We have shown that the serum of patients with Guillain Barre Syndrome (GBS) contain antibodies (Ab) that can react with peripheral nerve myelin (PNM) and activate the complement system. Recently, we discovered that some of these Ab specifically react with a neutral glycolipid (NGL) of human PNM> These Ab that correlated with disease activity and mediated in vitro demyelination also cross-reacted with Forssman glycolipid, a common component of various infectious agents and some mammalian membranes. In this proposal, we will study the role of Ab to peripheral nerve antigens in the production of inflammatory demyelination of peripheral nerve (PN). Specifically, we propose: 1. To study the heterogeneity of antigens bound by anti-PNM Ab, 2. to determine the ability of these Ab to mediate in vitro demyelination as well as cytolysis of rodent Schwann cells. 3. To determine the specific epitopes on Forssman that can react with Ab from GBS patients and anti-Forssman Ab from patients with acute viral or bacterial infection without peripheral demyelination. 4. We will also determine the ability of afinity purified and mAb to demyelinate in vivo. 5. We will further explore whether stimulation of a complement receptor, CR2, on the surface of B cells of GBS and healthy subjects participates in anti-PNM/NGL Ab production. These problems will be explored using, in vitro Schwann cells and dorsal root ganglion cultures and various assays using fluid phase C1 fixation and HPTLC immune blots. Determination of the antigens bound by anti-PNM Ab including the neutral glycolipid, the antigen distribution on potential immune targets such as PNM and Schwann cells and the ability of these Ab to experimentally induce demyelination are all important issues which would expand our knowledge of the roles of Ab in the pathogenesis of a human disease.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Specialized Center (P50)
Project #
2P50NS020022-09A1
Application #
3846755
Study Section
Project Start
Project End
Budget Start
Budget End
Support Year
9
Fiscal Year
1992
Total Cost
Indirect Cost
Name
University of Maryland Baltimore
Department
Type
DUNS #
003255213
City
Baltimore
State
MD
Country
United States
Zip Code
21201
Dashiell, S M; Rus, H; Koski, C L (2000) Terminal complement complexes concomitantly stimulate proliferation and rescue of Schwann cells from apoptosis. Glia 30:187-98
Dhib-Jalbut, S; Xia, J; Rangaviggula, H et al. (1999) Failure of measles virus to activate nuclear factor-kappa B in neuronal cells: implications on the immune response to viral infections in the central nervous system. J Immunol 162:4024-9
Dashiell, S M; Koski, C L (1999) Sublytic terminal complement complexes decrease P0 Gene expression in Schwann cells. J Neurochem 73:2321-30
Cheng, G; Nazar, A S; Shin, H S et al. (1998) IP-10 gene transcription by virus in astrocytes requires cooperation of ISRE with adjacent kappaB site but not IRF-1 or viral transcription. J Interferon Cytokine Res 18:987-97
Jiang, H; Williams, G J; Dhib-Jalbut, S (1997) The effect of interferon beta-1b on cytokine-induced adhesion molecule expression. Neurochem Int 30:449-53
Dashiell, S M; Vanguri, P; Koski, C L (1997) Dibutyryl cyclic AMP and inflammatory cytokines mediate C3 expression in Schwann cells. Glia 20:308-21
Klyushnenkova, E N; Vanguri, P (1997) Ia expression and antigen presentation by glia: strain and cell type-specific differences among rat astrocytes and microglia. J Neuroimmunol 79:190-201
Vanguri, P; Cho, S Y; Chi, C M (1996) Role of muIP-10 in interferon-gamma induction of Ia in rat astrocytes. Mol Immunol 33:1079-87
Wojcik, W J; Swoveland, P; Zhang, X et al. (1996) Chronic intrathecal infusion of phosphorothioate or phosphodiester antisense oligonucleotides against cytokine responsive gene-2/IP-10 in experimental allergic encephalomyelitis of lewis rat. J Pharmacol Exp Ther 278:404-10
Dhib-Jalbut, S; Gogate, N; Jiang, H et al. (1996) Human microglia activate lymphoproliferative responses to recall viral antigens. J Neuroimmunol 65:67-73

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