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Investigative Ophthalmology & Visual Science|October 28, 2003
Tyrosine 116 of the herpes simplex virus type 1 IEalpha22 protein is an ocular virulence determinant and potential phosphorylation siteCurtis R Brandt, Aaron W KolbJournal of Virological Methods|September 23, 2003
Rapid in vivo isolation of gene expression elements using an HSV amplicon systemChun-Yuan Huang, Curtis R BrandtExperimental Eye Research|May 13, 2016
Primate neural retina upregulates IL-6 and IL-10 in response to a herpes simplex vector suggesting the presence of a pro-/anti-inflammatory axisMonica M Sauter, Curtis R BrandtExperimental Eye Research|January 13, 2021
Knockdown of TRIM5α or TRIM11 increases lentiviral vector transduction efficiency of human Muller cellsMonica M Sauter, Curtis R BrandtJournal of Virological Methods|December 6, 2003
Enhanced isolation of low frequency herpes simplex virus recombinants using green-fluorescent protein and FACSAaron W Kolb, Curtis R BrandtBMC Genomics|June 28, 2020
Genomic nucleotide-based distance analysis for delimiting old world monkey derived herpes simplex virus speciesAaron W Kolb, Curtis R BrandtExperimental Eye Research|September 9, 2023
The RLR intrinsic antiviral system is expressed in neural retina and restricts lentiviral transduction of human Mueller cellsMonica M Sauter, Hongyu Noel, Curtis R BrandtPlos One|May 31, 2019
Correction: Using HSV-1 Genome Phylogenetics to Track Past Human MigrationsAaron W Kolb, Cécile Ané, Curtis R BrandtPlos One|October 23, 2013
Using HSV-1 genome phylogenetics to track past human migrationsAaron W Kolb, Cécile Ané, Curtis R BrandtJournal of Neuroimmunology|June 30, 2018
Toll-like receptors 4, 5, 6 and 7 are constitutively expressed in non-human primate retinal neuronsMonica M Sauter, Aaron W Kolb, Curtis R BrandtPageof 7