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Nature Protocols|June 10, 2016
Isolation, culture and characterization of primary mouse RPE cellsRosario Fernandez-Godino, Donita L Garland, Eric A PierceAdvances in Experimental Medicine and Biology|October 3, 2015
Extracellular Matrix Alterations and Deposit Formation in AMDRosario Fernandez-Godino, Eric A Pierce, Donita L GarlandScientific Reports|May 18, 2021
Complement C5 is not critical for the formation of sub-RPE deposits in Efemp1 mutant miceDonita L Garland, Eric A Pierce, Rosario Fernandez-GodinoHuman Molecular Genetics|July 23, 2015
A local complement response by RPE causes early-stage macular degenerationRosario Fernandez-Godino, Donita L Garland, Eric A PierceExperimental Eye Research|July 23, 2003
Movement of cysteine in intact monkey lenses: the major site of entry is the germinative regionMatthew H J Sweeney, Donita L Garland, Roger J W TruscottAnnals of the New York Academy of Sciences|June 23, 2009
Comparative proteomic analysis of antibiotic-sensitive and insensitive isolates of Orientia tsutsugamushiChien-Chung Chao, Donita L Garland, Gregory A Dasch, et al.Biochemistry|July 28, 2004
Post-translational modifications of aquaporin 0 (AQP0) in the normal human lens: spatial and temporal occurrenceLauren E Ball, Donita L Garland, Rosalie K Crouch, et al.Progress in Retinal and Eye Research|November 10, 2019
Spatiotemporal changes in the human lens proteome: Critical insights into long-lived proteinsKevin L Schey, Zhen Wang, Michael G Friedrich, et al.Experimental Eye Research|June 25, 2016
Spatial distributions of phosphorylated membrane proteins aquaporin 0 and MP20 across young and aged human lensesDanielle B Gutierrez, Donita L Garland, John H Schwacke, et al.Investigative Ophthalmology & Visual Science|October 28, 2003
Water permeability of C-terminally truncated aquaporin 0 (AQP0 1-243) observed in the aging human lensLauren E Ball, Mark Little, Mark W Nowak, et al.Pageof 2