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Lanthanide(III) Complexes of Novel Mixed Carboxylic-Phosphorus Acid Derivatives of Diethylenetriamine: A Step towards More Efficient MRI Contrast Agents

机译:二乙烯三胺的新型混合羧酸-磷酸衍生物的镧系元素(III)配合物:迈向更高效的MRI造影剂的一步

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摘要

Three novel phosphorus-containing analogues of H5DTPA (DTPA = diethylenetriaminepentaacetate) were synthesised (H6L1, H5L2, H5L3). These compounds have a -CH2-P(O)(OH)-R function (R = OH, Ph, CH2NBn2) attached to the central nitrogen atom of the diethylenetriamine backbone. An NMR study reveals that these ligands bind to lanthanide(III) ions in an octadentate fashion through the three nitrogen atoms, a P-O oxygen atom and four carboxylate oxygen atoms. The complexed ligand occurs in several enantiomeric forms due to the chirality of the central nitrogen atom and the phosphorus atom upon coordination. All lanthanide complexes studied have one coordinated water molecule. The residence times (tau) of the coordinated water molecules in the gadolinium(III) complexes of H6L1 and H5L2 are 88 and 92 ns, respectively, which are close to the optimum. This is particularly important upon covalent and noncovalent attachment of these Gd3+ chelates to polymers. The relaxivity of the complexes studied is further enhanced by the presence of at least two water molecules in the second coordination sphere of the Gd3+ ion, which are probably bound to the phosphonate/phosphinate moiety by hydrogen bonds. The complex [Gd(L3)(H2O)]2- shows strong binding ability to HSA, and the adduct has a relaxivity comparable to MS-325 (40 s-1 mM-1 at 40 MHz, 37 °C) even though it has a less favourable tauM value (685 ns). Transmetallation experiments with Zn2+ indicate that the complexes have a kinetic stability that is comparable to - or better than - those of [Gd(dtpa)(H2O)]2- and [Gd(dtpa-bma)(H2O)].
机译:合成了三种新型的H5DTPA含磷类似物(DTPA =二亚乙基三胺五乙酸酯)(H6L1,H5L2,H5L3)。这些化合物具有连接至二亚乙基三胺主链的中心氮原子的-CH 2 -P(O)(OH)-R官能团(R = OH,Ph,CH2NBn2)。 NMR研究表明,这些配体通过三个氮原子,一个P-O氧原子和四个羧基氧原子以八齿方式与镧系元素离子结合。由于配位时中心氮原子和磷原子的手性,络合配体以几种对映体形式存在。所有研究的镧系元素络合物都有一个配位的水分子。 H6L1和H5L2的ado(III)配合物中配位水分子的停留时间(tau)分别为88 ns和92 ns,接近最佳值。当这些Gd3 +螯合物与聚合物共价和非共价结合时,这一点尤其重要。通过在Gd3 +离子的第二个配位域中存在至少两个水分子,可以进一步增强所研究复合物的弛豫性,这两个分子很可能通过氢键与膦酸酯/次膦酸酯部分结合。复合物[Gd(L3)(H2O)] 2-显示出与HSA的强结合能力,并且加合物具有与MS-325(40 s-1 mM-1在40 MHz,37°C时)相当的弛豫性具有较低的tauM值(685 ns)。用Zn2 +进行的金属化实验表明,该配合物的动力学稳定性与[Gd(dtpa)(H2O)] 2-和[Gd(dtpa-bma)(H2O)]相当或更好。

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