Arandarcikaite Odeta, Jokubka Ramunas, Borutaite Vilmante
Institute of Neurosciences, Lithuanian University of Health Sciences, Eiveniu Str. 4, LT-50009 Kaunas, Lithuania.
Institute of Neurosciences, Lithuanian University of Health Sciences, Eiveniu Str. 4, LT-50009 Kaunas, Lithuania.
Neurosci Lett. 2015 Jan 23;586:65-70. doi: 10.1016/j.neulet.2014.09.012. Epub 2014 Sep 16.
In this study we sought to determine whether NO donor NOC-18 can protect brain mitochondria against ischemia-induced dysfunction, particularly opening of mitochondrial permeability transition pore (MPTP), and cell death. We found that inhibition of respiration with NAD-dependent substrates, but not with succinate, was observed after 30 min ischemia indicating that complex I of the mitochondrial respiratory chain is the primary site affected by ischemia. There was no loss of mitochondrial cytochrome c during 30-120 min of brain ischemia. Prolonged, 90 min ischemia substantially decreased calcium retention capacity of brain mitochondria suggesting sensitization of mitochondria to Ca(2+)-induced MPTP opening, and this was prevented by NOC-18 infusion prior to ischemia. NOC-18 did not prevent ischemia-induced inhibition of mitochondrial respiration, however, it partially protected against ischemia-induced necrosis. Protective effects of NOC-18 were abolished in the presence of selective inhibitors of protein kinase G (PKG) and protein kinase C (PKC). These results indicate that pre-treatment with NOC-18 protected brain mitochondria against ischemia-induced MPTP opening by decreasing mitochondrial sensitivity to calcium and partly protected brain cells against necrotic death in PKG- and PKC-depending manner.
在本研究中,我们试图确定一氧化氮供体NOC-18是否能保护脑线粒体免受缺血诱导的功能障碍,特别是线粒体通透性转换孔(MPTP)的开放以及细胞死亡。我们发现,缺血30分钟后观察到用NAD依赖底物抑制呼吸,但用琥珀酸则未观察到,这表明线粒体呼吸链复合体I是受缺血影响的主要部位。在脑缺血30 - 120分钟期间,线粒体细胞色素c没有丢失。延长至90分钟的缺血显著降低了脑线粒体的钙保留能力,提示线粒体对Ca(2+)诱导的MPTP开放敏感,而这在缺血前输注NOC-18可得到预防。NOC-18并不能预防缺血诱导的线粒体呼吸抑制,然而,它部分保护了免受缺血诱导的坏死。在存在蛋白激酶G(PKG)和蛋白激酶C(PKC)的选择性抑制剂时,NOC-18的保护作用被消除。这些结果表明,用NOC-18预处理通过降低线粒体对钙的敏感性保护脑线粒体免受缺血诱导的MPTP开放,并以依赖PKG和PKC的方式部分保护脑细胞免受坏死性死亡。