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Marc Kantorow

Showing results (1-10 of 48) with videos related to

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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 degenerationsLisa A Brennan, Marc Kantorow
Experimental Eye Research|June 9, 2004
Molecular genetics of age-related cataractJ Fielding Hejtmancik, Marc Kantorow
Experimental Eye Research|July 7, 2020
Hypoxia regulates the degradation of non-nuclear organelles during lens differentiation through activation of HIF1aLisa Brennan, Joshua Disatham, Marc Kantorow
Investigative Ophthalmology & Visual Science|October 1, 2025
Hypoxia-Driven Histone Modifications Govern Gene Regulation for Mature Eye Lens FormationLisa Brennan, Joshua Disatham, Marc Kantorow
Experimental Eye Research|July 2, 2021
Mechanisms of organelle elimination for lens development and differentiationLisa Brennan, Joshua Disatham, Marc Kantorow
Molecular Vision|September 26, 2007
Localization and H2O2-specific induction of PRDX3 in the eye lensWanda 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 exposureLisa 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 lensLisa 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 conesErnesto F Moreira, Marc Kantorow, Ignacio R Rodriguez
Biomolecules|May 16, 2023
Multiomics Analysis Reveals Novel Genetic Determinants for Lens Differentiation, Structure, and TransparencyJoshua Disatham, Lisa Brennan, Ales Cvekl, et al.
Pageof 5

Showing results (1-10 of 48) with videos related to

Sort By:
Pageof 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 degenerationsLisa A Brennan, Marc Kantorow
Experimental Eye Research|June 9, 2004
Molecular genetics of age-related cataractJ Fielding Hejtmancik, Marc Kantorow
Experimental Eye Research|July 7, 2020
Hypoxia regulates the degradation of non-nuclear organelles during lens differentiation through activation of HIF1aLisa Brennan, Joshua Disatham, Marc Kantorow
Investigative Ophthalmology & Visual Science|October 1, 2025
Hypoxia-Driven Histone Modifications Govern Gene Regulation for Mature Eye Lens FormationLisa Brennan, Joshua Disatham, Marc Kantorow
Experimental Eye Research|July 2, 2021
Mechanisms of organelle elimination for lens development and differentiationLisa Brennan, Joshua Disatham, Marc Kantorow
Molecular Vision|September 26, 2007
Localization and H2O2-specific induction of PRDX3 in the eye lensWanda 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 exposureLisa 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 lensLisa 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 conesErnesto F Moreira, Marc Kantorow, Ignacio R Rodriguez
Biomolecules|May 16, 2023
Multiomics Analysis Reveals Novel Genetic Determinants for Lens Differentiation, Structure, and TransparencyJoshua Disatham, Lisa Brennan, Ales Cvekl, et al.
Pageof 5