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配体取代对一类 Co-PARACEST pH 探针的电子效应。

Electronic Effects of Ligand Substitution in a Family of Co PARACEST pH Probes.

机构信息

Department of Chemistry , Northwestern University , Evanston , Illinois 60208 , United States.

出版信息

Inorg Chem. 2018 Sep 4;57(17):11252-11263. doi: 10.1021/acs.inorgchem.8b01896. Epub 2018 Aug 23.

Abstract

We report three new Co-based paramagnetic chemical exchange saturation transfer (PARACEST) probes with the ability to ratiometrically quantitate pH. A Co complex, [LCo(etidronate)], featuring tetra(carboxamide) and OH-substituted etidronate ligands with opposing pH-dependent CEST peak intensities, was previously shown to exhibit a linear correlation between log(CEST/CEST) and pH in the pH range 6.5-7.6 that provided a sensitivity of 0.99(7) pH unit at 37 °C. Here, we demonstrate through a series of CF-functionalized Co complexes [(L')Co(etidronate)] (X = NO, F, Me), that modest changes in the electronic structure of Co centers through remote ligand substitution can significantly affect the NMR and CEST properties of Co-based PARACEST probes. Variable-pH NMR and CEST analyses reveal that the chemical shifts of the ligand protons are highly affected by the nature of the X substituent. The ratios of OH and NH CEST peak intensities at 115 and 88, 93 and 79, and 88 and 76 ppm for X = NO, F, and Me, respectively, afford pH calibration curves with remarkably high sensitivities of 1.49(9), 1.48(7), and 2.04(5) pH unit across the series. The 1.5-2-fold enhancement in pH sensitivity for the CF-functionalized Co probes stems from the complete separation of the OH and NH CEST peaks. Furthermore, incorporation of electron-withdrawing CF groups shifts the detection window to a more acidic range of pH 6.2-7.4. Finally, the Co complexes are found to be extremely robust toward substitution and oxidation in aqueous solutions. Taken together, these results highlight the unique ability of transition metal-based PARACEST probes to provide a highly sensitive concentration-independent measure of pH and demonstrate that modest ligand modifications can be a powerful tool for optimizing the pH sensing performance of these probes.

摘要

我们报道了三个新的基于钴的顺磁化学交换饱和转移(PARACEST)探针,它们能够进行 pH 的比率定量。先前已经表明,具有四面体(羧酰胺)和 OH 取代的依替膦酸盐配体的 Co 配合物 [LCo(依替膦酸盐)] 具有 pH 值为 6.5-7.6 范围内的 CEST 峰强度的相反 pH 依赖性,并且在 37°C 时具有 0.99(7) pH 单位的灵敏度。在这里,我们通过一系列 CF 功能化的 Co 配合物 [(L')Co(依替膦酸盐)](X = NO、F、Me)证明,通过远程配体取代对 Co 中心的电子结构进行适度改变会显著影响基于 Co 的 PARACEST 探针的 NMR 和 CEST 性质。可变 pH NMR 和 CEST 分析表明,配体质子的化学位移受 X 取代基的性质高度影响。X = NO、F 和 Me 时,分别在 115 和 88、93 和 79 以及 88 和 76 ppm 处的 OH 和 NH CEST 峰强度比提供 pH 校准曲线,在整个系列中具有惊人的 1.49(9)、1.48(7)和 2.04(5) pH 单位的灵敏度。CF 功能化 Co 探针的 pH 灵敏度提高 1.5-2 倍源于 OH 和 NH CEST 峰的完全分离。此外,引入吸电子的 CF 基团将检测窗口移至更酸性的 pH 6.2-7.4 范围。最后,发现 Co 配合物在水溶液中对取代和氧化非常稳定。总之,这些结果突出了过渡金属基 PARACEST 探针提供 pH 的高度灵敏、浓度独立测量的独特能力,并表明适度的配体修饰可以成为优化这些探针的 pH 传感性能的有力工具。

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