The r1 relaxivity and T1 imaging properties of dendrimer-based manganese and gadolinium chelators in magnetic resonance imaging
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by
Kai Liu,
Changcun Liu,
Jindong Xia
Abstract
We report the preparation and characterization of gadolinium (Gd)- or manganese (Mn)-loaded dendrimers and Gd-loaded dendrimer-entrapped gold nanoparticles (Gd-Au DENPs) to examine the relationship between the number of metal ion chelators and r<jats:sub>1</jats:sub> relaxivity. In this study, amine-terminated fifth-generation poly(amidoamine) dendrimers (G5.NH<jats:sub>2</jats:sub>) modified with different numbers of DOTA-NHS chelators were used to chelate Gd and Mn ions. The remaining amine groups were then acetylated completely, followed by the use of materials with better r<jats:sub>1</jats:sub> relaxivities and T<jats:sub>1</jats:sub>-weighted imaging performances as templates to synthesize Gd-Au DENPs. The Gd and Mn chelators as well as Gd-Au DENPs were characterized <jats:italic>via</jats:italic> different techniques. We show that the r<jats:sub>1</jats:sub> relaxivity and T<jats:sub>1</jats:sub> imaging performance increase with loading of greater numbers of Gd and Mn ions on the G5.NH<jats:sub>2</jats:sub> and that the acetylation process affects the relaxivity and imaging properties to a certain extent. After entrapment with Au NPs, the r<jats:sub>1</jats:sub> relaxivity and T<jats:sub>1</jats:sub>-weighted imaging performance of Gd-Au DENPs decrease with greater loading of Au NPs. This systematic study of the relaxivities and T<jats:sub>1</jats:sub>-weighted imaging performances of Gd, Mn, and Gd-Au DENP chelators are expected to be a theoretical basis for developing multifunctional dual-mode contrast agents.
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Date 2022-10-10
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2296-4185
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