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Modification of nitroxyl contrast agents with multiple spins and their proton T(1) relaxivity
Authors:Matsumoto Ken-Ichiro  Yakumaru Haruko  Narazaki Michiko  Nakagawa Hidehiko  Anzai Kazunori  Ikehira Hiroo  Ikota Nobuo
Institution:Radiation Modifier Research Team, Heavy-Ion Radiobiology Research Group, Research Center for Charged Particle Therapy, National Institute of Radiological Sciences, Chiba 263-8555, Japan. matsumok@nirs.go.jp
Abstract:The purpose of this study is to test the performance of multispin nitroxyl contrast agents in improving the sensitivity of MR detection for nitroxyl contrast agents. The relation between T(1) relaxivity and the number of paramagnetic centers in a molecule was investigated. Compound 1 is a single molecule of methoxycarbonyl-PROXYL (MC-PROXYL). Two and three MC-PROXYL molecules were chemically coupled to obtain Compounds 2 and 3, which have two and three nitroxyl spins in the molecule, respectively. A good linear relation, the slope of which increased depending on the number of nitroxyl spins in the molecule, was obtained between T(1)-weighted (fast low-angle shot) MR image contrast enhancement at 7 T and the concentration of nitroxyl contrast agents. T(1)-weighted MR image contrast enhancement and T(1) relaxivity levels of nitroxyl contrast agents were increased depending on the number of nitroxyl spins in the molecule. Multicoupling nitroxyl molecules can enhance the T(1)-weighted contrast effect while maintaining the quantitative behavior of the molecule for up to three spins.
Keywords:Nitroxyl contrast agents  Proton T1 relaxivity  Magnetic resonance imaging  Methoxycarbonyl-PROXYL  Electron paramagnetic spectroscopy
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