Fluorinated Mn(III)/(II)‐Porphyrin with Redox‐Responsive 1H and 19F Relaxation Properties

Author:

Pinto Sara M. A.12ORCID,Ferreira Ana R. R.12,Teixeira Daniela S. S.12,Nunes Sandra C. C.12ORCID,Batista de Carvalho Ana L. M.34ORCID,Almeida Joseany M. S.15,Garda Zoltan6ORCID,Pallier Agnés6,Pais Alberto A. C. C.12ORCID,Brett Christopher M. A.15ORCID,Tóth Éva6ORCID,Marques Maria P. M.34ORCID,Pereira Mariette M.12ORCID,Geraldes Carlos F. G. C.247ORCID

Affiliation:

1. University of Coimbra, CQC-IMS Department of Chemistry P-3004-535 Coimbra Portugal

2. Coimbra Chemistry Center University of Coimbra Rua Larga Largo D. Dinis 3004-535 Coimbra Portugal

3. Molecular Physical Chemistry R&D Unit Department of Chemistry University of Coimbra Rua Larga 3004-535 Coimbra Portugal

4. Department of Life Sciences Faculty of Science and Technology Calçada Martim de Freitas 3000-393 Coimbra Portugal

5. CEMMPRE University of Coimbra Pinhal de Marrocos 3030-788 Coimbra Portugal

6. Centre de Biophysique Moléculaire, CNRS, UPR 4301 Université d'Orléans Rue Charles Sadron 45071 Orléans Cedex 2 France

7. CIBIT/ICNAS University of Coimbra Azinhaga de Santa Comba 3000-548 Coimbra Portugal

Abstract

AbstractA new fluorinated manganese porphyrin, (Mn‐TPP‐p‐CF3) is reported capable of providing, based on the Mn(III)/Mn(II) equilibrium, dual 1H relaxivity and 19F NMR response to redox changes. The physical‐chemical characterization of both redox states in DMSO‐d6/H2O evidenced that the 1H relaxometric and 19F NMR properties are appropriate for differential redox MRI detection. The Mn(III)‐F distance (dMn−F=9.7–10 Å), as assessed by DFT calculations, is well tailored to allow for adequate paramagnetic effect of Mn(III) on 19F T1 and T2 relaxation times. Mn‐TPP‐p‐CF3 has a reversible Mn(II)/Mn(III) redox potential of 0.574 V vs. NHE in deoxygenated aqueous HEPES/ THF solution. The reduction of Mn(III)‐TPP‐p‐CF3 in the presence of ascorbic acid is slowly, but fully reversed in the presence of air oxygen, as monitored by UV‐Vis spectrometry and 19F NMR. The broad 1H and 19F NMR signals of Mn(III)‐TPP‐p‐CF3 disappear in the presence of 1 equivalent ascorbate replaced by a shifted and broadened 19F NMR signal from Mn(II)‐TPP‐p‐CF3. Phantom 19F MR images in DMSO show a MRI signal intensity decrease upon reduction of Mn(III)‐TPP‐p‐CF3, retrieved upon complete reoxidation in air within ~24 h. 1H NMRD curves of the Mn(III)/(II)‐TPP‐p‐CF3 chelates in mixed DMSO/water solvent have the typical shape of Mn(II)/Mn(III) porphyrins.

Funder

Fundação para a Ciência e a Tecnologia

HORIZON EUROPE Marie Sklodowska-Curie Actions

Académie des Sciences, Institut de France

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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