首页> 外文期刊>Chemico-biological interactions >Towards the mechanism and comparative effect of diphenyl diselenide, diphenyl ditelluride and ebselen under various pathophysiological conditions in rat's kidney preparation.
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Towards the mechanism and comparative effect of diphenyl diselenide, diphenyl ditelluride and ebselen under various pathophysiological conditions in rat's kidney preparation.

机译:探讨二苯基二硒化物,二苯基二碲化物和依布硒啉在大鼠肾脏制备中在各种病理生理条件下的作用和比较作用。

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As an extension of our previous work we not only evaluated the relationship between acidosis and lipid peroxidation in rat's kidney homogenate, but also determined for the first time the potential anti-oxidant activity of diphenyl diselenide, diphenyl ditelluride and ebselen at a range of pH values (7.4-5.4). Because of the pH dependency of iron redox cycling, pH and iron need to be well controlled and for the reason we tested a number of pH values (from 7.4 to 5.4) to get a closer idea about the role of iron under various pathological conditions. Acidosis increased rate of lipid peroxidation in the absence Fe (II) in kidney homogenates especially at pH 5.4. This higher extent of lipid peroxidation can be explained by; the mobilized iron which may come from reserves where it is weakly bound. Addition of iron (Fe) chelator desferoxamine (DFO) to reaction medium completely inhibited the peroxidation processes at all studied pH values including acidic values (5.8-5.4). In the presence of Fe (II) acidosis also enhanced detrimental effect of Fe (II) especially at pH (6.4-5.4). Diphenyl diselenide significantly protected lipid peroxidation at all studied pH values, while ebselen offered only a small statistically non-significant protection. The highest anti-oxidant potency was observed for diphenyl ditelluride. These differences in potencies were explained by the mode of action of these compounds using their catalytic anti-oxidant cycles. However, changing the pH of the reaction medium did not alter the anti-oxidant activity of the tested compounds. This study provides evidence for acidosis catalyzed oxidative stress in kidney homogenate and for the first time anti-oxidant potential of diphenyl diselenide and diphenyl ditelluride not only at physiological pH but also at a range of acidic values.
机译:作为我们先前工作的扩展,我们不仅评估了大鼠肾脏匀浆中酸中毒与脂质过氧化之间的关系,而且首次确定了在一定pH值范围内二苯基二硒化物,二苯基二碲化物和依布硒啉的潜在抗氧化活性。 (7.4-5.4)。由于铁氧化还原循环的pH依赖性,因此需要很好地控制pH和铁,并且出于这个原因,我们测试了许多pH值(从7.4到5.4),以更深入地了解铁在各种病理条件下的作用。在肾脏组织匀浆中,尤其是在pH 5.4时,酸中毒在缺乏铁(II)的情况下增加了脂质过氧化的速率。脂质过氧化的较高程度可以用以下解释:动员的铁可能来自约束力较弱的储备。在所有研究的pH值(包括酸性值)(5.8-5.4)下,向反应介质中添加铁(Fe)螯合剂去铁胺(DFO)完全抑制了过氧化过程。在Fe(II)存在下,酸中毒也增强了Fe(II)的有害作用,尤其是在pH(6.4-5.4)时。在所有研究的pH值下,二苯二硒化物可显着保护脂质过氧化,而依布硒啉仅提供很小的统计学上无意义的保护作用。观察到二苯基二碲化物的最高抗氧化能力。这些效力的差异是通过这些化合物利用其催化抗氧化剂循环的作用方式来解释的。然而,改变反应介质的pH不会改变被测化合物的抗氧化活性。这项研究为酸中毒催化肾脏匀浆中的氧化应激以及二苯基二硒化物和二苯基二碲化物的抗氧化潜力首次提供了证据,不仅在生理pH值下,而且还在一定的酸性值下。

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