Department of Physiology, University of Siena, 53100 Siena, Italy.
Neurochem Res. 2010 Jan;35(1):42-9. doi: 10.1007/s11064-009-0028-3. Epub 2009 Jul 7.
Nerve cells are very susceptible to hypoxia responsive for mitochondrial dysfunctions involved in the subsequent oxidative stress, apoptosis and necrosis. In this paper, we examined the effect of 12 h incubation of U-373 MG astrocytes in hypoxic environment (73% N(2): 2% O(2): 5% CO(2), v:v) by evaluating cell proliferation, modifications of NO and ATP production, intracellular Ca(2+) concentration Ca(2+), membrane potential, desferoxamine-chelatable free iron, esterified F2-isoprostanes levels and the production of phosphorylated ERK. The same parameters were evaluated also after a following re-oxygenation period of 24 h. Immediately after hypoxia the NO concentration increased significantly and returned to values similar to those of controls after the re-oxygenation period. At the same time, ATP levels remained similar to controls and the cell proliferation significantly decreased. This involved a significant increase of Ca(2+) immediately after hypoxia and the value remained significantly elevated after the following re-oxygenation period. Moreover, after hypoxia, astrocytes were slightly although not significantly depolarized. Indeed iron and F2-isoprostanes levels increased significantly after hypoxia. Finally ERK proteins increased slowly and not significantly after hypoxia and the same trend was observed after the re-oxygenation period. On the whole, our results indicate that 2% O(2) hypoxia induces a moderate oxidative stress, well tolerated by U-373 MG cells, remaining the ATP production, mitochondrial membrane potential and activated ERK proteins, similar to the values of controls.
神经细胞对缺氧非常敏感,缺氧会导致线粒体功能障碍,进而引发氧化应激、细胞凋亡和坏死。在本文中,我们通过评估 U-373 MG 星形胶质细胞在缺氧环境(73% N2:2% O2:5% CO2,体积比)中 12 小时的孵育对细胞增殖、NO 和 ATP 产生的变化、细胞内 Ca2+浓度([Ca2+]i)、膜电位、去铁胺螯合的游离铁、酯化 F2-异前列腺素水平以及磷酸化 ERK 的产生的影响来研究这一现象。在随后的 24 小时复氧期后,我们还评估了相同的参数。缺氧后,NO 浓度显著增加,复氧后恢复到与对照组相似的水平。与此同时,ATP 水平与对照组相似,细胞增殖显著下降。这涉及到缺氧后 [Ca2+]i 的显著增加,并且在随后的复氧期后该值仍然显著升高。此外,缺氧后星形胶质细胞虽然没有明显去极化,但有轻微的去极化。事实上,铁和 F2-异前列腺素水平在缺氧后显著增加。最后,ERK 蛋白在缺氧后缓慢且无显著增加,在复氧后也观察到相同的趋势。总的来说,我们的结果表明,2% O2 缺氧会引起 U-373 MG 细胞中度的氧化应激,但这些细胞能够很好地耐受,保持与对照组相似的 ATP 产生、线粒体膜电位和激活的 ERK 蛋白水平。