Cavallo D, Ursini C L, Setini A, Chianese C, Piegari P, Perniconi B, Iavicoli S
Department of Occupational Health, ISPESL National Institute for Occupational Safety and Prevention, Via Fontana Candida, 1-00040 Monteporzio Catone, Rome, Italy.
Toxicol In Vitro. 2003 Oct-Dec;17(5-6):603-7. doi: 10.1016/s0887-2333(03)00138-3.
It has been suggested that Nickel is involved in oxidative damage and inhibition of DNA repair. We studied the effects of NiSO4 on oxidative stress and DNA repair in Jurkat cells to elucidate its mechanism of action. Cells were treated with H2O2 and ROS generation (by flow cytometry), and oxidative DNA damage (as tail moment by Fpg-enzyme comet test), were evaluated immediately and after 4 and 24 h of DNA damage recovery occurred in presence or absence of NiSO4 (0.017 and 0.17 microM) to clarify possible interactions of Ni with DNA repair processes. Moreover, cells were exposed to the same doses of NiSO4 for 4 and 24 hours to evaluate its direct oxidative effect. The results of the comet test showed high tail moment immediately after oxidative burst with a decreasing after 4 h of DNA recovery, and a slight increase after 24 h of recovery. The decreases were more limited for cells treated with NiSO4 0.17 microM indicating an inhibition of oxidative DNA damage repair by this substance. An induction of ROS was observed after 4 h of incubation with higher dose of NiSO4. Cells treated with H2O2 showed the highest level of ROS after 4 h of recovery in presence of NiSO4 0.17 microM that remained at elevated levels also after 24 h of recovery suggesting a synergistic action of Ni with H2O2 in the reduction of cellular anti-oxidative defence activities.
有人提出镍参与氧化损伤和DNA修复抑制。我们研究了硫酸镍对Jurkat细胞氧化应激和DNA修复的影响,以阐明其作用机制。用H2O2处理细胞并通过流式细胞术评估ROS生成,同时在有或无硫酸镍(0.017和0.17微摩尔)存在的情况下,在DNA损伤恢复4小时和24小时后,通过Fpg酶彗星试验评估氧化DNA损伤(以尾矩表示),以阐明镍与DNA修复过程可能的相互作用。此外,将细胞暴露于相同剂量的硫酸镍4小时和24小时,以评估其直接氧化作用。彗星试验结果显示,氧化爆发后立即出现高尾矩,DNA恢复4小时后尾矩下降,恢复24小时后略有增加。对于用0.17微摩尔硫酸镍处理的细胞,下降更为有限,表明该物质抑制氧化DNA损伤修复。用较高剂量硫酸镍孵育4小时后观察到ROS诱导。在用H2O2处理的细胞中,在0.17微摩尔硫酸镍存在下,恢复4小时后ROS水平最高,恢复24小时后仍保持在升高水平,表明镍与H2O2在降低细胞抗氧化防御活性方面具有协同作用。