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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Displacement of inner-sphere water molecules from Eu3+ analogues of Gd3+ MRI contrast agents by carbonate and phosphate anions: Dissociation constants from luminescence data in the rapid-exchange limit
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Displacement of inner-sphere water molecules from Eu3+ analogues of Gd3+ MRI contrast agents by carbonate and phosphate anions: Dissociation constants from luminescence data in the rapid-exchange limit

机译:碳酸根和磷酸根阴离子置换Gd3 + MRI造影剂的Eu3 +类似物引起的内层水分子:快速交换极限中发光数据的解离常数

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Europium(LII) F-7(0) --> D-5(0) excitation spectroscopy is used to determine if the anions carbonate and phosphate present in physiological fluids are able to displace water molecules from the first coordination sphere of Eu3+ analogues of Gd3+ MRI contrast agents. A lengthening of the Eu3+ excited state lifetime in the presence of millimolar concentrations of carbonate or phosphate indicates that water molecules are displaced by an anion. Only those metal complexes that contain negatively charged ligands and more than one water molecule in the first coordination sphere of EU3+ have their water molecules displaced by saturating concentrations of carbonate or phosphate. Conditional dissociation constants, K-d's, for Eu3+-ligand complexes with phosphate or carbonate are determined from titrations wherein the EU3+ excited state lifetimes are monitored. For phosphate, K-d's lie in the range 1.2-90 mM, whereas for carbonate, the range is 35-200 mM. The titrations also indicate that only a single anion binds to a metal chelate complex and that the single anion may, under saturating anion concentrations, displace on average more than one, but not all, first coordination sphere water molecules. Eu3+7F0 --> D-5(0) excitation spectra indicate that, in some cases, many different Eu3+-containing species are in fast exchange in the presence of added anion, presumably involving different numbers of first coordination sphere water molecules. Our results show that, under physiological conditions, phosphate and carbonate will, on average, displace less than half of a water molecule from the first coordination sphere of a typical contrast agent and suggest that the effect on proton spin relaxation is likely to be minimal. [References: 35]
机译:excitation(FII)F-7(0)-> D-5(0)激发光谱用于确定生理液中存在的碳酸根和磷酸根阴离子是否能够取代水的Eu3 +类似物的第一个配位域中的水分子Gd3 + MRI造影剂。在毫摩尔浓度的碳酸盐或磷酸盐存在下,Eu3 +激发态寿命的延长表明水分子被阴离子取代。只有那些在EU3 +的第一个配位域中包含带负电荷的配体和一个以上水分子的金属络合物,其水分子才会被碳酸盐或磷酸盐的饱和浓度置换。 Eu3 +-配体与磷酸盐或碳酸盐的配合物的条件离解常数K-d's通过滴定法确定,其中监测EU3 +激发态寿命。对于磷酸盐,K-d在1.2-90 mM的范围内,而对于碳酸盐,K-d在35-200 mM的范围内。滴定还表明,只有一个阴离子与金属螯合物络合,并且在饱和阴离子浓度下,单个阴离子平均可以置换一个以上(但不是全部)的第一配位球水分子。 Eu3 + 7F0-> D-5(0)激发光谱表明,在某些情况下,在添加阴离子的情况下,许多不同的含Eu3 +的物质正在快速交换,大概涉及不同数量的第一配位球水分子。我们的结果表明,在生理条件下,磷酸盐和碳酸盐平均会从典型造影剂的第一个配位球中置换不到一半的水分子,这表明对质子自旋弛豫的影响可能很小。 [参考:35]

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