首页> 外文期刊>Biological trace element research >Computer simulation of Zn(II) speciation and effect of Gd(III) on Zn(II) speciation in human blood plasma.
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Computer simulation of Zn(II) speciation and effect of Gd(III) on Zn(II) speciation in human blood plasma.

机译:Zn(II)形态的计算机模拟以及Gd(III)对人血浆中Zn(II)形态的影响。

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摘要

The speciation and distribution of Zn(II) and the effect of Gd(III) on Zn(II) speciation in human blood plasma were studied by computer simulation. The results show that, in normal blood plasma, the most predominant species of Zn(II) are [Zn(HSA)] (58.2%), [Zn(IgG)](20.1%), [Zn(Tf)] (10.4%), ternary complexes of [Zn(Cit)(Cys)] (6.6%) and of [Zn(Cys)(His)H] (1.6%), and the binary complex of [Zn(Cys)2H] (1.2%). When zinc is deficient, the distribution of Zn(II) species is similar to that in normal blood plasma. Then, the distribution changes with increasing zinc(II) total concentration. Overloading Zn(II) is initially mainly bound to human serum albumin (HSA). As the available amount of HSA is exceeded, phosphate metal and carbonate metal species are established. Gd(III) entering human blood plasma predominantly competes for phosphate and carbonate to form precipitate species. However, Zn(II) complexes with phosphate and carbonate are negligible in normal blood plasma, so Gd(III) only have a little effect on zinc(II) species in human blood plasma at a concentration above 1.0 x 10(-4) M.
机译:通过计算机模拟研究了Zn(II)的形态和分布以及Gd(III)对人血浆中Zn(II)形态的影响。结果表明,在正常血浆中,Zn(II)最主要的种类是[Zn(HSA)](58.2%),[Zn(IgG)](20.1%),[Zn(Tf)](10.4 %),[Zn(Cys)(Cys)](6.6%)和[Zn(Cys)(His)H](1.6%)的三元络合物和[Zn(Cys)2H]的二元络合物(1.2 %)。当锌缺乏时,Zn(II)的分布与正常血浆中的分布相似。然后,分布随锌(II)总浓度的增加而变化。 Zn(II)超载最初主要与人血清白蛋白(HSA)结合。随着超过HSA的可用量,建立了磷酸盐金属和碳酸盐金属种类。进入人体血浆的Gd(III)主要竞争磷酸盐和碳酸盐形成沉淀物质。但是,在正常血浆中,Zn(II)与磷酸盐和碳酸盐的配合物可忽略不计,因此,Gd(III)对人血浆中浓度高于1.0 x 10(-4)M的锌(II)种类的影响很小。

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