癌变·畸变·突变 ›› 2007, Vol. 19 ›› Issue (2): 122-124.doi: 10.3969/j.issn.1004-616x.2007.02.012

• 论著 • 上一篇    下一篇

过氧化氢对不同时相HepG2细胞氧化作用的研究

高志清 海春旭 梁 欣 秦绪军 张晓迪 刘 瑞   

  1. 第四军医大学预防医学系毒理学教研室,陕西 西安 710032
  • 收稿日期:2006-04-24 修回日期:2006-11-29 出版日期:2007-03-30 发布日期:2007-03-30
  • 通讯作者: 海春旭

Oxidative Effect of H2O2 on HepG2 Cells in Different Phases of the Cell Cycle

GAO Zhi-qing, HAI Chun-xu,LIANG Xin,QIN Xu-jun,ZHANG Xiao-di,LIU Rui   

  1. Department of Toxicology, Faculty of Preventive Medicine, the Fourth Military Medical University, Xi’an 710032, Shaanxi, China
  • Received:2006-04-24 Revised:2006-11-29 Online:2007-03-30 Published:2007-03-30
  • Contact: HAI Chun-xu

摘要: 背景与目的: 研究过氧化氢(H2O2)对不同时相HepG2细胞作用的选择性,以进一步探讨H2O2诱导肿瘤细胞凋亡的机制。 材料与方法: 以胸腺嘧啶核苷(TdR)阻断法获得不同细胞周期时相的同步化细胞,分别加入800 μmol/L的H2O2作用3 h,并检测各组细胞的丙二醛(MDA)含量、黄嘌呤氧化酶(XOD)和5'核苷酸酶(5'NT)的活性及抗羟自由基(抗•OH)和抗超氧阴离子自由基 (抗O2)的活性。 结果: 经H2O2处理的各组MDA含量和XOD、抗•OH、抗O2活性显著高于对照组,其差异均具有统计学意义 (P均<0.01),5'NT活性低于对照组(P<0.01)。与未同步化组比较,同步化于S期和G2/M期的细胞MDA含量和XOD、5'NT、抗•OH和抗O2活性显著升高,其差异均具有统计学意义(P均<0.01),而同步化于G1期的细胞MDA含量、XOD、5'NT和抗O2活性显著降低,差异均具有统计学意义(P均<0.01)。 结论: H2O2作用同步化HepG2细胞后,代谢产生自由基的酶活性,脂质过氧化产物含量以及抗氧化水平均表现出细胞周期特异性,这可能是过氧化氢对不同时相HepG2细胞损伤作用不同的原因。

关键词: 细胞周期, 过氧化氢, 氧化损伤, HepG2细胞

Abstract: BACKGROUND & AIM: To study the oxidative effect of H2O2 on HepG2 cells in different phases of the cell cycle to explore the apoptosis mechanism of cancer cells under oxidative stress. MATERIALS AND METHODS:Synchronized cells were collected by arresting with TdR, then cells at different phases of cell cycle were treated by 800 μmol/L H2O2 and content of MDA, activities of XOD, 5'NT , anti- O2 and anti-•OH were measured. RESULTS: The content of MDA and activities of XOD, anti-•OH,anti- O2 increased and activities of 5'NT decreased significatly in cells treated with H2O2 . Compared with non-synchronized cells, the content of MDA and activities of XOD, 5'NT,anti-•OH and anti- O2 increased markedly in synchronized S-phase cells and G2/M-phase cells .The content of MDA and activities of XOD, 5'NT, anti- O2 were significantly lower in synchronized G1-phase cells. CONCLUSION: When synchronized cells were treated with H2O2, the degree of lipid peroxidation, activities of enzyme that catalyse production of free radicals, and level of anti-oxidation were all associated with the cell cycle. This may be due to different sensitivities to oxidative damage induced by H2O2 at the different phases of the cell cycle.

Key words: cell cycle, H2O2, oxidative effect, HepG2 cell

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