Novel insights into the mechanism of reactive oxygen species-mediated neurodegeneration
Author:
Publisher
Medknow
Subject
Developmental Neuroscience
Reference48 articles.
1. Araki T, Sasaki Y, Milbrandt J (2004) Increased nuclear NAD biosynthesis and SIRT1 activation prevent axonal degeneration. Science 305:1010-1013.
2. Araki T, Wakatsuki S (2019) Regulation of neuronal/axonal degeneration by ZNRF1 ubiquitin ligase. Neurosci Res 139:21-25.
3. Bedard K, Krause KH (2007) The NOX family of ROS-generating NADPH oxidases: physiology and pathophysiology. Physiol Rev 87:245-313.
4. Broughton BR, Reutens DC, Sobey CG (2009) Apoptotic mechanisms after cerebral ischemia. Stroke; a journal of cerebral circulation 40:e331-339.
5. Cole AR, Noble W, van Aalten L, Plattner F, Meimaridou R, Hogan D, Taylor M, LaFrancois J, Gunn-Moore F, Verkhratsky A, Oddo S, LaFerla F, Giese KP, Dineley KT, Duff K, Richardson JC, Yan SD, Hanger DP, Allan SM, Sutherland C (2007) Collapsin response mediator protein-2 hyperphosphorylation is an early event in Alzheimer’s disease progression. J Neurochem 103:1132-1144.
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