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Treatment of acute paraquat intoxication using recommended megadose of vitamin C: A reappraisal

机译:使用推荐的大剂量维生素C治疗百草枯急性中毒:重新评估

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Megadose of vitamin C (MVC) has been proposed for an emergent treatment of acute paraquat (PQ) poisoning. However, the safety issue of this treatment protocol has not been evaluated. Here, we present the first evidence that vitamin C can promote aggravated production of hydroxyl radical (OH ?) via interacting with preexisting PQ+?/H2O2 system in a nonmetal-catalyzed manner. This enhanced oxidative stress would therefore expect to cause more deleterious effect during acute PQ intoxication. To lend support to this possibility, we set out to attest the effects of MVC on a simulated, PQ-intoxicated, Madin-Darby canine kidney (MDCK) cell model. First, PQ alone could trigger oxidative-nitrosative stress (ONS) through robust generation of reactive oxygen species and nitric oxide (NO) that could induce apoptotic killing via promoting effective release of mitochondrial cytochrome c, an apoptogenic factor. The percentage of apoptosis for MDCK cells treated with 1.0 mM PQ for 24 h was 16.3 ± 13.0%. However, when MDCK cells were treated with a combination of PQ (1.0 mM) and MVC (20 mM) for 24 h, the severity of apoptotic killing was further exacerbated as reflected by a nearly 7-fold increase in the release of mitochondrial cytochrome c and the percentage of apoptotic cell population rose sharply to 90.7 ± 5.1%. These data indicate that MVC apparently exacerbates further killing rather than cytoprotection on this simulated, PQ-intoxicated MDCK cell model and suggest that the treatment of PQ poisoning using MVC protocol should be cautious.
机译:维生素C(MVC)的大剂量已被提议用于急性百草枯(PQ)中毒的紧急治疗。但是,该治疗方案的安全性问题尚未得到评估。在这里,我们提供了第一个证据,表明维生素C可以通过与非金属催化的PQ +α/ H2O2系统相互作用而促进加重的羟基自由基(OHα)的产生。因此,这种增加的氧化应激预期将在急性PQ中毒期间引起更多的有害作用。为了支持这种可能性,我们着手证明了MVC对模拟的PQ中毒的Madin-Darby犬肾(MDCK)细胞模型的影响。首先,单独的PQ可以通过大量生成活性氧和一氧化氮(NO)来触发氧化亚硝基应激(ONS),后者可以通过促进线粒体细胞色素c(一种凋亡因子)的有效释放来诱导凋亡杀灭。用1.0 mM PQ处理24小时的MDCK细胞的凋亡百分比为16.3±13.0%。但是,当用PQ(1.0 mM)和MVC(20 mM)组合处理MDCK细胞24小时时,线粒体细胞色素c释放量增加了近7倍,这进一步加剧了凋亡杀伤的严重性。细胞凋亡的百分比急剧上升至90.7±5.1%。这些数据表明,在这种模拟的,PQ中毒的MDCK细胞模型上,MVC显然加剧了进一步的杀伤,而不是细胞保护,并且建议使用MVC方案治疗PQ中毒应谨慎。

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