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导致1-(2-脱氧-2-氟-1-β-D-阿拉伯呋喃糖基)-5-碘尿嘧啶对人肝细胞产生线粒体毒性的细胞和分子事件。

Cellular and molecular events leading to mitochondrial toxicity of 1-(2-deoxy-2-fluoro-1-beta-D-arabinofuranosyl)-5-iodouracil in human liver cells.

作者信息

Cui L, Yoon S, Schinazi R F, Sommadossi J P

机构信息

Department of Pharmacology and Toxicology, University of Alabama at Birmingham 35294.

出版信息

J Clin Invest. 1995 Feb;95(2):555-63. doi: 10.1172/JCI117698.

Abstract

We have explored the mechanism(s) related to FIAU-induced liver toxicity, particularly focusing on its effect on mitochondrial function in a human hepatoma cell line-HepG2. The potential role of FMAU and FAU, metabolites detected in FIAU-treated patients were also ascertained. FIAU and FMAU inhibited cell growth and were effectively phosphorylated. A substantial increase in lactic acid production in medium of cells incubated with 1-10 microM FIAU or FMAU was consistent with mitochondrial dysfunction. Slot blot analysis demonstrated that a two week exposure to 10 microM FIAU or FMAU was not associated with a decrease in total mitochondrial (mt) DNA content. However, FIAU and FMAU were incorporated into nuclear and mtDNA and relative values suggest that both compounds incorporate at a much higher rate into mtDNA. Electron micrographs of cells incubated with 10 microM FIAU or FMAU revealed the presence of enlarged mitochondria with higher cristae density and lipid vesicles. In conclusion, these data suggest that despite the lack of inhibition of mtDNA content, incorporation of FIAU and FMAU into mtDNA of HepG2 cells leads to marked mitochondrial dysfunction as evidenced by disturbance in cellular energy metabolism and detection of micro- and macrovesicular steatosis.

摘要

我们探究了与氟碘阿糖脲(FIAU)诱导的肝毒性相关的机制,尤其聚焦于其对人肝癌细胞系——HepG2线粒体功能的影响。还确定了在接受FIAU治疗的患者体内检测到的代谢产物氟甲基阿糖脲(FMAU)和氟阿糖脲(FAU)的潜在作用。FIAU和FMAU抑制细胞生长并能被有效磷酸化。在含有1 - 10微摩尔FIAU或FMAU的细胞培养基中,乳酸产量大幅增加,这与线粒体功能障碍一致。狭缝印迹分析表明,暴露于10微摩尔FIAU或FMAU两周与线粒体(mt)DNA总量的减少无关。然而,FIAU和FMAU被整合到核DNA和mtDNA中,相对值表明这两种化合物整合到mtDNA中的速率要高得多。用10微摩尔FIAU或FMAU孵育的细胞的电子显微镜照片显示存在线粒体增大、嵴密度增加和脂质小泡。总之,这些数据表明,尽管mtDNA含量未受抑制,但FIAU和FMAU整合到HepG2细胞的mtDNA中会导致明显的线粒体功能障碍,细胞能量代谢紊乱以及检测到微泡和大泡性脂肪变性就是证明。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa95/295512/37ee30d9db72/jcinvest00024-0129-a.jpg

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