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对具有快速水交换速率的DOTA次膦酸酯类似物的双齿镧系元素(III)配合物的弛豫测量和溶液核磁共振结构研究。

Relaxometric and solution NMR structural studies on ditopic lanthanide(III) complexes of a phosphinate analogue of DOTA with a fast rate of water exchange.

作者信息

Rudovský Jakub, Botta Mauro, Hermann Petr, Koridze Avtandil, Aime Silvio

机构信息

Department of Inorganic Chemistry, Charles University, Hlavova 2030, 128 40, Prague 2, Czech Republic.

出版信息

Dalton Trans. 2006 May 21(19):2323-33. doi: 10.1039/b518147j. Epub 2006 Mar 29.

Abstract

A novel "ditopic" ligand containing two monophosphinate triacetate DOTA-like units linked by a thiourea bridge has been synthesized and its complexes with Ln3+ ions (Ln = Y, Eu, Gd, Dy) investigated by NMR spectroscopy and relaxometry. The presence of one water molecule in the first coordination sphere has been determined by the measurement of the dysprosium(III)-induced 17O NMR shifts. The 1H and 31P NMR spectra of the Eu(III) derivative indicate a higher abundance of the fast-exchanging twisted square antiprismatic (m) isomer than the isomeric square antiprismatic (M; m/M = 3:2) complex. The analysis of the 89Y and 13C T1 NMR relaxation times in the Gd(III)/Y(III) mixed complex have provided useful structural information. Values of ca. 6.3 and 8.2 A for the Gd...Y and Gd...C distances, respectively, have been estimated which indicate a rather compact solution structure. This result finds support in the value of the relaxivity whose increase (at 20 MHz and 298 K) on passing from the monomeric (5.7 s(-1) mM(-1)) to the ditopic complex (8.2 s(-1) mM(-1)) can be attributed to the doubling of the inner-sphere term following the doubling of the molecular size. The structural and dynamic relaxivity-controlling parameters were assessed by a simultaneous fitting of the variable temperature 17O NMR and 1H NMRD relaxometric data. The mean water residence lifetime (298tauM) has been found to be 53 ns, one of the shortest values reported for ditopic complexes. The reorientational correlation time is two times longer (298tauR = 183 ps) than the corresponding value of the parent monomeric Gd(III) complex, thus supporting the view of a limited degree of internal rotation. The possible influence of magnetic Gd-Gd coupling has been excluded by a comparison of the 1H NMRD profiles of the homodinuclear Gd(III)/Gd(III) and the heterodinuclear Gd(III)/Y(III) complexes.

摘要

合成了一种新型的“双位点”配体,它含有两个通过硫脲桥连接的单膦酸三乙酸类DOTA单元,并通过核磁共振光谱和弛豫测量研究了其与Ln3+离子(Ln = Y、Eu、Gd、Dy)形成的配合物。通过测量镝(III)诱导的17O核磁共振位移,确定了第一配位层中存在一个水分子。Eu(III)衍生物的1H和31P核磁共振光谱表明,快速交换的扭曲四方反棱柱(m)异构体的丰度高于异构体四方反棱柱(M;m/M = 3:2)配合物。对Gd(III)/Y(III)混合配合物中89Y和13C T1核磁共振弛豫时间的分析提供了有用的结构信息。已估计出Gd...Y和Gd...C距离分别约为6.3 Å和8.2 Å,这表明溶液结构相当紧凑。从单体(5.7 s(-1) mM(-1))到双位点配合物(8.2 s(-1) mM(-1))时弛豫率的增加(在20 MHz和298 K下)可归因于分子大小加倍后内球项的加倍,这一结果得到了弛豫率值的支持。通过同时拟合变温17O核磁共振和1H NMRD弛豫测量数据,评估了结构和动态弛豫率控制参数。已发现平均水停留寿命(298τM)为53 ns,是双位点配合物报道的最短值之一。重取向相关时间比母体单体Gd(III)配合物的相应值长两倍(298τR = 183 ps),因此支持了内旋转程度有限的观点。通过比较同双核Gd(III)/Gd(III)和异双核Gd(III)/Y(III)配合物的1H NMRD谱图,排除了磁性Gd-Gd耦合的可能影响。

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