Janet C. Blanks

Complex Systems and Brain Sciences Florida Atlantic University, Boca Raton, FL, United States 
Psychometrics Psychology, System Science Engineering, Applied Mathematics
"Janet Blanks"
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Biswal MR, Prentice HM, Smith GW, et al. (2018) Cell-specific gene therapy driven by an optimized hypoxia-regulated vector reduces choroidal neovascularization. Journal of Molecular Medicine (Berlin, Germany)
Sur A, Kesaraju S, Prentice H, et al. (2014) Pharmacological protection of retinal pigmented epithelial cells by sulindac involves PPAR-α. Proceedings of the National Academy of Sciences of the United States of America. 111: 16754-9
Biswal MR, Prentice HM, Dorey CK, et al. (2014) A hypoxia-responsive glial cell-specific gene therapy vector for targeting retinal neovascularization. Investigative Ophthalmology & Visual Science. 55: 8044-53
Smith GW, Dorey CK, Prentice H, et al. (2012) The importance of hypoxia-regulated, RPE-targeted gene therapy for choroidal neovascularization. Advances in Experimental Medicine and Biology. 723: 269-77
Prentice HM, Biswal MR, Dorey CK, et al. (2011) Hypoxia-regulated retinal glial cell-specific promoter for potential gene therapy in disease. Investigative Ophthalmology & Visual Science. 52: 8562-70
Schmidt-Kastner R, Kreczmanski P, Preising M, et al. (2009) Expression of the diabetes risk gene wolframin (WFS1) in the human retina. Experimental Eye Research. 89: 568-574
Nachman-Clewner M, Giblin FJ, Dorey CK, et al. (2008) Selective degeneration of central photoreceptors after hyperbaric oxygen in normal and metallothionein-knockout mice. Investigative Ophthalmology & Visual Science. 49: 3207-15
Pang J, Cheng M, Haire SE, et al. (2006) Efficiency of lentiviral transduction during development in normal and rd mice. Molecular Vision. 12: 756-67
Pang J, Cheng M, Stevenson D, et al. (2004) Adenoviral-mediated gene transfer to retinal explants during development and degeneration. Experimental Eye Research. 79: 189-201
Rich KA, Zhan Y, Blanks JC. (1997) Migration and synaptogenesis of cone photoreceptors in the developing mouse retina. The Journal of Comparative Neurology. 388: 47-63
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