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Brain, Vol. 124, No. 10, 1927-1938, October 2001
© 2001 Oxford University Press

Gene expression profiling of the nervous system in murine experimental autoimmune encephalomyelitis

Saleh M. Ibrahim1, Eilhard Mix2, Tobias Böttcher2, Dirk Koczan1, Ralf Gold3, Arndt Rolfs2 and Hans-Jürgen Thiesen1

1 Departments of Immunology and 2 Neurology, University of Rostock, Rostock and 3 The Clinical Research Group for Multiple Sclerosis and Neuroimmunology, Department of Neurology, University of Würzburg, Germany

Correspondence to: Saleh M. Ibrahim, MD, Department of Immunology, University of Rostock, Schillingallee 70, 18055 Rostock, Germany E-mail: saleh.ibrahim{at}med.uni-rostock.de

Multiple sclerosis is thought to be a polygenic disease driven by dysregulation of the immune system leading to an autoimmune response against one or several antigens of cerebral white matter tissue. Experimental autoimmune encephalomyelitis (EAE) is a mouse model that is used to study the aetiology and pathogenesis of multiple sclerosis and new therapeutic approaches. We used oligonucleotide microarrays to determine gene expression profiles of the inflamed spinal cords of EAE mice at the onset and at the peak of the disease. Of the ~11 000 genes studied, 213 were regulated differentially and 100 showed consistent differential regulation throughout the disease. Inflammation resulted in a profile of increased gene expression of immune-related molecules, extracellular matrix and cell adhesion molecules and molecules involved in cell division and transcription, and differential regulation of molecules involved in signal transduction, protein synthesis and metabolism. Of the 104 genes with defined chromosomal locations, 51 mapped to known EAE-linked quantitative trait loci and as such are putative candidate genes for susceptibility to EAE.


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