, Hepatocellular/genetics , Cell Transformation, Neoplastic/genetics , Liver Neoplasms/genetics , ATP Binding Cassette Transporter, Subfamily B/genetics , Animals , Carcinoma, Hepatocellular/pathology , Cell Transformation, Neoplastic/pathology , Cyclin D1/metabolism , Disease Models, Animal , Gene Expression Profiling , Genes, Tumor Suppressor , Hepatocytes/metabolism , Hepatocytes/pathology , Liver Neoplasms/pathology , Mice , Mice, Knockout , beta Catenin/metabolism , ATP-Binding Cassette Sub-Family B Member 4
10.
Mol Cancer Ther ; 6(4): 1283-91, 2007 Apr.
Article in English | MEDLINE | ID: mdl-17431106

ABSTRACT

Dietary antioxidants and selenium compounds were shown to have a therapeutic effect against hepatocellular carcinoma in several mouse models. We tested the effects of tannic acid and selenomethionine on hepatocellular carcinoma development in Mdr2 knockout (Mdr2-KO) mice. Mdr2-KO and age-matched Mdr2 heterozygous control mice were fed with tannic acid or selenomethionine during the first 3 months of life. Then, several mice from each group were sacrificed, and liver tissue samples were removed for analysis. The remaining mice were fed a regular diet until the age of 16 months, at which time the number and size of liver tumors were determined. Liver tissue samples of 3-month-old mice were subjected to gene expression profiling analysis using cDNA macroarrays containing probes for 240 genes that regulate responses to oxidative stress and inflammation or lipid metabolism. Both tannic acid and selenomethionine had partial chemopreventive effect on development of hepatocellular carcinoma in Mdr2-KO mice: they reduced the incidence of large tumor nodules (diameter >1 cm) at age 16 months. Both agents inhibited gene expression and reversed up-regulation of many genes that control inflammation or response to oxidative stress in Mdr2-KO livers at age 3 months. This inhibitory effect on gene expression correlated with the ability of agents to reduce incidence of large tumors: selenomethionine was more active than tannic acid in both aspects. Understanding the molecular mechanism of chemoprevention effect could improve our therapeutic modalities while using these agents.


Subject(s)
ATP Binding Cassette Transporter, Subfamily B/deficiency , Carcinoma, Hepatocellular/pathology , Liver Neoplasms/pathology , Precancerous Conditions/pathology , Selenomethionine/pharmacology , Tannins/pharmacology , Animals , Carcinoma, Hepatocellular/genetics , Carcinoma, Hepatocellular/prevention & control , Chemoprevention , Gene Expression Profiling , Liver/drug effects , Liver/pathology , Liver Neoplasms/genetics , Liver Neoplasms/prevention & control , Mice , Mice, Knockout , Precancerous Conditions/genetics , Proliferating Cell Nuclear Antigen/metabolism , Selenomethionine/therapeutic use , Tannins/therapeutic use , ATP-Binding Cassette Sub-Family B Member 4
11.
Cancer Res ; 66(8): 4001-10, 2006 Apr 15.
Article in English | MEDLINE | ID: mdl-16618719

ABSTRACT

Molecular events preceding the development of hepatocellular carcinoma were studied in the Mdr2-knockout (Mdr2-KO) mice. These mice lack the liver-specific P-glycoprotein responsible for phosphatidylcholine transport across the canalicular membrane. Portal inflammation ensues at an early age followed by hepatocellular carcinoma development after the age of 1 year. Liver tissue samples of Mdr2-KO mice in the early and late precancerous stages of liver disease were subjected to histologic, biochemical, and gene expression profiling analysis. In an early stage, multiple protective mechanisms were found, including induction of many anti-inflammatory and antioxidant genes and increase of total antioxidant capacity of liver tissue. Despite stimulation of hepatocyte DNA replication, their mitotic activity was blocked at this stage. In the late stage of the disease, although the total antioxidant capacity of liver tissue of Mdr2-KO mice was normal, and inflammation was less prominent, many protective genes remained overexpressed. Increased mitotic activity of hepatocytes resulted in multiple dysplastic nodules, some of them being steatotic. Expression of many genes regulating lipid and phospholipid metabolism was distorted, including up-regulation of choline kinase A, a known oncogene. Many other oncogenes, including cyclin D1, Jun, and some Ras homologues, were up-regulated in Mdr2-KO mice at both stages of liver disease. However, we found no increase of Ras activation. Our data suggest that some of the adaptive mechanisms induced in the early stages of hepatic disease, which protect the liver from injury, could have an effect in hepatocarcinogenesis at later stages of the disease in this hepatocellular carcinoma model.


Subject(s)
ATP Binding Cassette Transporter, Subfamily B/deficiency , Cell Transformation, Neoplastic/genetics , Liver Neoplasms, Experimental/genetics , Precancerous Conditions/genetics , ATP Binding Cassette Transporter, Subfamily B/genetics , Animals , Antioxidants/metabolism , Cell Cycle/physiology , Cell Growth Processes/physiology , Cell Transformation, Neoplastic/immunology , Cell Transformation, Neoplastic/metabolism , Cell Transformation, Neoplastic/pathology , Chronic Disease , Gene Expression Profiling , Genes, Tumor Suppressor , Inflammation/immunology , Lipid Metabolism , Liver Neoplasms, Experimental/immunology , Liver Neoplasms, Experimental/metabolism , Liver Neoplasms, Experimental/pathology , Male , Mice , Mice, Knockout , Oncogenes , Oxidative Stress , Phosphatidylcholines/metabolism , Precancerous Conditions/immunology , Precancerous Conditions/metabolism , Precancerous Conditions/pathology , ATP-Binding Cassette Sub-Family B Member 4
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