Project Details
Investigation of vascular reorganization in early AMD
Applicant
Professor Dr. Ulrich Schraermeyer, since 10/2019
Subject Area
Ophthalmology
Cell Biology
Cell Biology
Term
from 2017 to 2023
Project identifier
Deutsche Forschungsgemeinschaft (DFG) - Project number 401013432
Final Report Year
2023
No abstract available
Publications
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A new rat model of treatment-naive quiescent choroidal neovascularization induced by human VEGF165 overexpression. Biology Open.
Liu, Shan; Biesemeier, Antje K.; Tschulakow, Alexander V.; Thakkar, Harsh V.; Julien-Schraermeyer, Sylvie & Schraermeyer, Ulrich
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Melanosomes degrade lipofuscin and precursors that are derived from photoreceptor membrane turnover in the retinal pigment epithelium—an explanation for the origin of the melanolipofuscin granule. Cold Spring Harbor Laboratory.
Lyu, Yanan; Tschulakow, Alexander V. & Schraermeyer, Ulrich
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Pigment Epithelium‐Derived Factor Protects Retinal Neural Cells and Prevents Pathological Angiogenesis in an Ex Vivo Ischemia Model. Oxidative Medicine and Cellular Longevity, 2022(1).
Xi, Lei; Tikhonovich, Marina; Biesemeier, Antje; Julien-Schraermeyer, Sylvie; Schraermeyer, Ulrich & Tschulakow, Alexander V.
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Removal of RPE lipofuscin results in rescue from retinal degeneration in a mouse model of advanced Stargardt disease: Role of reactive oxygen species. Free Radical Biology and Medicine, 182, 132-149.
Fang, Yuan; Taubitz, Tatjana; Tschulakow, Alexander V.; Heiduschka, Peter; Szewczyk, Grzegorz; Burnet, Michael; Peters, Tobias; Biesemeier, Antje; Sarna, Tadeusz; Schraermeyer, Ulrich & Julien-Schraermeyer, Sylvie
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Chemiexcitation and melanin in photoreceptor disc turnover and prevention of macular degeneration. Proceedings of the National Academy of Sciences, 120(20).
Lyu, Yanan; Tschulakow, Alexander V.; Wang, Kun; Brash, Douglas E. & Schraermeyer, Ulrich
