首页> 外文期刊>Inorganica Chimica Acta >A mechanistic study of ferrioxamine B reduction by the biological reducing agent ascorbate in the presence of an iron(II) chelator
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A mechanistic study of ferrioxamine B reduction by the biological reducing agent ascorbate in the presence of an iron(II) chelator

机译:在铁(II)螯合剂存在下通过生物还原剂抗坏血酸还原铁氧嘧啶B的机理研究

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摘要

The iron overload drug desferal (desferrioxamine B) forms the stable iron complex ferrioxamine B. The reduction potential of ferrioxamine B (E° =-482 mV versus NHE pH 7) prohibits its reduction by biological reducing agents such as ascorbate, but it was found that the iron(ii) chelator 2,2'-bipyridine (bipy) facilitates this reduction. Evidence is given to support the formation of a ternary complex between iron, bipy, and desferrioxamine B as the key step in facilitating the reduction. The equilibrium constant for the formation of the ternary complex was found to be 8.9×10~7 and ternary complex formation is explained in terms of a three step mechanism. The mechanism for the reduction of ferrioxamine B is discussed in terms of rapidly established pre-equilibria which include ternary complex formation, ascorbic acid deprotonation, and encounter complex formation between ascorbate and the ternary complex. These equilibria are followed by rate limiting reduction of the ternary complex. Bipy was found to be a similar facilitator to sulfonated bathophenanthroline for the reduction of ferrioxamine B by ascorbate.
机译:铁过载药物去铁剂(去铁草胺B)形成稳定的铁络合物铁草胺B。铁草胺B的还原电位(E°= -482 mV对NHE pH 7)阻止了其被生物还原剂(如抗坏血酸盐)还原。铁(ii)螯合剂2,2'-联吡啶(bipy)有助于还原。有证据表明,铁,联吡啶和去铁胺B之间形成三元络合物是促进还原的关键步骤。发现形成三元络合物的平衡常数为8.9×10〜7,并通过三步机理解释了三元络合物的形成。根据快速建立的预平衡,讨论了三价铁氧还蛋白B还原的机理,包括三元复合物的形成,抗坏血酸的去质子化以及抗坏血酸盐和三元复合物之间的复合物的形成。在这些平衡之后,限制三元复合物的速率。发现Bipy与磺化红菲咯啉具有相似的促进作用,可通过抗坏血酸还原铁氧胺B。

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