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Caffeic acid phenethyl ester and its related compounds limit the functional alterations of the isolated mouse brain and liver mitochondria submitted to in vitro anoxia-reoxygenation : relationship to their antioxidant activities

机译:咖啡酸苯乙酯及其相关化合物可限制离体小鼠脑和肝脏线粒体的功能改变,使其经受体外缺氧-再氧化作用:与其抗氧化活性的关系

摘要

It is an important therapeutic strategy to protect mitochondria from oxidative stress, especially during ischemia-reperfusion. In the present study, an attempt has been made to evaluate the protective effects of caffeic acid phenethyl ester (CAPE) and its related phenolic compounds on mouse brain and liver mitochondria injury induced by in vitro anoxia-reoxygenation. Added before anoxia or reoxygenation, CAPE markedly protected coupled respiration with the decrease in state 4 and the increases in state 3, respiratory control ratio (RCR) and ADP/O ratio in a concentration-dependent manner. CAPE effectively protected mitochondria by inhibiting the mitochondrial membranes fluidity decrease, the lipoperoxidation and the protein carbonylation increase, which indicated its protective action against the mitochondrial oxidative damage. Meanwhile, CAPE blocked the enhanced release of cardiolipin (CL) and cytochrome c (Cyt c). The related phenolic compounds like caffeic acid (CA), ferulic acid (FA) and ethyl ferulate (EF) also had different-degree protective effects. CAPE and CA were more potent than FA and EF. Their structural differences played the key role in their activity levels. These results suggest that CAPE and its related phenolic compounds protect mitochondria mainly correlated to their antioxidative activities and may be of interest for the prevention and therapy of ischemia-reperfusion injuries.
机译:保护线粒体免受氧化应激是一种重要的治疗策略,尤其是在缺血再灌注过程中。在本研究中,已尝试评估咖啡酸苯乙酯(CAPE)及其相关酚类化合物对体外缺氧-复氧引起的小鼠脑和肝线粒体损伤的保护作用。在缺氧或复氧之前添加CAPE,以浓度依赖性方式显着保护耦合呼吸,使状态4减少和状态3增加,呼吸控制比(RCR)和ADP / O比增加。 CAPE通过抑制线粒体膜的流动性降低,脂过氧化和蛋白羰基化的增加来有效地保护线粒体,表明其对线粒体氧化损伤的保护作用。同时,CAPE阻断了心磷脂(CL)和细胞色素c(Cyt c)的增强释放。相关的酚类化合物如咖啡酸(CA),阿魏酸(FA)和阿魏酸乙酯(EF)也具有不同程度的保护作用。 CAPE和CA比FA和EF更有效。他们的结构差异在他们的活动水平上起着关键作用。这些结果表明CAPE及其相关的酚类化合物保护线粒体主要与其抗氧化活性有关,并且可能对缺血再灌注损伤的预防和治疗具有重要意义。

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