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首页> 外文期刊>Bioorganic and medicinal chemistry >Mechanism of biochemical action of substituted 4-methylbenzopyran-2-ones. Part 3: A novel mechanism for the inhibition of biological membrane lipid peroxidation by dioxygenated 4-methylcoumarins mediated by the formation of a stable ADP-Fe-inhibitor
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Mechanism of biochemical action of substituted 4-methylbenzopyran-2-ones. Part 3: A novel mechanism for the inhibition of biological membrane lipid peroxidation by dioxygenated 4-methylcoumarins mediated by the formation of a stable ADP-Fe-inhibitor

机译:取代的4-甲基苯并吡喃-2-酮的生化作用机理。第3部分:新型的机制,通过稳定的ADP-Fe抑制剂的形成介导的双氧合4-甲基香豆素抑制生物膜脂质过氧化。

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摘要

7,8-Dihydroxy-4-methylcoumarin (DHMC) and 7,8-diacetoxy-4-methylcoumarin (DAMC) have been reported to effectively inhibit in-vivo lipid peroxidation in rat tissues induced by CCl4 and paraquat. DHMC was found to readily impart green colour to the lipid peroxidation incubation mixture containing ADP and Fe3+, whereas DAMC formed green complex only upon incubation with liver microsomes, confirming our earlier observation that liver microsomal deacetylase hydrolyses DAMC to DHMC. Sensitive pH metric technique revealed the formation of ADP-Fe-DHMC ternary complex with highest stability, while Fe-DHMC and ADP-DHMC had negligible stabilities concluding that ADP-perferryl ion formation is prevented by DHMC resulting in the production of stable ternary mixed ligand complex (ADP-Fe-DHMC), thereby inhibiting the formation of O2-, and eventually other reactive oxygen species (ROS) responsible for membrane lipid peroxidation.
机译:据报道,7,8-二羟基-4-甲基香豆素(DHMC)和7,8-二乙酰氧基-4-甲基香豆素(DAMC)有效抑制CCl4和百草枯诱导的大鼠组织体内脂质过氧化。发现DHMC容易使包含ADP和Fe3 +的脂质过氧化孵育混合物具有绿色,而DAMC仅在与肝微粒体孵育后才形成绿色复合物,这证实了我们先前观察到的肝脏微粒体脱乙酰酶将DAMC水解为DHMC。敏感的pH测量技术表明,形成的ADP-Fe-DHMC三元络合物具有最高的稳定性,而Fe-DHMC和ADP-DHMC的稳定性可忽略不计,这表明DHMC可以防止ADP-perferryl离子的形成,从而产生稳定的三元混合配体复合物(ADP-Fe-DHMC),从而抑制O2-的形成,并最终抑制其他负责膜脂质过氧化的活性氧(ROS)。

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