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内球层水分子的钆(III)基 MRI 对比剂的超精细耦合常数。

Hyperfine coupling constants on inner-sphere water molecules of Gd(III)-based MRI contrast agents.

机构信息

Departamento de Química Fundamental, Universidade da Coruña, Campus da Zapateira-Rúa da Fraga, Spain.

出版信息

Chemphyschem. 2012 Nov 12;13(16):3640-50. doi: 10.1002/cphc.201200417. Epub 2012 Aug 27.

DOI:10.1002/cphc.201200417
PMID:22927182
Abstract

Herein we present a theoretical investigation of the hyperfine coupling constants (HFCCs) on the inner-sphere water molecules of Gd(H(2)O)(8) and different Gd(III)-based magnetic resonance imaging contrast agents such as Gd(DOTA)(H(2)O), Gd(DTPA)(H(2)O), [Gd(DTPA-BMA)(H(2)O)] and [Gd(HP-DO3A)(H(2)O)]. DFT calculations performed on the Gd(H(2)O)(8) model system show that both hybrid-GGA functionals (BH&HLYP, B3PW91 and PBE1PBE) and the hybrid meta-GGA functional TPSSh provide (17)O HFCCs in close agreement with the experimental data. The use of all-electron relativistic approaches based on the DKH2 approximation and the use of relativistic effective core potentials (RECP) provide results of essentially the same quality. The accurate calculation of HFCCs on the Gd(DOTA)(H(2)O), Gd(DTPA)(H(2)O), [Gd(DTPA-BMA)(H(2)O)] and [Gd(HP-DO3A)(H(2)O)] complexes requires an adequate description of solvent effects. This was achieved by using a mixed cluster/continuum approach that includes explicitly two second-sphere water molecules. The calculated isotropic (17)O HFCCs (A(iso)) fall within the range 0.40-0.56 MHz, and show deviations from the corresponding experimental values typically lower than 0.05 MHz. The A(iso) values are significantly affected by the distance between the oxygen atom of the coordinated water molecule and the Gd(III) ion, as well as by the orientation of the water molecule plane with respect to the Gd-O vector. (1)H HFCCs of coordinated water molecules and (17)O HFCCs of second-sphere water molecules take values close to zero.

摘要

本文对[Gd(H2O)8]3+内界水分子的超精细耦合常数(HFCCs)以及不同基于 Gd(III)的磁共振成像对比剂,如[Gd(DOTA)(H2O)]-、[Gd(DTPA)(H2O)]2-、[Gd(DTPA-BMA)(H2O)]和[Gd(HP-DO3A)(H2O)]进行了理论研究。在[Gd(H2O)8]3+模型体系上进行的 DFT 计算表明,混合广义梯度近似(BH&HLYP、B3PW91 和 PBE1PBE)和混合meta-GGA 函数 TPSSh 都能提供与实验数据非常吻合的(17)O HFCCs。基于 DKH2 近似的全电子相对论方法和相对论有效核势(RECP)的使用提供了本质上相同质量的结果。要准确计算[Gd(DOTA)(H2O)]-、[Gd(DTPA)(H2O)]2-、[Gd(DTPA-BMA)(H2O)]和[Gd(HP-DO3A)(H2O)]配合物的 HFCCs,需要对溶剂效应进行适当的描述。这是通过使用混合的团簇/连续体方法来实现的,该方法包括两个第二配位层的水分子。计算得到的各向同性(17)O HFCCs(A(iso))在 0.40-0.56 MHz 范围内,与相应的实验值的偏差通常小于 0.05 MHz。A(iso)值受配位水分子中氧原子与 Gd(III)离子之间的距离以及水分子平面相对于 Gd-O 矢量的取向的影响较大。配位水分子的(1)H HFCCs 和第二配位层水分子的(17)O HFCCs 值接近零。

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