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Hydration number: crucial role in nuclear magnetic relaxivity of Gd(III) chelate-based nanoparticles

26

Citations

37

References

2017

Year

Abstract

Today, nanostructure-based contrast agents (CA) are emerging in the field of magnetic resonance imaging (MRI). Their sensitivity is reported as greatly improved in comparison to commercially used chelate-based ones. The present work is aimed at revealing the factors governing the efficiency of longitudinal magnetic relaxivity (r<sub>1</sub>) in aqueous colloids of core-shell Gd(III)-based nanoparticles. We report for the first time on hydration number (q) of gadolinium(III) as a substantial factor in controlling r<sub>1</sub> values of polyelectrolyte-stabilized nanoparticles built from water insoluble complexes of Gd(III). The use of specific complex structure enables to reveal the impact of the inner-sphere hydration number on both r<sub>1</sub> values for the Gd(III)-based nanoparticles and the photophysical properties of their luminescent Tb(III) and Eu(III) counterparts. The low hydration of TTA-based Gd(III) complexes (q ≈ 1) agrees well with the poor relaxivity values (r<sub>1</sub> = 2.82 mM<sup>-1</sup>s<sup>-1</sup> and r<sub>2</sub> = 3.95 mM<sup>-1</sup>s<sup>-1</sup>), while these values tend to increase substantially (r<sub>1</sub> = 12.41 mM<sup>-1</sup>s<sup>-1</sup>, r<sub>2</sub> = 14.36 mM<sup>-1</sup>s<sup>-1</sup>) for aqueous Gd(III)-based colloids, when macrocyclic 1,3-diketonate is applied as the ligand (q ≈ 3). The regularities obtained in this work are fundamental in understanding the efficiency of MRI probes in the fast growing field of nanoparticulate contrast agents.

References

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