4.8 Article

Metallotexaphyrins as MRI-Active Catalytic Antioxidants for Neurodegenerative Disease: A Study on Alzheimer's Disease

Journal

CHEM
Volume 6, Issue 3, Pages 703-724

Publisher

CELL PRESS
DOI: 10.1016/j.chempr.2019.12.016

Keywords

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Funding

  1. National Institutes of Health [RO1 CA68682]
  2. Robert A. Welch Foundation [F-0018]
  3. NIH [UF1 NS107712, 1-S10-OD021508-01]
  4. Wellcome Trust-MIT Postdoctoral Research Fellowship [105932/Z/14/Z]
  5. NottinghamResearch Fellowship at the University of Nottingham
  6. Italian Ministry of Education, University, and Research (MIUR) [2015T778JW]
  7. NIH Office of Research Infrastructure Programs [P40-OD010440]
  8. UT Austin

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The complex etiology of neurodegeneration continues to stifle efforts to develop effective therapeutics. New agents elucidating key pathways causing neurodegeneration might serve to increase our understanding and potentially lead to improved treatments. Here, we demonstrate that a water-soluble manganese(II) texaphyrin (MMn) is a suitable magnetic resonance imaging (MRI) contrast agent for detecting larger amyloid beta constructs. The imaging potential of MMn was inferred on the basis of in vitro studies and in vivo detection in Alzheimer's disease C. elegans models via MRI and ICP-MS. In vitro antioxidantand cellular-based assays provide support for the notion that this porphyrin analog shows promise as a therapeutic agent able to mitigate the oxidative and nitrative toxic effects considered causal in neurodegeneration. The present report marks the first elaboration of an MRI-active metalloantioxidant that confers diagnostic and therapeutic benefit in Alzheimer's disease models without conjugation of a radioisotope, targeting moiety, or therapeutic payload.

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