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首页> 外文期刊>Neurochemical research >Propofol Prevents Oxidative Stress by Decreasing the Ischemic Accumulation of Succinate in Focal Cerebral Ischemia-Reperfusion Injury
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Propofol Prevents Oxidative Stress by Decreasing the Ischemic Accumulation of Succinate in Focal Cerebral Ischemia-Reperfusion Injury

机译:通过降低局灶性脑缺血再灌注损伤中的琥珀酸酯的缺血性积累来防止氧化应激

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Oxidative stress caused by mitochondrial dysfunction during reperfusion is a key pathogenic mechanism in cerebral ischemiare-perfusion (IR) injury. Propofol (2,6-diisopropylphenol) has been proven to attenuate mitochondrial dysfunction and reperfusion injury. The current study reveals that propofol decreases oxidative stress injury by preventing succinate accumulation in focal cerebral IR injury. We evaluated whether propofol could attenuate ischemic accumulation of succinate in transient middle cerebral artery occlusion in vivo. By isolating mitochondria from cortical tissue, we also examined the in vitro effects of propofol on succinate dehydrogenase (SDH) activity and various mitochondrial bioenergetic parameters related to oxidative stress injury, such as the production of reactive oxidative species, membrane potential, Ca2+-induced mitochondrial swelling, and morphology via electron microscopy. Propofol significantly decreased the ischemic accumulation of succinate by inhibiting SDH activity and inhibited the oxidation of succinate in mitochondria. Propofol can decrease membrane potential in normal mitochondria but not in ischemic mitochondria. Propofol prevents Ca2+-induced mitochondrial swelling and ultrastructural changes to mitochondria. The protective effect of propofol appears to act, at least in part, by limiting oxidative stress injury by preventing the ischemic accumulation of succinate.
机译:再灌注过程中由线粒体功能障碍引起的氧化应激是脑缺血 - 灌注(IR)损伤的关键致病机制。已证明异丙酚(2,6-二异丙基苯酚)以减弱线粒体功能障碍和再灌注损伤。目前的研究表明,通过预防屈曲脑红外损伤的琥珀酸盐积累,Placofol降低氧化应激损伤。我们评估了异丙酚是否可以在体内衰减琥珀酸琥珀酸的缺血累积。通过从皮质组织中分离线粒体,我们还研究了异丙酚对琥珀酸脱氢酶(SDH)活性的体外影响以及与氧化胁迫损伤相关的各种线粒体生物能量参数,例如反应性氧化物种,膜电位,Ca2 +诱导的线粒体产生通过电子显微镜膨胀和形态。异丙酚通过抑制SDH活性而显着降低了琥珀酸酯的缺血性积累,并抑制线粒体中琥珀酸盐的氧化。异丙酚可以降低正常线粒体的膜电位,但不在缺血性线粒体中降低。异丙酚可防止Ca2 +诱导的线粒体肿胀和超微结构变化对线粒体。异丙酚的保护作用至少部分地通过限制琥珀酸酯的缺血性积累来限制氧化应激损伤。

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