Department of Biology, Hong Kong Baptist University, Kowloon Tong, Kowloon, Hong Kong, P.R.C.
Toxicol Mech Methods. 2006;16(1):13-9. doi: 10.1080/15376520500194692.
Changes in cellular energy and redox states in the C6 glioma cells exposed to increasing concentrations of either Zn or Se were studied to examine whether different elements cause different patterns of changes in cellular metabolism. Following a 3-h exposure, both Zn and Se(+4) caused dose-dependent decreases in cell viability and total adenosine nucleotides (TAN = ATP + ADP + AMP). In addition, Zn caused a dose-dependent increase in cellular ATP/TAN and a decrease in the ADP/TAN and AMP/TAN. These changes resulted in a significant increase in energy charge potential (ECP = [ATP + 0.5ADP]/TAN). Se(+4), on the other hand, caused a dose-dependent decrease in ATP/TAN but an increase in both ADP/TAN and AMP/TAN, resulting in a dose-dependent decrease in ECP. Both Zn and Se(+4) caused a dose-dependent decrease in GSH/GSSG and an increase in GSH + GSSG when compared to TAN. In contrast to Zn and Se(+4), the nontoxic Se(+6) caused no significant changes in cellular energy states but reduced the GSH/GSSG ratio from 3.14 +/- 0.49 to 2.05 +/- 0.29, which could be explained by the effect of Se on enzymes responsible for GSH metabolism. As the cellular ATP level has been considered an important element that mediates the mode of cell death, it was suggested that a significant increase in ATP/TAN upon exposure to Zn would indicate that cell death occurred via apoptosis, while Se(+4) caused a different pattern of cell death. This was confirmed by the appearance of cells with fragmented nucleus in cells treated with Zn, but not Se(+4) and Se(+6). The results demonstrated that different chemicals caused different patterns of metabolic changes. The correlation between metabolic changes and the mode of cell death was discussed.
研究了暴露于不同浓度 Zn 或 Se 的 C6 神经胶质瘤细胞中细胞能量和氧化还原状态的变化,以检验不同元素是否会导致细胞代谢的不同变化模式。暴露 3 小时后,Zn 和 Se(+4)均导致细胞活力和总腺苷核苷酸(TAN=ATP+ADP+AMP)呈剂量依赖性下降。此外,Zn 导致细胞内 ATP/TAN 呈剂量依赖性增加,ADP/TAN 和 AMP/TAN 呈剂量依赖性下降。这些变化导致能量电荷势能(ECP=[ATP+0.5ADP]/TAN)显著增加。另一方面,Se(+4)导致 ATP/TAN 呈剂量依赖性下降,但 ADP/TAN 和 AMP/TAN 均增加,导致 ECP 呈剂量依赖性下降。Zn 和 Se(+4)均导致 GSH/GSSG 呈剂量依赖性下降,与 TAN 相比,GSH+GSSG 增加。与 Zn 和 Se(+4)相反,无毒的 Se(+6)对细胞能量状态没有显著影响,但将 GSH/GSSG 比值从 3.14±0.49 降低至 2.05±0.29,这可以通过 Se 对负责 GSH 代谢的酶的影响来解释。由于细胞内 ATP 水平被认为是介导细胞死亡方式的重要因素,因此建议暴露于 Zn 后 ATP/TAN 显著增加表明细胞死亡通过细胞凋亡发生,而 Se(+4)则导致不同的细胞死亡模式。这一点在用 Zn 处理的细胞中出现核碎片的细胞中得到证实,但在用 Se(+4)和 Se(+6)处理的细胞中则没有。结果表明,不同的化学物质导致了不同的代谢变化模式。讨论了代谢变化与细胞死亡方式之间的相关性。