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NRF2 activation by reversible KEAP1 binding induces the antioxidant response in
primary neurons and astrocytes of a Huntington’s disease mouse model
Daniele Moretti, Sara Tambone, Mauro Cerretani, Paola Fezzardi, Antonino Missineo,
Leticia Toledo Sherman, Ignacio Munoz-sajuan, Steven Harper, Celia Dominquez,
Robert Pacifici, Licia Tomei, Larry Park, Alberto Bresciani
PII: S0891-5849(20)31296-X
DOI: https://doi.org/10.1016/j.freeradbiomed.2020.10.022
Reference: FRB 14873
To appear in: Free Radical Biology and Medicine
Received Date: 7 August 2020
Revised Date: 12 October 2020
Accepted Date: 18 October 2020
Please cite this article as: D. Moretti, S. Tambone, M. Cerretani, P. Fezzardi, A. Missineo, L.T. Sherman,
I. Munoz-sajuan, S. Harper, C. Dominquez, R. Pacifici, L. Tomei, L. Park, A. Bresciani, NRF2 activation
by reversible KEAP1 binding induces the antioxidant response in primary neurons and astrocytes of
a Huntington’s disease mouse model, Free Radical Biology and Medicine, https://doi.org/10.1016/
j.freeradbiomed.2020.10.022.
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