Many Eu(III) complexes formed with DOTA-tetraamide ligands (where DOTA is 1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid) have sufficiently slow water exchange kinetics to meet the slow-to-intermediate condition required to serve as chemical exchange saturation transfer (CEST) contrast agents for MRI. This class of MRI contrast agents offers an attractive platform for creating biological sensors because water exchange is exquisitely sensitive to subtle ligand stereochemistry and electronic effects. Introduction of carboxyl groups or carboxyl ethyl ester groups on the amide substituents has been shown to slow water exchange in these complexes, but less is known about the orientation or position of these side-chain groups relative t...
International audienceA temperature‐dependent UV–visible spectrophotometric study on [Eu(DO3A)(H2O)n...
International audienceEuII complexes are potential candidates for pO2-responsive contrast agents in ...
The solution structure and dynamics of metal-bound water exchange have been investigated in a series...
Chemical exchange saturation transfer (CEST) offers many advantages as a method of generating contra...
The conformational behavior in aqueous solution of four complexes of the Eu(III) ion with bis (R-ami...
We report a detailed study of the solution structure and water exchange rate of a Eu(III) complex wi...
Interest in macrocyclic lanthanide complexes such as DOTA is driven largely through interest in thei...
Lanthanide(III) chelates of DOTA-tetraamide ligands have been an area of particular interest since t...
The chemical exchange saturation transfer (CEST) efficiency for a series Eu3+-based tetraamide compl...
The solution structure and dynamics of metal-bound water exchange have been studied in a series of d...
Water exchange in lanthanide(III) chelates is a key parameter in developing more effective MRI cont...
[Abstract] We report a detailed study of the solution structure and water exchange rate of a Eu(III)...
Paramagnetic lanthanide(III) complexes that contain hyperfine-shifted exchangeable protons offer con...
Water exchange in lanthanide(III) chelates is a key parameter in developing more effective MRI contr...
Lanthanide chelates are effective agents for improving contrast in MR images. Optimizing the relaxat...
International audienceA temperature‐dependent UV–visible spectrophotometric study on [Eu(DO3A)(H2O)n...
International audienceEuII complexes are potential candidates for pO2-responsive contrast agents in ...
The solution structure and dynamics of metal-bound water exchange have been investigated in a series...
Chemical exchange saturation transfer (CEST) offers many advantages as a method of generating contra...
The conformational behavior in aqueous solution of four complexes of the Eu(III) ion with bis (R-ami...
We report a detailed study of the solution structure and water exchange rate of a Eu(III) complex wi...
Interest in macrocyclic lanthanide complexes such as DOTA is driven largely through interest in thei...
Lanthanide(III) chelates of DOTA-tetraamide ligands have been an area of particular interest since t...
The chemical exchange saturation transfer (CEST) efficiency for a series Eu3+-based tetraamide compl...
The solution structure and dynamics of metal-bound water exchange have been studied in a series of d...
Water exchange in lanthanide(III) chelates is a key parameter in developing more effective MRI cont...
[Abstract] We report a detailed study of the solution structure and water exchange rate of a Eu(III)...
Paramagnetic lanthanide(III) complexes that contain hyperfine-shifted exchangeable protons offer con...
Water exchange in lanthanide(III) chelates is a key parameter in developing more effective MRI contr...
Lanthanide chelates are effective agents for improving contrast in MR images. Optimizing the relaxat...
International audienceA temperature‐dependent UV–visible spectrophotometric study on [Eu(DO3A)(H2O)n...
International audienceEuII complexes are potential candidates for pO2-responsive contrast agents in ...
The solution structure and dynamics of metal-bound water exchange have been investigated in a series...