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Radiation Research|May 20, 1998
Unlike tenascin-X, tenascin-C is highly up-regulated in pig cutaneous and underlying muscle tissue developing fibrosis after necrosis induced by very high-dose gamma radiationC Geffrotin, Y Tricaud, F Crechet, et al.Animal Genetics|January 1, 1990
The swine steroid 21-hydroxylase gene (CYP21): cloning and mapping within the swine leucocyte antigen complexC Geffrotin, P Chardon, D F de Andres-Cara, et al.Biochimica Et Biophysica Acta|December 13, 2000
Opposite regulation of tenascin-C and tenascin-X in MeLiM swine heritable cutaneous malignant melanomaC Geffrotin, V Horak, F Créchet, et al.Annales De Genetique|January 1, 1984
Assignment of MHC in swine to chromosome 7 by in situ hybridization and serological typingC Geffrotin, C P Popescu, E P Cribiu, et al.Immunogenetics|January 1, 1985
Analysis of the sheep MHC using HLA class I, II, and C4 cDNA probesP Chardon, M Kirszenbaum, P R Cullen, et al.Free Radical Biology & Medicine|January 3, 2001
Antifibrotic action of Cu/Zn SOD is mediated by TGF-beta1 repression and phenotypic reversion of myofibroblastsM C Vozenin-Brotons, V Sivan, N Gault, et al.Pigment Cell & Melanoma Research|April 23, 2008
Identification of differentially expressed genes in spontaneously regressing melanoma using the MeLiM swine modelF Rambow, O Malek, C Geffrotin, et al.Genomics|March 20, 1995
The BAT1 gene in the MHC encodes an evolutionarily conserved putative nuclear RNA helicase of the DEAD familyL J Peelman, P Chardon, M Nunes, et al.Pageof 2