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Antioxidant Effect of Silymarin During Non-Enzymatic Peroxidation of Rat Kidney Microsomes and Mitochondria

机译:水飞蓟素对大鼠肾脏微粒体和线粒体非酶促过氧化的抗氧化作用

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Cellular metabolic changes during kidney disease may induce higher production of oxygen radicals that play a significant role in the progression of renal damage and in the onset of important comorbidities. In this study, the effect of Silymarin (SM) on chemiluminescence of mitochondria and microsomes isolated from kidney rat was analyzed and reported. After incubation of mitochondria and microsomes in an Ascorbate (0.4 mM)-Fe++ (2.15 μM) system (180 min at 37°C), non-enzymatic peroxidation was observed and the total cpm/mg of protein originated from light emission (chemiluminescence) was lower in kidney mitochondria and microsomes obtained from SM group than the control group (without SM). Moreover, it was observed that the SM was reduced based on concentration (6.25, 12.5, 25 and 50 μg) of chemiluminescence, and the same was measured as total cpm. The analyses of chemiluminescence indicate that SM may act as antioxidant protecting rat kidney mitochondria and microsomes from peroxidative damage.
机译:肾脏疾病期间的细胞代谢变化可能会诱导更高的氧自由基产生,这些氧自由基在肾脏损害的进展以及重要合并症的发作中起着重要作用。在这项研究中,分析并报道了水飞蓟素(SM)对线粒体化学发光的作用以及从肾脏大鼠中分离出的微粒体的作用。在抗坏血酸(0.4 mM)-Fe ++(2.15μM)系统中孵育线粒体和微粒体后(在37°C下180分钟),观察到非酶促过氧化作用,蛋白质的总cpm / mg来源于发光(化学发光)从SM组获得的肾线粒体和微粒体低于对照组(无SM)。此外,观察到SM基于化学发光的浓度(6.25、12.5、25和50μg)而降低,并且测量为总cpm。化学发光分析表明,SM可以作为抗氧化剂,保护大鼠肾线粒体和微粒体免受过氧化损伤。

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