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Fluctuating vs. Continuous Exposure to H2O2: The Effects on Mitochondrial Membrane Potential Intracellular Calcium and NF-κB in Astroglia

机译:波动与连续暴露于H2O2:对星形胶质细胞线粒体膜电位细胞内钙和NF-κB的影响

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摘要

The effects of H2O2 are widely studied in cell cultures and other in vitro systems. However, such investigations are performed with the assumption that H2O2 concentration is constant, which may not properly reflect in vivo settings, particularly in redox-turbulent microenvironments such as mitochondria. Here we introduced and tested a novel concept of fluctuating oxidative stress. We treated C6 astroglial cells and primary astrocytes with H2O2, using three regimes of exposure – continuous, as well as fluctuating at low or high rate, and evaluated mitochondrial membrane potential and other parameters of mitochondrial activity – respiration, reducing capacity, and superoxide production, as well as intracellular ATP, intracellular calcium, and NF-κB activation. When compared to continuous exposure, fluctuating H2O2 induced a pronounced hyperpolarization in mitochondria, whereas the activity of electron transport chain appears not to be significantly affected. H2O2 provoked a decrease of ATP level and an increase of intracellular calcium concentration, independently of the regime of treatment. However, fluctuating H2O2 induced a specific pattern of large-amplitude fluctuations of calcium concentration. An impact on NF-κB activation was observed for high rate fluctuations, whereas continuous and low rate fluctuating oxidative stress did not provoke significant effects. Presented results outline the (patho)physiological relevance of redox fluctuations.
机译:H2O2的作用已在细胞培养和其他体外系统中得到广泛研究。但是,此类研究是在H2O2浓度恒定的前提下进行的,这可能无法正确反映体内环境,特别是在氧化还原湍流微环境(例如线粒体)中。在这里,我们介绍并测试了波动的氧化应激的新概念。我们使用三种暴露方式-连续以及低速或高速波动,以H2O2处理C6星形胶质细胞和原代星形胶质细胞,并评估了线粒体膜电位和线粒体活性的其他参数-呼吸作用,还原能力和超氧化物的产生,以及细胞内ATP,细胞内钙和NF-κB活化。与连续暴露相比,波动的H2O2会引起线粒体明显的超极化,而电子传输链的活性似乎并未受到明显影响。 H2O2引起ATP水平降低和细胞内钙浓度升高,而与治疗方案无关。但是,H2O2的波动会引起钙浓度大幅度波动的特定模式。观察到高速率波动对NF-κB活化的影响,而连续和低速率波动的氧化应激并未引起显着影响。提出的结果概述了氧化还原波动的(病理)生理相关性。

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