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1.
Keck, M.* et al.: Proteomic profiling of epileptogenesis in a rat model: Focus on cell stress, extracellular matrix and angiogenesis. Neurobiol. Dis. 112, 119-135 (2018)
2.
Lutterberg, K.* et al.: A functional different immune capacity in cattle is associated with higher mastitis incidence. Front. Immunol. 9, 2884:2884 (2018)
3.
Schauer, M.* et al.: Interaction of septin 7 and DOCK8 in equine lymphocytes reveals novel insights into signaling pathways associated with autoimmunity. Sci. Rep. 8:12332 (2018)
4.
Blutke, A.* et al.: The Munich MIDY Pig Biobank - A unique resource for studying organ crosstalk in diabetes. Mol. Metab. 6, 931-940 (2017)
5.
Braus, B.K.* et al.: Investigation of corneal autoantibodies in horses with immune mediated keratitis (IMMK). Vet. Immunol. Immunopathol. 187, 48-54 (2017)
6.
Degroote, R.L.* et al.: Formin like 1 expression is increased on CD4 + T lymphocytes in spontaneous autoimmune uveitis. J. Proteomics 154, 102-108 (2017)
7.
Hauck, S.M. ; Lepper, M.F. ; Hertl, M.* ; Sekundo, W.* & Deeg, C.A.*: Proteome dynamics in biobanked horse peripheral blood derived lymphocytes (PBL) with induced autoimmune uveitis. Proteomics 17:1700013 (2017)
8.
Keck, M.E.* et al.: A systems level analysis of epileptogenesis-associated proteome alterations. Neurobiol. Dis. 105, 164-178 (2017)
9.
Kleinwort, K.J.H.* et al.: Retinopathy with central oedema in an INSC94Y transgenic pig model of long-term diabetes. Diabetologia 60, 1541–1549 (2017)
10.
Amann, B.* et al.: Expression and distribution pattern of aquaporin 4, 5 and 11 in retinas of 15 different species. Int. J. Mol. Sci. 17:1145 (2016)
11.
Deeg, C.A.* et al.: Aquaporin 11, a regulator of water efflux at retinal Müller glial cell surface decreases concomitant with immune-mediated gliosis. J. Neuroinflamm. 13:89 (2016)
12.
Deeg, C.A.* et al.: The INSC94Y transgenic pig: A novel model for diabetic retinopathy with macular edema. Invest. Ophthalmol. Vis. Sci. 57 (2016)
13.
Kleinwort, K.J.* et al.: Immunological characterization of intraocular lymphoid follicles in a spontaneous recurrent uveitis model. Invest. Ophthalmol. Vis. Sci. 57, 4504-4511 (2016)
14.
Walker, A.* et al.: Proteomic profiling of epileptogenesis in a rat model: Focus on inflammation. Brain Behav. Immun. 53, 138-158 (2016)
15.
Potschka, H.* et al.: Differential proteome analysis during epileptogenesis: Focus on inflammation. Epilepsia 56, 193-193 (2015)
16.
Uhl, P.B.* ; Amann, B.* ; Hauck, S.M. & Deeg, C.A.*: Novel localization of peripherin 2, the photoreceptor-specific retinal degeneration slow protein, in retinal pigment epithelium. Int. J. Mol. Sci. 16, 2678-2692 (2015)
17.
von Rueden, E.- L.* et al.: Shared pathophysiology of temporal lobe epilepsy and Alzheimer´s disease -  a differential proteomics approach in a post-status epilepticus model. Epilepsia 56, 4-4 (2015)
18.
Amann, B.* et al.: True blue: S-opsin is widely expressed in different animal species. J. Anim. Physiol. Anim. Nutr. 98, 32–42 (2014)
19.
Degroote, R.L.* et al.: Unraveling the equine lymphocyte proteome: Differential septin 7 expression associates with immune cells in equine recurrent uveitis. PLoS ONE 9:e91684 (2014)
20.
Uhl, P.B.* et al.: In situ cell surface proteomics reveals differentially expressed membrane proteins in retinal pigment epithelial cells during autoimmune uveitis. J. Proteomics 109, 50-62 (2014)