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Iron Complexes of Flavonoids-Antioxidant Capacity and Beyond

机译:黄酮类化合物 - 抗氧化容量及超越铁复合物

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摘要

Flavonoids are common plant natural products able to suppress ROS-related damage and alleviate oxidative stress. One of key mechanisms, involved in this phenomenon is chelation of transition metal ions. From a physiological perspective, iron is the most significant transition metal, because of its abundance in living organisms and ubiquitous involvement in redox processes. The chemical, pharmaceutical, and biological properties of flavonoids can be significantly affected by their interaction with transition metal ions, mainly iron. In this review, we explain the interaction of various flavonoid structures with Fe(II) and Fe(III) ions and critically discuss the influence of chelated ions on the flavonoid biochemical properties. In addition, specific biological effects of their iron metallocomplexes, such as the inhibition of iron-containing enzymes, have been included in this review.
机译:黄酮类化合物是常见的植物天然产物,能够抑制与ROS相关的损伤和缓解氧化应激。参与这种现象的关键机制之一是过渡金属离子的螯合。从生理角度来看,铁是最重要的过渡金属,因为它在生物体中丰富,普遍存在的氧化还原过程中。黄酮类化的化学,药物和生物学性能可显着影响其与过渡金属离子的相互作用,主要是铁。在该综述中,我们解释了各种类黄酮结构与Fe(II)和Fe(III)离子的相互作用,并重要地讨论螯合离子对类黄酮生化特性的影响。此外,诸如抑制含铁酶的耐铁组合的特异性生物学效应已被列入本综述。

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