Pathogenesis of Multiple Sclerosis: What Can We Learn from the Cuprizone Model
Author:
Publisher
Humana Press
Link
http://link.springer.com/content/pdf/10.1007/978-1-60761-720-4_20.pdf
Reference66 articles.
1. Bennett JL, Stüve O (2009) Update on inflammation, neurodegeneration, and immunoregulation in multiple sclerosis: therapeutic implications. Clin Neuropharmacol 32(3):121–132
2. Linthicum DS, Munoz JJ, Blaskett A (1982) Acute experimental autoimmune encephalomyelitis in mice. I. Adjuvant action of Bordetella pertussis is due to vasoactive amine sensitization and increased vascular permeability of the central nervous system. Cell Immunol 73(2):299–310
3. Westarp ME, Wekerle H, Ben-Nun A et al (1987) T lymphocyte line-mediated experimental allergic encephalomyelitis – a pharmacologic model for testing of immunosuppressive agents for the treatment of autoimmune central nervous system disease. J Pharmacol Exp Ther 242(2):614–620
4. Steinman L (2010) Mixed results with modulation of TH-17 cells in human autoimmune diseases. Nat Immunol 11(1):41–44
5. Crome SQ, Wang AY, Levings MK (2010) Translational mini-review series on TH17 cells: function and regulation of human T helper 17 cells in health and disease. Clin Exp Immunol 159(2):109–119
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