Department of Chemistry, Northwestern University , Evanston, Illinois 60208-3113, United States.
J Am Chem Soc. 2016 Jun 29;138(25):7804-7. doi: 10.1021/jacs.6b03060. Epub 2016 Jun 15.
The ability of magnetic exchange coupling to enable observation of paramagnetic chemical exchange saturation transfer (PARACEST) in transition metal ions with long electronic relaxation times (τs) is demonstrated. Metalation of the dinucleating, tetra(carboxamide) ligand HL with Cu(2+) in the presence of pyrophosphate (P2O7)(4-) affords the complex LCu(II)2(P2O7). Solution-phase variable-temperature magnetic susceptibility data reveal weak ferromagnetic superexchange coupling between the two S = 1/2 Cu(II) centers, with a coupling constant of J = +2.69(5) cm(-1), to give an S = 1 ground state. This coupling results in a sharpened NMR line width relative to a GaCu analogue, indicative of a shortening of τs. Presaturation of the amide protons in the Cu2 complex at 37 °C leads to a 14% intensity decrease in the bulk water (1)H NMR signal through the CEST effect. Conversely, no CEST effect is observed in the GaCu complex. These results provide the first example of a Cu-based PARACEST magnetic resonance contrast agent and demonstrate the potential to expand the metal ion toolbox for PARACEST agents through introduction of magnetic exchange coupling.
展示了磁交换耦合能力,使具有长电子弛豫时间 (τs) 的过渡金属离子能够观察顺磁化学交换饱和转移 (PARACEST)。在焦磷酸根 (P2O7)(4-) 的存在下,二核、四(羧酰胺)配体 HL 与 Cu(2+) 配位,得到配合物 LCu(II)2(P2O7)。溶液相变温磁化率数据显示,两个 S = 1/2 Cu(II) 中心之间存在弱铁磁超交换耦合,耦合常数为 J = +2.69(5) cm(-1),从而得到 S = 1 的基态。这种耦合导致 NMR 线宽相对于 GaCu 类似物变尖锐,表明 τs 缩短。在 37 °C 下,对 Cu2 配合物中的酰胺质子进行预饱和,通过 CEST 效应导致体相水 (1)H NMR 信号强度降低 14%。相反,在 GaCu 配合物中未观察到 CEST 效应。这些结果提供了第一个基于 Cu 的 PARACEST 磁共振对比剂的实例,并证明通过引入磁交换耦合,可以扩展用于 PARACEST 试剂的金属离子工具包。