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Experimental Eye Research
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July 1, 2008
Mitochondrial function and redox control in the aging eye: role of MsrA and other repair systems in cataract and macular degenerations
Lisa A Brennan, Marc Kantorow
Experimental Eye Research
|
June 9, 2004
Molecular genetics of age-related cataract
J Fielding Hejtmancik, Marc Kantorow
Experimental Eye Research
|
July 7, 2020
Hypoxia regulates the degradation of non-nuclear organelles during lens differentiation through activation of HIF1a
Lisa Brennan, Joshua Disatham, Marc Kantorow
Investigative Ophthalmology & Visual Science
|
October 1, 2025
Hypoxia-Driven Histone Modifications Govern Gene Regulation for Mature Eye Lens Formation
Lisa Brennan, Joshua Disatham, Marc Kantorow
Experimental Eye Research
|
July 2, 2021
Mechanisms of organelle elimination for lens development and differentiation
Lisa Brennan, Joshua Disatham, Marc Kantorow
Molecular Vision
|
September 26, 2007
Localization and H2O2-specific induction of PRDX3 in the eye lens
Wanda Lee, Tracy Wells, Marc Kantorow
Biochimica Et Biophysica Acta. Molecular Basis of Disease
|
October 6, 2016
Parkin elimination of mitochondria is important for maintenance of lens epithelial cell ROS levels and survival upon oxidative stress exposure
Lisa Brennan, Josef Khoury, Marc Kantorow
Plos One
|
November 17, 2010
TXNL6 is a novel oxidative stress-induced reducing system for methionine sulfoxide reductase a repair of α-crystallin and cytochrome C in the eye lens
Lisa A Brennan, Wanda Lee, Marc Kantorow
Experimental Eye Research
|
December 15, 2007
Peroxiredoxin 3 (PDRX3) is highly expressed in the primate retina especially in blue cones
Ernesto F Moreira, Marc Kantorow, Ignacio R Rodriguez
Biomolecules
|
May 16, 2023
Multiomics Analysis Reveals Novel Genetic Determinants for Lens Differentiation, Structure, and Transparency
Joshua Disatham, Lisa Brennan, Ales Cvekl, et al.
Page
of 5
Search research articles
Search
Showing results (1-10 of 48) with videos related to
Sort By:
Page
of 5
Experimental Eye Research
|
July 1, 2008
Mitochondrial function and redox control in the aging eye: role of MsrA and other repair systems in cataract and macular degenerations
Lisa A Brennan, Marc Kantorow
Experimental Eye Research
|
June 9, 2004
Molecular genetics of age-related cataract
J Fielding Hejtmancik, Marc Kantorow
Experimental Eye Research
|
July 7, 2020
Hypoxia regulates the degradation of non-nuclear organelles during lens differentiation through activation of HIF1a
Lisa Brennan, Joshua Disatham, Marc Kantorow
Investigative Ophthalmology & Visual Science
|
October 1, 2025
Hypoxia-Driven Histone Modifications Govern Gene Regulation for Mature Eye Lens Formation
Lisa Brennan, Joshua Disatham, Marc Kantorow
Experimental Eye Research
|
July 2, 2021
Mechanisms of organelle elimination for lens development and differentiation
Lisa Brennan, Joshua Disatham, Marc Kantorow
Molecular Vision
|
September 26, 2007
Localization and H2O2-specific induction of PRDX3 in the eye lens
Wanda Lee, Tracy Wells, Marc Kantorow
Biochimica Et Biophysica Acta. Molecular Basis of Disease
|
October 6, 2016
Parkin elimination of mitochondria is important for maintenance of lens epithelial cell ROS levels and survival upon oxidative stress exposure
Lisa Brennan, Josef Khoury, Marc Kantorow
Plos One
|
November 17, 2010
TXNL6 is a novel oxidative stress-induced reducing system for methionine sulfoxide reductase a repair of α-crystallin and cytochrome C in the eye lens
Lisa A Brennan, Wanda Lee, Marc Kantorow
Experimental Eye Research
|
December 15, 2007
Peroxiredoxin 3 (PDRX3) is highly expressed in the primate retina especially in blue cones
Ernesto F Moreira, Marc Kantorow, Ignacio R Rodriguez
Biomolecules
|
May 16, 2023
Multiomics Analysis Reveals Novel Genetic Determinants for Lens Differentiation, Structure, and Transparency
Joshua Disatham, Lisa Brennan, Ales Cvekl, et al.
Page
of 5