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Mn2+ Complex of a Fluorinated CDTA‐Derivative: Stability, Inertness, and Paramagnetic 1H, 17O, and 19F Relaxation Properties
1 Introduction The potential application of Mn2+ chelates in medical Magnetic Resonance Imaging (MRI) as more biocompatible and ecologically more sustainable alternatives to current, Gd3+-based contrast agents has promoted important efforts in coordination chemistry research in the last fifteen years.[1-4] These aim to understand the molecular parameters that govern stability, inertness and water proton relaxation properties, and ultimately to design safer and more efficient complexes.
Relaxation-Based In Vivo Discrimination of Oxidized and Reduced States of a Redox-Switchable 19F MRI Probe
ArticleMay 14, 2025 * Zoltán Garda Centre de Biophysique Moléculaire, CNRS UPR 4301, Université d’Orléans, rue Charles Sadron, 45071 Orléans, France Department of Physical Chemistry, University of Debrecen, Egyetem tér 1, 4010 Debrecen, Hungary *Email: garda.zoltan@science.unideb.hu Frédéric Szeremeta Centre de Biophysique Moléculaire, CNRS UPR 4301, Université d’Orléans, rue Charles Sadron, 45071 Orléans, France Csilla Noémi Tóth Centre de Biophysique Moléculaire, CNRS UPR 4301, Université...
Relaxation-Based In Vivo Discrimination of Oxidized and Reduced States of a Redox-Switchable 19F MRI Probe
ArticleMay 14, 2025 * Zoltán Garda Centre de Biophysique Moléculaire, CNRS UPR 4301, Université d’Orléans, rue Charles Sadron, 45071 Orléans, France Department of Physical Chemistry, University of Debrecen, Egyetem tér 1, 4010 Debrecen, Hungary *Email: garda.zoltan@science.unideb.hu Frédéric Szeremeta Centre de Biophysique Moléculaire, CNRS UPR 4301, Université d’Orléans, rue Charles Sadron, 45071 Orléans, France Csilla Noémi Tóth Centre de Biophysique Moléculaire, CNRS UPR 4301, Université...
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