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Effects of Organoselenium Compounds on Early and Late Brain Biochemical Alterations in Sepsis-Survivor Rats

机译:有机硒化合物对脓毒症幸存者大鼠早期和晚期脑生化改变的影响

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Studies have consistently reported the participation of oxidative stress, energetic metabolism impairment, and creatine kinase (CK) activity alterations in rat brain in early times in an animal model of sepsis and persist for up to 10 days. We have assessed the antioxidant effects of administration of Ebselen (Eb) e diphenyl diselenide (PhSe)2 two organoselenium compounds on brain oxidative stress, energetic metabolism, and CK activity 12, 24 h, and 10 days after sepsis by cecal ligation and perforation (CLP) in rats. Male Wistar rats underwent either sham operation or CLP and were treated with oral injection of Eb (50 mg/kg) or (PhSe)2 (50 mg/kg) or vehicle. 12, 24 h, and 10 days after CLP, the rats were sacrificed, and samples from brain (hippocampus, striatum, cerebellum, prefrontal cortex, and cortex) were obtained and assayed for thiobarbituric acid reactive species and protein carbonyls formation, mitochondrial respiratory chain, and CK activity. We observed in the results a reduction of oxidative damage to lipids and proteins in the different cerebral structures studied and times with the administration of (PhSe)2; however, Eb seems to exert the same effect. Such changes are reflected in the assessment of mitochondrial respiratory chain complexes by reversing the decreased activity of the complex caused by the model of CLP and CK activity. Our data provide the first experimental demonstration that (PhSe)2 was able to reduce the brain dysfunction associated with CLP-induced sepsis in rats, by decreasing oxidative stress parameters mitochondrial dysfunction and CK activity in early times and in late time.
机译:研究一致报道,在脓毒症动物模型中,氧化应激,高能代谢损伤和肌酸激酶(CK)活性变化在早期就参与了大鼠脑内的研究,并持续了10天。我们评估了盲肠结扎和穿孔后12、24 h和10天服用Ebselen(Eb)e二苯基二硒化物(PhSe)2两种有机硒化合物对败血症后12、24 h和10天的大脑氧化应激,能量代谢和CK活性的抗氧化作用( CLP)。对雄性Wistar大鼠进行假手术或CLP,并口服Eb(50 mg / kg)或(PhSe)2(50 mg / kg)或赋形剂口服治疗。 CLP后12、24 h和10天,处死大鼠,并从大脑(海马,纹状体,小脑,前额叶皮层和皮层)中获取样品,并检测其硫代巴比妥酸反应物种和蛋白质羰基的形成,线粒体呼吸链和CK活动。我们在结果中观察到,通过施用(PhSe)2,可以降低研究的不同大脑结构和脂质对脂质和蛋白质的氧化损伤;但是,Eb似乎发挥了相同的作用。通过逆转由CLP和CK活性模型引起的复合物活性降低,这种变化反映在线粒体呼吸链复合物评估中。我们的数据提供了第一个实验证明,(PhSe)2能够通过减少早期和晚期的氧化应激参数线粒体功能障碍和CK活性来减轻与CLP诱导的脓毒症相关的脑功能障碍。

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