Modeling Midbrain and Brainstem Neuromelanins to Characterize Metal Binding and Associated MRI Contrast in Parkinson's and Alzheimer's Diseases

N Niklas Wallstein A Andrea Capucciati (Department of Chemistry University of Pavia Via Taramelli 12 Pavia 27100 Italy) A Andreas Pöppl (Felix Bloch Institute for Solid State Physics Leipzig University Linnéstraße 5 04103 Leipzig Germany) C Claudia S. Schnohr (Felix Bloch Institute for Solid State Physics Leipzig University Linnéstraße 5 04103 Leipzig Germany) M Michela Sturini (Department of Chemistry University of Pavia Via Taramelli 12 Pavia 27100 Italy) A André Pampel C Carsten Jäger L Luigi Zecca F Fabio A. Zucca (Institute of Biomedical Technologies National Research Council of Italy Via Cervi 93, Segrate Milan 20054 Italy) E Enrico Monzani (Department of Chemistry University of Pavia Via Taramelli 12 Pavia 27100 Italy) L Luigi Casella (Department of Chemistry University of Pavia Via Taramelli 12 Pavia 27100 Italy) H Harald E. Möller

Abstract

AbstractNeuromelanin (NM) is a dark pigment that binds potentially toxic metal ions and is crucial for neuronal vulnerability. Magnetic resonance imaging (MRI) was proposed to measure neuromelanin in the substantia nigra or locus coeruleus, potentially providing a marker of Parkinson's disease. Here, synthetic neuromelanin analogues were prepared with iron and copper and used for characterization of metal binding and impact on proton relaxation, a prerequisite for optimizing neuromelanin‐sensitive MRI. The results confirm the presence of paramagnetic mononuclear Fe(III) and antiferromagnetically coupled clusters, which enhance relaxation to variable degrees. Further complexity arises from Cu(II), which can compete for binding to mononuclear sites, aggregate in mixed‐metal clusters, or bind to proteins associated with the melanin moiety. Unlike the strong relaxant Fe(III), Cu(II) only indirectly impacts relaxation by replacing iron. Overall, MRI primarily provides measures of average neuromelanin concentrations. Information on the distribution of neuromelanins with different metal compositions might be obtained with multiparametric MRI.

Article Details

Volume / Issue Vol. 64, Issue 41
Published October 06, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (12)

N

Niklas Wallstein

A

Andrea Capucciati

Department of Chemistry University of Pavia Via Taramelli 12 Pavia 27100 Italy

A

Andreas Pöppl

Felix Bloch Institute for Solid State Physics Leipzig University Linnéstraße 5 04103 Leipzig Germany

C

Claudia S. Schnohr

Felix Bloch Institute for Solid State Physics Leipzig University Linnéstraße 5 04103 Leipzig Germany

M

Michela Sturini

Department of Chemistry University of Pavia Via Taramelli 12 Pavia 27100 Italy

A

André Pampel

C

Carsten Jäger

L

Luigi Zecca

F

Fabio A. Zucca

Institute of Biomedical Technologies National Research Council of Italy Via Cervi 93, Segrate Milan 20054 Italy

E

Enrico Monzani

Department of Chemistry University of Pavia Via Taramelli 12 Pavia 27100 Italy

L

Luigi Casella

Department of Chemistry University of Pavia Via Taramelli 12 Pavia 27100 Italy

H

Harald E. Möller