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H5EPTPACH2OH: Synthesis, Relaxometric Characterization and 1H NMR Spectroscopic Studies on the Solution Dynamics of Its LnIII Complexes

机译:H5EPTPACH2OH:LnIII配合物溶液动力学的合成,弛豫特征和1H NMR光谱研究

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摘要

The synthesis and characterization of a new metal chelator, 4-(S)-hydroxymethyl-3,6,10-tri(carboxymethyl)-3,6,10-triazadodecanedioic acid (H5EPTPACH2OH), is reported. Protonation constants for the ligand H5EPTPACH2OH and for the previously reported H5EPTPAC16 have been determined by potentiometry, which reveals that both ligands display slightly higher protonation constants relative to that of the ligand DTPA5-. The stability constant for the [Gd(EPTPACH2OH)(H2O)]2- complex has also been determined by potentiometry. The obtained value (log KGdL = 16.7) is two orders of magnitude lower than that for the [Gd(EPTPA)(H2O)]2- complex, which indicates the destabilizing effect of the pendant hydroxymethyl group at the EPTPA backbone. The microscopic protonation scheme has been deduced from the pH dependence of the 1H NMR spectra of both H5EPTPACH2OH and H5EPTPAC16 ligands. The first two protonations occur exclusively at the backbone nitrogen atoms - the first protonation occurs preferentially at the more basic central nitrogen atom. The second proton distributes preferentially between the two terminal nitrogen atoms with the favoring of the trimethylene nitrogen atom over the ethylene nitrogen atom. The LnIII complexes of the ligand H5EPTPACH2OH have been prepared and their solution dynamics studied by 1H NMR spectroscopy. Two sets of resonances of very different intensities from two isomeric complexes have been observed. Relaxometric investigations (17O NMR and 1H NMRD) demonstrate that the [Gd(EPTPACH2OH)(H2O)]2- complex displays an accelerated water-exchange rate (kex = 87.6 × 106 s-1) that is close to the theoretically derived optimal value. However, the kinetic stability of this complex in phosphate-buffered solutions towards Zn2+ transmetallation is quite low, but higher than that of the corresponding methyl derivative.(© Wiley-VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2007)
机译:报道了新型金属螯合剂4-(S)-羟甲基-3,6,10-三(羧甲基)-3,6,10-三氮杂十二烷二酸(H5EPTPACH2OH)的合成和表征。配体H5EPTPACH2OH和先前报道的H5EPTPAC16的质子化常数已通过电位计确定,这表明相对于配体DTPA5-而言,两个配体均显示出稍高的质子化常数。 [Gd(EPTPACH2OH)(H2O)] 2-配合物的稳定性常数也已通过电位法确定。获得的值(log KGdL = 16.7)比[Gd(EPTPA)(H2O)] 2-络合物的值低两个数量级,这表明侧基羟甲基在EPTPA主链上的去稳定作用。微观质子化方案已从H5EPTPACH2OH和H5EPTPAC16配体的1H NMR光谱的pH依赖性推导。前两个质子只发生在骨架氮原子上-第一个质子优先出现在更碱性的中心氮原子上。第二质子优先分布在两个末端氮原子之间,其中亚三甲基氮原子优于亚乙基氮原子。制备了配体H5EPTPACH2OH的LnIII配合物,并通过1H NMR光谱研究了其溶液动力学。已经观察到与两种异构体复合物具有非常不同的强度的两组共振。弛豫测量研究(17O NMR和1H NMRD)表明[Gd(EPTPACH2OH)(H2O)] 2-络合物显示出加速的水交换速率(kex = 87.6×106 s-1),接近理论推导的最佳值。但是,这种复合物在磷酸盐缓冲溶液中对Zn2 +的金属转移反应的动力学稳定性非常低,但高于相应的甲基衍生物。(©Wiley-VCH Verlag GmbH&Co.KGaA,69451 Weinheim,Germany,2007)

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