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Transcriptome Analysis of the Effects of Gomisin A on the Recovery of Carbon Tetrachloride-Induced Damage in Rat Liver

机译:转录组分析戈米菌素A对四氯化碳诱导的大鼠肝脏损伤的恢复的作用

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摘要

Gomisin A possesses a hepatic function-facilitating property in liver-injured rats. Its preventive action on carbon tetrachloride-induced cholestasis is due to maintenance of the function of the bile acids-independent fraction. To investigate alterations in gene expression after gomisin A treatment on injured rat liver, DNA microarray analyses were performed on a Rat 44K 4-Plex Gene Expression platform with duplicated reactions after gomisin A treatment. We identified 255 up-regulated and 230 down-regulated genes due to the effects of gomisin A on recovery of carbon tetrachloride-induced rat liver damage. For functional characterization of these genes, Gene Ontology and Kyoto Encyclopedia of Genes and Genomes biochemical pathways analyses were performed. Many up-regulated or down-regulated genes were related to cell cycle or focal adhesion and cell death genes, respectively. Our microarray experiment indicated that the liver repair mechanism induced by gomisin A was strongly associated with increased gene expressions related to cell cycle and suppression of the gene expression related in cell death.
机译:Gomisin A在肝损伤大鼠中具有促进肝功能的特性。它对四氯化碳诱导的胆汁淤积的预防作用是由于维持了不依赖胆汁酸的馏分的功能。为了研究戈米菌素A治疗受损大鼠肝脏后基因表达的变化,在大鼠44K 4-Plex基因表达平台上进行了戈米菌素A治疗后重复的DNA微阵列分析。由于戈米菌素A对恢复四氯化碳诱导的大鼠肝损伤的作用,我们鉴定了255个上调基因和230个下调基因。为了对这些基因进行功能表征,进行了基因本体论和《京都基因与基因组百科全书》生化途径分析。许多上调或下调的基因分别与细胞周期或粘着斑和细胞死亡基因有关。我们的微阵列实验表明,戈米菌素A诱导的肝修复机制与细胞周期相关的基因表达增加和细胞死亡相关的基因表达抑制密切相关。

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