Zech Stephan G, Sun Wei-Chuan, Jacques Vincent, Caravan Peter, Astashkin Andrei V, Raitsimring Arnold M
EPIX Pharmaceuticals, Inc., 67 Rogers Street, Cambridge, MA 02142, USA.
Chemphyschem. 2005 Dec 9;6(12):2570-7. doi: 10.1002/cphc.200500250.
A novel methodology based on electron-nuclear double resonance (ENDOR) spectroscopy is used for the direct determination of the water coordination number (q) of gadolinium-based magnetic resonance imaging (MRI) contrast agents. Proton ENDOR spectra can be obtained at approximately physiological concentrations for metal complexes in frozen aqueous solutions either in the presence or absence of protein targets. It is shown that, depending on the structure of the co-ligand, the water hydration number of a complex in aqueous solution can be significantly different to when the complex is noncovalently bound to a protein. From the ENDOR spectra of the exchangeable protons, precise information on the metal-proton distance can be derived as well. These essential parameters directly correlate with the efficacy of MRI contrast agents and should therefore aid the development of novel, highly efficient compounds targeted to various proteins.
一种基于电子-核双共振(ENDOR)光谱的新方法被用于直接测定钆基磁共振成像(MRI)造影剂的水配位数(q)。对于冷冻水溶液中的金属配合物,无论是否存在蛋白质靶点,都可以在大约生理浓度下获得质子ENDOR光谱。结果表明,根据共配体的结构,水溶液中配合物的水合数与该配合物非共价结合到蛋白质上时的水合数可能有显著差异。从可交换质子的ENDOR光谱中,也可以获得有关金属-质子距离的精确信息。这些重要参数与MRI造影剂的功效直接相关,因此应该有助于开发针对各种蛋白质的新型高效化合物。