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1.
Front Genet ; 11: 615308, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-33414813

RESUMEN

A further understanding of the molecular mechanism of hepatocellular carcinoma (HCC) is necessary to predict a patient's prognosis and develop new targeted gene drugs. This study aims to identify essential genes related to HCC. We used the Weighted Gene Co-expression Network Analysis (WGCNA) and differential gene expression analysis to analyze the gene expression profile of GSE45114 in the Gene Expression Omnibus (GEO) database and The Cancer Genome Atlas database (TCGA). A total of 37 overlapping genes were extracted from four groups of results. Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway and Gene Ontology (GO) enrichment analyses were performed on the 37 overlapping genes. Then, we used the STRING database to map the protein interaction (PPI) network of 37 overlapping genes. Ten hub genes were screened according to the Maximal Clique Centrality (MCC) score using the Cytohubba plugin of Cytoscape (including FOS, EGR1, EPHA2, DUSP1, IGFBP3, SOCS2, ID1, DUSP6, MT1G, and MT1H). Most hub genes show a significant association with immune infiltration types and tumor stemness of microenvironment in HCC. According to Univariate Cox regression analysis and Kaplan-Meier survival estimation, SOCS2 was positively correlated with overall survival (OS), and IGFBP3 was negatively correlated with OS. Moreover, the expression of IGFBP3 increased with the increase of the clinical stage, while the expression of SOCS2 decreased with the increase of the clinical stage. In conclusion, our findings suggest that SOCS2 and IGFBP3 may play an essential role in the development of HCC and may serve as a potential biomarker for future diagnosis and treatment.

2.
Zhonghua Wai Ke Za Zhi ; 43(1): 33-6, 2005 Jan 01.
Artículo en Chino | MEDLINE | ID: mdl-15774171

RESUMEN

OBJECTIVE: To investigate the effect and mechanism of arsenic trioxide on hepatoma cell line BEL-7402 and observe the effect and best administration method of arsenic trioxide on hepatocellular carcinoma patients who were not suitable for operation. METHODS: The cell activity and morphologic changes were studied after being treated with arsenic trioxide in different concentrations. The apoptosis was detected by flow cytometry assay and DNA fragmentation assay. The caspase-3 level of mRNA and protein were detected by reverse transcription polymerase chain reaction (RT-PCR) and fluoro-spectrophotometer. The growth inhibition of implant tumor was observed in nude mice treated with arsenic trioxide in different concentrations. Arsenic trioxide was used in hepatocellular carcinoma patients by intravenous dropping and continuous regional infusion through hepatic artery. RESULTS: The effect of arsenic trioxide on hepatoma cell lines was dependent on the time and concentration obviously. The decrease in cell number was preceded by morphological changes in the treated BEL-7402 cells that were characteristic of apoptosis, including membrane blebbing, shrunken cytoplasm, nuclear condensation and loss of adhesion. Flow cytometry assay showed an arrestment at G(2)/M phase and sub-G(1) cell peak. DNA fragmentation assay showed a marked DNA ladder. The mRNA level of caspase-3 was no change in RT-PCR whereas the protein of caspase-3 was increased after added As(2)O(3) 1 - 36 h. Caspase-3 activity began to increase after 2 h and reached a maximal level after 12 h in a linear fashion. Then, the level of caspase-3 was decreased, but still in a high level. The growth inhibition of implant tumors was obviously in nude mice. The intravenous usage of arsenic trioxide could improve the quality of life with low toxicity in hepatocellular carcinoma patients not suitable for operation. The tumor size decreased in 30 patients and AFP value decreased in 19 patients by continuous regional infusion through hepatic artery. CONCLUSIONS: Arsenic trioxide can obviously inhibit the growth of hepatoma cell line BEL-7402 through inducing hepatoma cell apoptosis. The activation and increase of Caspase-3 is the possible mechanism of apoptosis, and the acting point is in pro-enzyme level. The best result of arsenic trioxide on non-operative patients should be gotten in continuous infusion through hepatic artery.


Asunto(s)
Antineoplásicos , Apoptosis/efectos de los fármacos , Arsenicales , Carcinoma Hepatocelular/tratamiento farmacológico , Neoplasias Hepáticas Experimentales/patología , Neoplasias Hepáticas/tratamiento farmacológico , Óxidos , Adulto , Anciano , Animales , Antineoplásicos/farmacología , Antineoplásicos/uso terapéutico , Trióxido de Arsénico , Arsenicales/farmacología , Arsenicales/uso terapéutico , Carcinoma Hepatocelular/patología , Línea Celular Tumoral , Quimioterapia del Cáncer por Perfusión Regional , Femenino , Humanos , Neoplasias Hepáticas/patología , Masculino , Ratones , Ratones Desnudos , Persona de Mediana Edad , Óxidos/farmacología , Óxidos/uso terapéutico
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