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1.
Weigand, M.* ; Hauck, S.M. ; Deeg, C.A.* & Degroote, R.L.*: Deviant proteome profile of equine granulocytes associates to latent activation status in organ specific autoimmune disease. J. Proteomics 230:103989 (2021)
2.
Wörn, M.* et al.: Proteasuria in nephrotic syndrome–quantification and proteomic profiling. J. Proteomics 230:103981 (2021)
3.
Deeg, C.A.* et al.: CD11d is a novel antigen on chicken leukocytes. J. Proteomics 225:103876 (2020)
4.
Weigand, M.* et al.: Proteome profile of neutrophils from a transgenic diabetic pig model shows distinct changes. J. Proteomics 224:103843 (2020)
5.
Kammerl, I.E. et al.: Dissecting the molecular effects of cigarette smoke on proteasome function. J. Proteomics 193, 1-9 (2019)
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.
Vehmas, A.P.* et al.: Liver lipid metabolism is altered by increased circulating estrogen to androgen ratio in male mouse. J. Proteomics 133, 66-75 (2016)
8.
Bi, Z. et al.: RNAi-mediated downregulation of poplar Plasma membrane Intrinsic Proteins (PIPs) changes plasma membrane proteome composition and affects leaf physiology. J. Proteomics 128, 321-332 (2015)
9.
Yentrapalli, R. et al.: Quantitative and integrated proteome and microRNA analysis of endothelial replicative senescence. J. Proteomics 126, 12-23 (2015)
10.
Kerner, R.C. et al.: Large-scale protein analysis of European beech trees following four vegetation periods of twice ambient ozone exposure. J. Proteomics 109, 417-435 (2014)
11.
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)
12.
Han, Y.* et al.: Proteomic investigation of the interactome of FMNL1 in hematopoietic cells unveils a role in calcium-dependent membrane plasticity. J. Proteomics 78, 72-82 (2013)
13.
Korfei, M.* et al.: Comparative proteome analysis of lung tissue from patients with idiopathic pulmonary fibrosis (IPF), non-specific interstitial pneumonia (NSIP) and organ donors. J. Proteomics 85, 109-128 (2013)
14.
Oetjen, J.* et al.: MRI-compatible pipeline for three-dimensional MALDI imaging mass spectrometry using PAXgene fixation. J. Proteomics 90, 52-60 (2013)
15.
Pallua, J.D.* et al.: MALDI-MS tissue imaging identification of biliverdin reductase B overexpression in prostate cancer. J. Proteomics 91, 500-514 (2013)
16.
Azimzadeh, O. et al.: Label-free protein profiling of formalin-fixed paraffin-embedded (FFPE) heart tissue reveals immediate mitochondrial impairment after ionising radiation. J. Proteomics 75, 2384-2395 (2012)
17.
Degroote, R.L.* et al.: Altered expression of talin 1 in peripheral immune cells points to a significant role of the innate immune system in spontaneous autoimmune uveitis. J. Proteomics 75, 4536-4544 (2012)
18.
Elsner, M. et al.: MALDI imaging mass spectrometry reveals COX7A2, TAGLN2 and S100-A10 as novel prognostic markers in Barrett's adenocarcinoma. J. Proteomics 75, 4693-4704 (2012)
19.
Hauck, S.M. et al.: Label-free LC-MSMS analysis of vitreous from autoimmune uveitis reveals a significant decrease in secreted Wnt signalling inhibitors DKK3 and SFRP2. J. Proteomics 75, 4545-4554 (2012)
20.
Kerner, R. et al.: Comprehensive proteome analysis in Cenococcum geophilum Fr. as a tool to discover drought-related proteins. J. Proteomics 75, 3707-3719 (2012)