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Proteomics. Clinical Applications|December 8, 2010
Proteome analysis of human foetal, aged and advanced nuclear cataract lensesPeter G Hains, Roger J W TruscottOphthalmic Research|January 7, 2006
Presbyopia: the first stage of nuclear cataract?S J McGinty, R J W TruscottBiochimica Et Biophysica Acta|September 2, 2008
Proteomic analysis of the oxidation of cysteine residues in human age-related nuclear cataract lensesPeter G Hains, Roger J W TruscottJournal of Proteome Research|September 11, 2007
Post-translational modifications in the nuclear region of young, aged, and cataract human lensesPeter G Hains, Roger J W TruscottInvestigative Ophthalmology & Visual Science|May 22, 2009
Membrane association of proteins in the aging human lens: profound changes take place in the fifth decade of lifeMichael G Friedrich, Roger J W TruscottProteomics. Clinical Applications|January 25, 2014
Old proteins and the Achilles heel of mass spectrometry. The role of proteomics in the etiology of human cataractRoger J W Truscott, Michael G FriedrichInvestigative Ophthalmology & Visual Science|January 8, 2010
Age-dependent deamidation of lifelong proteins in the human lensPeter G Hains, Roger J W TruscottBiochimica Et Biophysica Acta|May 2, 2002
Identifying sites of attachment of UV filters to proteins in older human lensesJ A Aquilina, R J W TruscottExperimental Eye Research|February 22, 2008
The stiffness of human cataract lenses is a function of both age and the type of cataractKarl R Heys, Roger J W TruscottBiochimica Et Biophysica Acta|August 31, 2015
The etiology of human age-related cataract. Proteins don't last foreverRoger J W Truscott, Michael G FriedrichPageof 11