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Translational Vision Science & Technology|May 16, 2023
Aflibercept Suppression of Angiopoietin-2 in a Rabbit Retinal Vascular Hyperpermeability ModelClaudia Lange, Reimo Tetzner, Tobias Strunz, et al.Journal of Translational Medicine|March 14, 2026
An integrative framework for drug target discovery bridging clinical trial and genetic data insightsJohanna Mielke, Tobias Strunz, Jeongah Lee, et al.Cells|September 28, 2021
Assigning Co-Regulated Human Genes and Regulatory Gene ClustersTobias Strunz, Martin Kellner, Christina Kiel, et al.Cells|October 14, 2020
Learning from Fifteen Years of Genome-Wide Association Studies in Age-Related Macular DegenerationTobias Strunz, Christina Kiel, Bastian L Sauerbeck, et al.International Journal of Molecular Sciences|June 10, 2022
Genetic Association Analysis of Anti-VEGF Treatment Response in Neovascular Age-Related Macular DegenerationTobias Strunz, Michael Pöllmann, Maria-Andreea Gamulescu, et al.Scientific Reports|June 24, 2021
Epistatic interactions of genetic loci associated with age-related macular degenerationChristina Kiel, Christoph A Nebauer, Tobias Strunz, et al.Scientific Reports|February 2, 2020
A transcriptome-wide association study based on 27 tissues identifies 106 genes potentially relevant for disease pathology in age-related macular degenerationTobias Strunz, Susette Lauwen, Christina Kiel, et al.Human Molecular Genetics|October 4, 2021
Seed sequence polymorphism rs2168518 and allele-specific target gene regulation of hsa-miR-4513Christina Kiel, Tobias Strunz, Daniele Hasler, et al.International Journal of Molecular Sciences|April 17, 2020
A Circulating MicroRNA Profile in a Laser-Induced Mouse Model of Choroidal NeovascularizationChristina Kiel, Patricia Berber, Marcus Karlstetter, et al.Investigative Ophthalmology & Visual Science|July 2, 2026
Aflibercept and Faricimab Equipotently Restore Endothelial Barrier FunctionTobias Strunz, Martin Rao, Florian Prinz, et al.Pageof 2