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Supramolecular Assembly of an Amphiphilic GdIII Chelate: Tuning the Reorientational Correlation Time and the Water Exchange Rate

机译:两亲性GdIII螯合物的超分子组装:调整方向相关时间和水交换速率。

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摘要

We report the synthesis and characterization of the novel ligand H5EPTPA-C16 ((hydroxymethylhexadecanoyl ester)ethylenepropylenetriaminepentaacetic acid). This ligand was designed to chelate the GdIII ion in a kinetically and thermodynamically stable way while ensuring an increased water exchange rate (kex) on the GdIII complex owing to steric compression around the water-binding site. The attachment of a palmitic ester unit to the pendant hydroxymethyl group on the ethylenediamine bridge yields an amphiphilic conjugate that forms micelles with a long tumbling time (tauR) in aqueous solution. The critical micelle concentration (cmc = 0.34 mM) of the amphiphilic [Gd(eptpa-C16)(H2O)]2- chelate was determined by variable-concentration proton relaxivity measurements. A global analysis of the data obtained in variable-temperature and multiple-field 17O NMR and 1H NMRD measurements allowed for the determination of parameters governing relaxivity for [Gd(eptpa-C16)(H2O)]2-; this is the first time that paramagnetic micelles with optimized water exchange have been investigated. The water exchange rate was found to be = 1.7×108 s-1, very similar to that previously reported for the nitrobenzyl derivative [Gd(eptpa-bz-NO2)(H2O)]2- ( = 1.5×108 s-1). The rotational dynamics of the micelles were analysed by using the Lipari-Szabo approach. The micelles formed in aqueous solution show considerable flexibility, with a local rotational correlation time of = 330 ps for the GdIII segments, which is much shorter than the global rotational correlation time of the supramolecular aggregates, = 2100 ps. This internal flexibility of the micelles is responsible for the limited increase of the proton relaxivity observed on micelle formation (r1 = 22.59 mM-1 s-1 for the micelles versus 9.11 mM-1 s-1 for the monomer chelate (20 MHz; 25 °C)).
机译:我们报告了新型配体H5EPTPA-C16((羟甲基十六烷酸酯)乙烯丙烯三胺五乙酸)的合成和表征。设计该配体以动力学和热力学稳定的方式螯合GdIII离子,同时由于水结合位点周围的空间压缩,确保GdIII络合物上的水交换速率(kex)增加。棕榈酸酯单元与乙二胺桥上的羟基甲基侧基的连接产生两亲性共轭物,在水溶液中形成具有长翻滚时间(tauR)的胶束。通过可变浓度的质子弛豫度测量来确定两亲性[Gd(eptpa-C16)(H2O)] 2-螯合物的临界胶束浓度(cmc = 0.34 mM)。对在可变温度和多场17O NMR和1H NMRD测量中获得的数据进行整体分析,可以确定控制[Gd(eptpa-C16)(H2O)] 2-弛豫的参数。这是首次研究了具有最佳水交换性能的顺磁性胶束。发现水交换速率为= 1.7×108 s-1,与先前报道的硝基苄基衍生物[Gd(eptpa-bz-NO2)(H2O)] 2-(= 1.5×108 s-1)非常相似。 。使用Lipari-Szabo方法分析了胶束的旋转动力学。在水溶液中形成的胶束具有相当大的柔韧性,GdIII片段的局部旋转相关时间= 330 ps,比超分子聚集体的整体旋转相关时间= 2100 ps短得多。胶束的这种内部柔韧性是在胶束形成时观察到的质子弛豫性有限增加的原因(胶束的r1 = 22.59 mM-1 s-1,而单体螯合物为9.11 mM-1 s-1(20 MHz; 25 °C))。

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