4.8 Article

Spin crossover iron(II) complexes as PARACEST MRI thermometers

期刊

CHEMICAL SCIENCE
卷 5, 期 6, 页码 2461-2465

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c4sc00396a

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  1. Northwestern University
  2. International Institute for Nanotechnology (IIN)
  3. Chemistry of Life Processes (CLP) Institute through a Chairman's Innovation Award

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We demonstrate the potential utility of spin crossover iron(II) complexes as temperature-responsive paramagnetic chemical exchange saturation transfer (PARACEST) contrast agents in magnetic resonance imaging (MRI) thermometry. This approach is illustrated in the two molecular complexes [Fe(3-bpp)(2)] (2+) (3-bpp = 2,6-di(pyrazol-3-yl)pyridine) and [(Me2NPY5Me2)Fe(H2O)](2+) (Me2NPY5Me2=4-dimethylamino-2,6-bis(1,1-bis(2-pyridyl)ethyl) pyridine). Variable-temperature magnetic susceptibility data collected for aqueous solutions of these complexes reveal that they exhibit spin crossover behaviour in H2O over the temperature range 20-60 degrees C. Selective presaturation of pyrazolyl and coordinated water protons in these complexes, respectively, leads to a significant decrease in the NMR signal intensity of bulk water protons through CEST. The corresponding Z-spectra reveal a strong linear temperature dependence of chemical shift of those protons, 0.23(1) ppm degrees C-1 and 1.02(1) ppm degrees C-1, respectively, arising from thermal conversion between low-spin S = 0 and high-spin S = 2 iron(II), representing 23- and 100-fold higher sensitivity than that afforded by conventional proton resonance frequency shift thermometry. Finally, temperature maps generated for an aqueous solution containing [(Me(2)NPY5Me(2))Fe(H2O)](2+) show excellent agreement with independently measured temperatures of the solution.

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