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A novel mitochondrial enriched antioxidant protects neurons against acute oxidative stress

Nicola J. Drummond, Nick O. Davies, Janet E. Lovett, Mark R. Miller, Graeme Cook, Thomas Becker, View ORCID ProfileCatherina G. Becker, Donald B. McPhail, View ORCID ProfileTilo Kunath
doi: https://doi.org/10.1101/109439
Nicola J. Drummond
1MRC Centre for Regenerative Medicine, Institute for Stem Cell Research, School of Biological Sciences, The University of Edinburgh, Edinburgh, EH16 4UU, UK
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Nick O. Davies
2Centre for Neuroregeneration, Chancellor’s Building, The University of Edinburgh, Edinburgh, EH16 4SB, UK
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Janet E. Lovett
3SUPA, School of Physics and Astronomy, University of St Andrews, North Haugh, St Andrews, KY16 9SS, UK
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Mark R. Miller
4University/BHF Centre for Cardiovascular Science, University of Edinburgh, Edinburgh, EH16 4TJ, UK
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Graeme Cook
5Antoxis Limited, Polwarth Building, Foresterhill, Aberdeen, AB25 2ZD, UK
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Thomas Becker
2Centre for Neuroregeneration, Chancellor’s Building, The University of Edinburgh, Edinburgh, EH16 4SB, UK
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Catherina G. Becker
2Centre for Neuroregeneration, Chancellor’s Building, The University of Edinburgh, Edinburgh, EH16 4SB, UK
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Donald B. McPhail
5Antoxis Limited, Polwarth Building, Foresterhill, Aberdeen, AB25 2ZD, UK
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Tilo Kunath
1MRC Centre for Regenerative Medicine, Institute for Stem Cell Research, School of Biological Sciences, The University of Edinburgh, Edinburgh, EH16 4UU, UK
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  • ORCID record for Tilo Kunath
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Abstract

Excessive reactive oxygen species (ROS) can damage proteins, lipids, and DNA, which result in cell damage and death. The outcomes can be acute, as seen in stroke, or more chronic as observed in age-related diseases such as Parkinson’s disease. Here we investigate the antioxidant ability of a novel synthetic flavonoid, Proxison (7-decyl-3-hydroxy-2-(3,4,5-trihydroxyphenyl)-4-chromenone), using a range of in vitro and in vivo approaches. We show that, while it has radical scavenging ability on par with other flavonoids in a cell-free system, Proxison is orders of magnitude more potent than natural flavonoids at protecting neural cells against oxidative stress and is capable of rescuing damaged cells. The unique combination of a lipophilic hydrocarbon tail with a modified polyphenolic head group promotes efficient cellular uptake and mitochondrial localisation of Proxison. Importantly, in vivo administration of Proxison demonstrated effective and well tolerated neuroprotection against oxidative stress in a zebrafish model of dopaminergic neuronal loss.

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Posted February 17, 2017.
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A novel mitochondrial enriched antioxidant protects neurons against acute oxidative stress
Nicola J. Drummond, Nick O. Davies, Janet E. Lovett, Mark R. Miller, Graeme Cook, Thomas Becker, Catherina G. Becker, Donald B. McPhail, Tilo Kunath
bioRxiv 109439; doi: https://doi.org/10.1101/109439
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A novel mitochondrial enriched antioxidant protects neurons against acute oxidative stress
Nicola J. Drummond, Nick O. Davies, Janet E. Lovett, Mark R. Miller, Graeme Cook, Thomas Becker, Catherina G. Becker, Donald B. McPhail, Tilo Kunath
bioRxiv 109439; doi: https://doi.org/10.1101/109439

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