Author: Held, Katherine S; Glass, William G; Orlovsky, Yevgeniya I; Shamberger, Kimberly A; Petley, Ted D; Branigan, Patrick J; Carton, Jill M; Beck, Heena S; Cunningham, Mark R; Benson, Jacqueline M; Lane, Thomas E
                    Title: Generation of a protective T-cell response following coronavirus infection of the central nervous system is not dependent on IL-12/23 signaling.  Cord-id: ljypiy5o  Document date: 2008_1_1
                    ID: ljypiy5o
                    
                    Snippet: The functional role of IL-12 and IL-23 in host defense and disease following viral infection of the CNS was determined. Instillation of mouse hepatitis virus (MHV, a positive-strand RNA virus) into the CNS of mice results in acute encephalitis followed by a chronic immune-mediated demyelinating disease. Antibody-mediated blocking of either IL-23 (anti-IL-23p19) or IL-12 and IL-23 (anti-IL-12/23p40) signaling did not mute T-cell trafficking into the CNS or antiviral effector responses and mice we
                    
                    
                    
                     
                    
                    
                    
                    
                        
                            
                                Document: The functional role of IL-12 and IL-23 in host defense and disease following viral infection of the CNS was determined. Instillation of mouse hepatitis virus (MHV, a positive-strand RNA virus) into the CNS of mice results in acute encephalitis followed by a chronic immune-mediated demyelinating disease. Antibody-mediated blocking of either IL-23 (anti-IL-23p19) or IL-12 and IL-23 (anti-IL-12/23p40) signaling did not mute T-cell trafficking into the CNS or antiviral effector responses and mice were able to control viral replication within the brain. Therapeutic administration of either anti-IL-23p19 or anti-IL-12/23p40 to mice with viral-induced demyelination did not attenuate T-cell or macrophage infiltration into the CNS nor improve clinical disease or diminish white matter damage. In contrast, treatment of mice with anti-IL-12/23p40 or anti-IL-23p19 resulted in inhibition of the autoimmune model of demyelination, experimental autoimmune encephalomyelitis (EAE). These data indicate that (1) IL-12 and IL-23 signaling are dispensable in generating a protective T-cell response following CNS infection with MHV, and (2) IL-12 and IL-23 do not contribute to demyelination in a model independent of autoimmune T-cell-mediated pathology. Therefore, therapeutic targeting of IL-12 and/or IL-23 for the treatment of autoimmune diseases may offer unique advantages by reducing disease severity without muting protective responses following viral infection.
 
  Search related documents: 
                                Co phrase  search for related documents- Try single phrases listed below for: 1
 
                                Co phrase  search for related documents, hyperlinks ordered by date