Institute of Chemistry - Inorganic Chemistry, University of Graz, Schubertstraße 1/III, 8010 Graz, Austria.
Institute of Chemistry - Medicinal Chemistry, University of Graz, Schubertstraße 1/IV, 8010 Graz, Austria.
Dalton Trans. 2022 Jul 26;51(29):11086-11097. doi: 10.1039/d2dt01470j.
Multinuclear tungsten complexes are intriguing candidates for new contrast media that can provide substantial improvements in CT imaging diagnostics. Herein, we present a ligand strategy, based on amino acids, and mono- and disubstituted EDTA derivatives, that enables the development of stable complexes with high tungsten content and reasonably low osmolality. Accordingly, a series of neutral and monoanionic di-μ-sulfido W(V) dimers have been synthesized a convenient procedure utilizing microwave heating in combination with ion-pair HPLC reaction monitoring. The compounds were characterized in detail by various techniques, including ESI-HRMS, NMR spectroscopy, HPLC, elemental analysis, and X-ray crystallography. The aqueous stability of the complexes under physiologically relevant conditions, and during heat sterilization was also examined as an initial assessment of their potential applicability as radiocontrast agents. Monoanionic complexes featuring monosubstituted EDTA derivatives have demonstrated high stability, while producing a lower number of ions in solution (resulting in lower osmolality) in comparison to their bis-anionic EDTA counterparts. Nevertheless, they exhibited insufficient water solubility for application as intravascular contrast agents. However, our study showed that aqueous solubility of this type of complexes can be tuned by small modifications in the ligand structure.
多核钨配合物是新型对比剂的有吸引力的候选物,它们可以在 CT 成像诊断中提供实质性的改进。在这里,我们提出了一种基于氨基酸和单取代及双取代 EDTA 衍生物的配体策略,该策略能够开发出具有高钨含量和合理低渗透压的稳定配合物。相应地,我们通过一种方便的程序,利用微波加热结合离子对 HPLC 反应监测,合成了一系列中性和单阴离子二-μ-硫代 W(V)二聚体。通过各种技术对化合物进行了详细的表征,包括 ESI-HRMS、NMR 光谱、HPLC、元素分析和 X 射线晶体学。还研究了在生理相关条件下以及在热灭菌过程中这些配合物的水稳定性,作为对其作为放射性对比剂潜在适用性的初步评估。与双阴离子 EDTA 对应物相比,具有单取代 EDTA 衍生物的单阴离子配合物表现出较高的稳定性,同时在溶液中产生较少的离子(导致较低的渗透压)。然而,它们的水溶性不足以用作血管内对比剂。然而,我们的研究表明,通过对配体结构进行微小修饰,可以调整此类配合物的水溶性。