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Number of items: 28.

Geiger, P; Barben, M; Grimm, C; Samardzija, M (2015). Blue light-induced retinal lesions, intraretinal vascular leakage and edema formation in the all-cone mouse retina. Cell Death and Disease, 6:e1985.

Ail, D; Rüfenacht, V; Caprara, C; Samardzija, M; Kast, B; Grimm, C (2015). Increased expression of the proton-sensing G protein-coupled receptor Gpr65 during retinal degeneration. Neuroscience, 301:496-507.

Samardzija, M; Caprara, C; Heynen, S R; Willcox DeParis, S; Meneau, I; Traber, G; Agca, C; von Lintig, J; Grimm, C (2014). A mouse model for studying cone photoreceptor pathologies. Investigative Ophthalmology & Visual Science [IOVS], 55(5):5304-5313.

Narfstrom, K; Jalomaki, S; Mowat, F; Samardzija, M; Chaudieu, G; Bergstrom, T F; Bragadottir, R; Grimm, C (2014). Assessment of a Novel Pigmentary Chorioretinopathy in the Chinese Crested Dog. JSM Ophthalmology, 2(2):1018.

Samardzija, M; Grimm, C (2014). Mouse models for cone degeneration. Advances in Experimental Medicine and Biology, 801:567-573.

Caprara, C; Britschgi, C; Samardzija, M; Grimm, C (2014). The erythropoietin receptor is not required for the development, function, and aging of rods and cells in the retinal periphery. Molecular Vision, 20:307-324.

Heynen, S R; Meneau, I; Caprara, C; Samardzija, M; Imsand, C; Levine, E M; Grimm, C (2013). CDC42 is required for tissue lamination and cell survival in the mouse retina. PLoS ONE, 8(1):e53806.

Cachafeiro, M; Bemelmans, A P; Samardzija, M; Afanasieva, T; Pournaras, J A; Grimm, C; Kostic, C; Philippe, S; Wenzel, A; Arsenijevic, Y (2013). Hyperactivation of retina by light in mice leads to photoreceptor cell death mediated by VEGF and retinal pigment epithelium permeability. Cell Death and Disease, 4:e781.

Samardzija, M; Wariwoda, H; Imsand, C; Huber, P; Heynen, S R; Gubler, A; Grimm, C (2012). Activation of survival pathways in the degenerating retina of rd10 mice. Experimental Eye Research, 99:17-26.

Egger, A; Samardzija, M; Sothilingam, V; Tanimoto, N; Lange, C; Salatino, S; Fang, L; Garcia-Garrido, M; Beck, S; Okoniewski, M J; Neutzner, A; Seeliger, M W; Grimm, C; Handschin, C (2012). PGC-1a determines light damage susceptibility of the murine retina. PLoS ONE, 7(2):e31272.

Lange, C; Caprara, C; Tanimoto, N; Beck, S; Huber, G; Samardzija, M; Seeliger, M; Grimm, C (2011). Retina-specific activation of a sustained hypoxia-like response leads to severe retinal degeneration and loss of vision. Neurobiology of Disease, 41(1):119-130.

Kostic, C; Crippa, S V; Pignat, V; Bemelmans, A P; Samardzija, M; Grimm, C; Wenzel, A; Arsenijevic, Y (2011). Gene therapy regenerates protein expression in cone photoreceptors in Rpe65R91W/R91W mice. PLoS ONE, 6(2):e16588.

Caprara, C; Thiersch, M; Lange, C; Joly, S; Samardzija, M; Grimm, C (2011). HIF1A is essential for the development of the intermediate plexus of the retinal vasculature. Investigative Ophthalmology and Visual Science, 52(5):2109-2117.

Lange, C; Heynen, S R; Tanimoto, N; Thiersch, M; Le, Y Z; Meneau, I; Seeliger, M W; Samardzija, M; Caprara, C; Grimm, C (2011). Normoxic activation of hypoxia-inducible factors in photoreceptors provides transient protection against light-induced retinal degeneration. Investigative Ophthalmology and Visual Science, 52(8):5872-5880.

Joly, S; Pernet, V; Samardzija, M; Grimm, C (2011). PAX6-positive Müller glia cells express cell cycle markers but do not proliferate after photoreceptor injury in the mouse retina. Glia, 59(7):1033-1046.

Heynen, S R; Tanimoto, N; Joly, S; Seeliger, M W; Samardzija, M; Grimm, C (2011). Retinal degeneration modulates intracellular localization of CDC42 in photoreceptors. Molecular Vision, 17:2934-2946.

Lange, C; Thiersch, M; Samardzija, M; Bürgi, S; Joly, S; Grimm, C (2010). LIF-dependent JAK3 activation is not essential for retinal degeneration. Journal of Neurochemistry, 113(5):1210-1220.

Lange, C; Thiersch, M; Samardzija, M; Grimm, C (2010). The differential role of Jak/STAT signaling in retinal degeneration. In: Anderson, R E; LaVail, M M; Hollyfield, J G. Retinal Degenerative Diseases; Laboratory and Therapeutic Investigations. New York: Springer, 601-607.

Samardzija, M; Neuhauss, S C F; Joly, S; Kurz-Levin, M; Grimm, C (2010). Animal models for retinal degeneration. In: Pang, I-H; Clark, A F. Animal Models of Retinal Disease. New York: The Humana Press Inc, 51-79.

Thiersch, M; Lange, C; Joly, S; Heynen, S; Le, Y Z; Samardzija, M; Grimm, C (2009). Retinal neuroprotection by hypoxic preconditioning is independent of hypoxia-inducible factor-1a expression in photoreceptors. European Journal of Neuroscience, 29(12):2291-2302.

Joly, S; Francke, M; Ulbricht, E; Beck, S; Seeliger, M W; Hirrlinger, P; Hirrlinger, J; Lang, K S; Zinkernagel, M; Odermatt, B; Samardzija, M; Reichenbach, A; Grimm, C; Remé, C E (2009). Cooperative phagocytes: resident microglia and bone marrow immigrants remove dead photoreceptors in retinal lesions. American Journal of Pathology, 174(6):2310-2323.

Bürgi, S; Samardzija, M; Grimm, C (2009). Endogenous leukemia inhibitory factor protects photoreceptor cells against light-induced degeneration. Molecular Vision, 15:1631-1637.

Samardzija, M; Tanimoto, N; Kostic, C; Beck, S; Oberhauser, V; Joly, S; Thiersch, M; Fahl, E; Arsenijevic, Y; von Lintig, J; Wenzel, A; Seeliger, M W; Grimm, C (2009). In conditions of limited chromophore supply rods entrap 11-cis-retinal leading to loss of cone function and cell death. Human Molecular Genetics, 18(7):1266-1275.

Joly, S; Samardzija, M; Wenzel, A; Thiersch, M; Grimm, C (2009). Nonessential role of beta3 and beta5 integrin subunits for efficient clearance of cellular debris after light-induced photoreceptor degeneration. Investigative Ophthalmology and Visual Science, 50(3):1423-1432.

Thiersch, M; Raffelsberger, W; Frigg, E; Samardzija, M; Wenzel, A; Poch, O; Grimm, C (2008). Analysis of the retinal gene expression profile after hypoxic preconditioning identifies candidate genes for neuroprotection. BMC Genomics, 9:73.

Joly, S; Lange, C; Thiersch, M; Samardzija, M; Grimm, C (2008). Leukemia inhibitory factor extends the lifespan of injured photoreceptors in vivo. Journal of Neuroscience, 28(51):13765-13774.

Samardzija, M; von Lintig, J; Tanimoto, N; Oberhauser, V; Thiersch, M; Remé, C E; Seeliger, M W; Grimm, C; Wenzel, A (2008). R91W mutation in Rpe65 leads to milder early-onset retinal dystrophy due to the generation of low levels of 11-cis-retinal. Human Molecular Genetics, 17(2):281-292.

Thiersch, M; Raffelsberger, W; Frigg, E; Samardzija, M; Blank, P; Poch, O; Grimm, C (2008). The hypoxic transcriptome of the retina: identification of factors with potential neuroprotective activity. In: Anderson, R E. Recent Advances in Retinal Degeneration. New York: Springer, 75-85.

This list was generated on Sun Nov 19 03:15:10 2017 CET.