Journal article
Antioxidant and metal chelation-based therapies in the treatment of prion disease
MW Brazier, AG Wedd, SJ Collins
Antioxidants | MDPI | Published : 2014
Abstract
Many neurodegenerative disorders involve the accumulation of multimeric assemblies and amyloid derived from misfolded conformers of constitutively expressed proteins. In addition, the brains of patients and experimental animals afflicted with prion disease display evidence of heightened oxidative stress and damage, as well as disturbances to transition metal homeostasis. Utilising a variety of disease model paradigms, many laboratories have demonstrated that copper can act as a cofactor in the antioxidant activity displayed by the prion protein while manganese has been implicated in the generation and stabilisation of disease-associated conformers. This and other evidence has led several gro..
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Grants
Awarded by National Health and Medical Research Council
Funding Acknowledgements
The authors have no competing interests, financial or otherwise, concerning any topic covered in this article. SJC is funded in part through an NHMRC Program Grant #628946 and Practitioner Fellowship #APP1005816. We utilised the professional services of Everyedit [114], who expertly conducted the final edit of this manuscript prior to submission.