The aggregation behavior of an amphiphilic supramolecular system, with potential application as a tumor-specific magnetic resonance imaging contrast agent, has been studied in detail by dynamic light scattering, small-angle neutron scattering and cryotransmission electron microscopy. The system was constituted of mixed aggregates formed by an anionic unimer containing the DTPAGlu, a chelating agent for the paramagnetic Gd(3+) ion, and an uncharged unimer containing the bioactive peptide CCK8, capable of directing the assembly toward tumor cells. Mixed aggregates formed by both unimers, and in the case of the DTPAGlu unimer with the chelating agent as free base or as Gd(3+) complex, have been investigated. A number of interesting features of...
Mixed supramol. aggregates, obtained by assembling together two amphiphilic monomers (C18H37)2NCO(CH...
Mixed supramolecular aggregates, obtained by assembling together two amphiphilic monomers (C18H37)2N...
A detailed structural investigation on mixed micelle aggregates as target-specific contrast agents f...
The aggregation behavior of an amphiphilic supramol. system, with potential application as a tumor-s...
AbstractThe aggregation behavior of an amphiphilic supramolecular system, with potential application...
This article highlights our recent achievements on the development and upgrade of new potential tumo...
This article highlights our recent achievements on the development and upgrade of new potential tumo...
The authors present the development of a new potential blood pool contrast agent for magnetic resona...
In this paper, we present the development of a new potential blood pool contrast agent for magnetic ...
The structural and relaxometric characterization of a novel class of supramol. aggregates, as potent...
The relaxivity behavior and the structural characterization of new supramol. aggregates (bilayer str...
A detailed structural investigation on mixed micelle aggregates as target-specific contrast agents f...
A detailed structural investigation on mixed micelle aggregates as target-specific contrast agents f...
Mixed supramol. aggregates, obtained by assembling together two amphiphilic monomers (C18H37)2NCO(CH...
Mixed supramolecular aggregates, obtained by assembling together two amphiphilic monomers (C18H37)2N...
A detailed structural investigation on mixed micelle aggregates as target-specific contrast agents f...
The aggregation behavior of an amphiphilic supramol. system, with potential application as a tumor-s...
AbstractThe aggregation behavior of an amphiphilic supramolecular system, with potential application...
This article highlights our recent achievements on the development and upgrade of new potential tumo...
This article highlights our recent achievements on the development and upgrade of new potential tumo...
The authors present the development of a new potential blood pool contrast agent for magnetic resona...
In this paper, we present the development of a new potential blood pool contrast agent for magnetic ...
The structural and relaxometric characterization of a novel class of supramol. aggregates, as potent...
The relaxivity behavior and the structural characterization of new supramol. aggregates (bilayer str...
A detailed structural investigation on mixed micelle aggregates as target-specific contrast agents f...
A detailed structural investigation on mixed micelle aggregates as target-specific contrast agents f...
Mixed supramol. aggregates, obtained by assembling together two amphiphilic monomers (C18H37)2NCO(CH...
Mixed supramolecular aggregates, obtained by assembling together two amphiphilic monomers (C18H37)2N...
A detailed structural investigation on mixed micelle aggregates as target-specific contrast agents f...