Department of Chemistry , Stony Brook University , 100 Nicolls Road , Stony Brook , New York 11790 , United States.
J Am Chem Soc. 2019 Sep 18;141(37):14650-14660. doi: 10.1021/jacs.9b05874. Epub 2019 Sep 10.
The formation of ternary aqua complexes of metal-based diagnostics and therapeutics is closely correlated to their in vivo efficacy but approaches to quantify the presence of coordinated water ligands are limited. We introduce a general and high-throughput method for characterizing the hydration state of para- and diamagnetic coordination complexes in the gas phase based on variable-temperature ion trap tandem mass spectrometry. Ternary aqua complexes are directly observed in the mass spectrum and quantified as a function of ion trap temperature. We recover expected periodic trends for hydration across the lanthanides and distinguish complexes with several inner-sphere water ligands by inspection of temperature-dependent speciation curves. We derive gas-phase thermodynamic parameters for discernible inner- and second-sphere hydration events, and discuss their application to predict solution-phase behavior. The differences in temperature at which water binds in the inner and outer spheres arise primarily from entropic effects. The broad applicability of this method allows us to estimate the hydration states of Ga, Sc, and Zr complexes under active preclinical and clinical study with as-yet undetermined hydration number. Variable-temperature mass spectrometry emerges as a general tool to characterize and quantitate trends in inner-sphere hydration across the periodic table.
基于离子阱串联质谱的变温技术,我们建立了一种通用的高通量方法来描述气相中顺磁和反磁金属基诊疗试剂的三元水合配合物的形成情况。在质谱中可直接观察到三元水合配合物,并可根据离子阱温度定量分析。通过考察温依赖的配位体特异性曲线,我们可以得到镧系元素的预期水合周期性趋势,并可以分辨出具有多个内界水配体的配合物。我们推导了可分辨的内界和第二配位层水合作用的气相热力学参数,并讨论了它们在预测溶液相行为中的应用。内界和外界水结合的温度差异主要来自于熵效应。这种方法的广泛适用性使我们能够评估处于积极临床前和临床研究阶段的 Ga、Sc 和 Zr 配合物的水合状态,而无需确定其水合数。变温质谱法是一种通用的工具,可用于描述和量化整个元素周期表中内界水合作用的趋势。