Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0014070 (encephalomyelitis)
13,017 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Post-rabies vaccine encephalomyelitis, postinfectious encephalomyelitis, and acute inflammatory demyelinating polyneuropathy are all monophasic, inflammatory, demyelinating diseases that appear to be autoimmune in pathogenesis and induced by prior antigenic stimulation or infection. The primary encephalitogen for rabies vaccine and postinfectious encephalomyelitis appears to be MBP, with a possible augmenting role for the myelin glycolipids. The primary neuritogen in AIDP may be a glycolipid, but this has not been clearly established. The mechanism by which a prior, apparently unrelated, stimulus leads to postinfectious encephalomyelitis or AIDP is unclear, but abnormalities of immune regulation, possible molecular mimicry between infectious agents and neural constituents, and genetic susceptibility may each play important roles (Table 1).
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PMID:Monophasic autoimmune inflammatory diseases of the CNS and PNS. 197 Jan 92

Intravenous administration of neuroantigen-coupled syngeneic splenocytes is an efficient regimen for Ag-specific regulation of relapsing experimental autoimmune encephalomyelitis (R-EAE) at the effector level of the disease process. Treatment of SJL/J mice with splenocytes coupled with mouse spinal cord homogenate (MSCH) or myelin proteolipid protein after immunization with mouse spinal cord homogenate in CFA, but before the onset of clinical signs specifically inhibited the expression of neuroantigen-specific delayed-type hypersensitivity responses and significantly suppressed the onset, severity, and the duration of clinical and histologic signs of R-EAE. In contrast, the clinical course of R-EAE was not affected by tolerization with myelin basic protein-coupled splenocytes, indicating that proteolipid protein-specific responses play the major role in active MSCH-induced R-EAE. To ensure a physical and temporal separation between the inductive and effector stages of the disease process, we also examined the effects of neuroantigen-coupled splenocytes on adoptive R-EAE. Treatment of recipient mice with MSCH-coupled splenocytes up to 6 days after the transfer of MBP-primed lymph node cells induced a dose-dependent, profound, and long-lasting inhibition of clinical and histologic signs of adoptive R-EAE. The demonstration that splenocytes coupled with a heterogeneous mixture of neuroantigens (i.e., MSCH) can inhibit established immune responses suggests that this methodology has potential for regulating ongoing immune responses associated with autoimmune disorders or chronic graft rejection in which the specific (auto)Ag has yet to be identified.
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PMID:Regulation of the effector stages of experimental autoimmune encephalomyelitis via neuroantigen-specific tolerance induction. 235 69

Experimental allergic encephalomyelitis (EAE) was induced in Lewis rats using several different immunization protocols, and draining lymph node cells from these animals were assayed for proliferation against heterologous, homologous, and syngeneic MBP, and syngeneic spinal cord. Proliferative responses were largely stimulated by nonsyngeneic antigenic determinants and correlated better with the antigen used to induce EAE than with signs of autoimmune disease. Lymph node cells from rats immunized with either guinea pig spinal cord or syngeneic MBP did not proliferate measurably when restimulated in vitro with syngeneic MBP, yet lymphoid cells from these animals were enhanced in their capacity to transfer EAE following in vitro stimulation with syngeneic MBP.
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PMID:Experimental allergic encephalomyelitis: clinical disease and enhanced cellular transfer in the absence of lymphocyte proliferative responses against syngeneic MBP. 242 18

Experimental autoimmune encephalomyelitis (EAE) in the Lewis rat is characteristically a monophasic paralytic disorder. Recovered rats are thereafter immune to EAE induced by injection of guinea pig basic protein (GP-BP) in complete Freund's adjuvant (CFA), but they are still susceptible to EAE induced by an encephalitogenic T-lymphocyte line (BP-1). Induction of active EAE or injection of a sublethal dose of activated BP-1 cells resulted in a monophasic episode of EAE, followed by recovery of normal neurologic function. Repeated challenges with activated BP-1 cells, however, induced unremitting neurologic signs marked by loss of tail tonicity and incontinence, which persisted for more than 6 months. Histologically, the spinal cord of affected rats revealed attenuation of MBP staining (demyelination) and moderate-to-extensive gliosis associated with increased size of intervening spaces. Inflammatory cell lesions, however, were notably absent. Biophysical analysis of isolated spinal cord myelin from affected rats demonstrated a distorted distribution in subfraction densities and the appearance of extra-myelin proteins in the light myelin subfraction. Immunologically, chronically affected animals were unresponsive to the encephalitogenic determinant on GP-BP, although other BP determinants elicited strong delayed type hypersensitivity (DTH) reactions in rats immunized initially with GP-BP in CFA. These data show that ongoing neurologic dysfunction can be induced in the Lewis rat by a GP-BP specific T-lymphocyte line; they suggest that unremitting clinical signs can persist in the absence both of inflammatory lesions in the CNS and of pronounced immunologic responsiveness to the encephalitogenic determinant of GP-BP.
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PMID:Chronic neurologic dysfunction and demyelination induced in Lewis rats by repeated injections of encephalitogenic T-lymphocyte lines. 243 77

Experimental allergic encephalomyelitis (EAE) is an induced autoimmune disease mediated by CD4+ T lymphocytes. Analysis of T cell receptors of myelin basic protein-specific encephalitogenic T cell clones derived from six different PL/J (H-2u) or (PL/J x SJL) F1 (H-2uxs) mice revealed a limited heterogeneity in primary structure. In vivo, the majority of T lymphocytes recognize the N-terminal MBP-nonapeptide in association with I-Au and utilize the V beta 8 gene element. cDNA-sequencing showed that all T cell receptors from a panel of such T cell clones, grown in vitro, share the same V alpha gene segment. Despite heterogeneity in the D-J regions, the clones unexpectedly display a striking similarity in fine specificity. Based on these results, prevention and reversal of autoimmune disease with V beta 8-specific monoclonal antibodies was achieved.
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PMID:Limited heterogeneity of T cell receptors from lymphocytes mediating autoimmune encephalomyelitis allows specific immune intervention. 245 3

Plasma IgG, IgA and IgM responses in various stages of chronic relapsing experimental allergic encephalomyelitis (CR-EAE) were investigated by ELISA and rocket immunoelectrophoresis. Autoantibody levels were elevated in acute EAE but immunoglobulin responses were maximal in chronic disease. Plasma IgG and IgA specific for the whole cord, myelin and MBP correlated closely with the clinical signs of post-acute disease; in age-matched groups, levels were lower in animals in remission or with no further disease than in those in relapse or with a stable chronic disease course. Sequential sampling revealed a significant increase in neuroantigen-specific IgG (with MBP as the dominant autoantigen) during the onset of a relapse. Lipid-specific antibody levels were raised throughout CR-EAE but constituted only a small proportion of the total response against neural antigens. Determination of total immunoglobulin concentrations suggested a general suppression of IgG responses in guinea pigs in remission. The strong correlations found between antibody levels and the severity of chronic disease provide further evidence that antibody-mediated mechanisms can play a major role in the pathogenesis of CR-EAE.
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PMID:Plasma immunoglobulin responses and disease severity in chronic relapsing experimental allergic encephalomyelitis. 246 98

The encephalitogenic and proliferative responses of Lewis rat lymphocytes were defined by use of synthetic peptide GP68-84, representing the 68-84 sequence of guinea pig myelin basic protein (GPMBP), and otherwise identical peptides containing substitutions of either A75 or P80 residues. The comparative activities of these peptides were tested in the following bioassays: 1) active induction of experimental autoimmune encephalomyelitis (EAE), 2) potentiation of EAE transfer activity by MBP- or peptide-sensitized lymph node cells (LNC), 3) in vitro proliferation of MBP- or peptide-sensitized LNC, and 4) in vitro proliferation of an encephalitogenic T cell line. The GP68-84 peptide exhibited potent activity in all four bioassays. In contrast, [A75]GP68-84 and [P80]GP68-84 exhibited a selective loss of certain activities while retaining activity in other bioassays. For example, LNC were activated by culture with [A75]GP68-84 to express potentiated EAE transfer activity. Furthermore, [A75]GP68-84 and GP68-84 were equipotent in stimulating the proliferation of the encephalitogenic T cell line. However, [A75]GP68-84 was virtually inactive in assays measuring the induction of EAE or the proliferation of either GPMBP- or [A75]GP68-84-sensitized LNC. Conversely, the [P80]GP68-84 peptide actively induced EAE and potentiated EAE cellular transfer activity but was incapable of stimulating proliferation of either GPMBP-sensitized LNC or an encephalitogenic T cell line. When [P80]GP68-84 was used for sensitization, in vitro proliferation of LNC was stimulated, but only by MBP sequences containing a P80 substitution. Overall, these results indicate that at least two structurally distinct T cell determinants of GP68-84 regulate functionally diverse encephalitogenic and proliferative activities of EAE-associated T cells.
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PMID:Encephalitogenic and proliferative responses of Lewis rat lymphocytes distinguished by position 75- and 80-substituted peptides of myelin basic protein. 246 32

Experimental autoimmune encephalomyelitis was induced in a Lewis rat by sensitization with synthetic peptide GP68-86, representing the 68-86 sequence of guinea pig myelin basic protein (GPMBP). To delineate T cell determinants of GP68-86, lymph node cells from this rat were activated in culture with GP68-86 and were fused with cells of the mouse thymoma BW5147. The resultant hybrids were cloned by limiting dilution and screened for GP68-86-evoked secretion of IL2 in the presence of rat splenocytes. Twelve T cell hybrids derived in this manner were tested for reactivity to different heterologous species of MBP as well as to substituted or truncated analogs of GP68-86. The hybrids generally exhibited potent reactivity to GPMBP but differed markedly in their reactivity to autologous rat MBP (RMBP). A few exceptional hybrids exhibited crossreactivity with peptides in which native serine75 or serine80 residues of GPMBP were substituted with either alanine75 (A75) or proline80 (P80) residues. These cross-reactive hybrids also possessed high levels of anti-RMBP reactivity. The remaining hybrids were unresponsive to the A75 and P80 substituted peptides and, with one exception, had relatively low levels of anti-RMBP reactivity. Unique reactivity patterns were also revealed by hybrid responses to peptides having modified C-terminal 84-86 residues. In summary, the contrasting fine specificities of different hybrids indicated that several distinct clones of T cells mediate the immune response of Lewis rats against the 68-86 region of GPMBP. Furthermore, heterogeneity in the hybrid response to "self" RMBP may reflect substantial differences in encephalitogenic potency of the T cell clones from which these hybrids were derived.
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PMID:Clonotypic heterogeneity of Lewis rat T cells specific for the encephalitogenic 68-86 region of myelin basic protein. 247 60

Down-regulatory phenomena have been described in several experimental models of tissue-specific, T-cell-mediated autoimmunity. For example, resistance to active induction of experimental autoimmune encephalomyelitis (EAE) can be induced by pretreating animals with non-pathogenic inocula of autoantigen or effector cells. Moreover, animals that have recovered from one EAE episode are resistant to subsequent induction of EAE. In some models, resistance to EAE has been transferred with immune cells to naive recipients. These experiments, which were based on transfers of unseparated immune cell populations, are difficult to interpret. Immune suppression circuits are known to be complex and involve various distinct cellular subsets. To further complicate the issue, resistance to EAE can be transferred not only by suppressor cells, but also by encephalitogenic effector cells injected in 'subclinical' doses. We describe now the isolation of homogeneous T lymphocyte lines from the spleens of Lewis rats that had recovered from T-cell-mediated EAE (tEAE) caused by the MBP-specific T cell line S1. These spleen-derived T line cells express the CD8 phenotype and specifically respond to determinants on the inducing S1 line, but not to the autoantigen MBP. Furthermore, the anti-S1 cells selectively lyse the encephalitogenic S1 T line in vitro and efficiently neutralize their encephalitogenic capacity in vivo.
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PMID:Suppression of experimentally induced autoimmune encephalomyelitis by cytolytic T-T cell interactions. 296 94

The studies concerned the effect of cyclophosphamide on immunological and biochemical indices of MBP-induced encephalomyelitis. Unlike isoprinosine, cyclophosphamide was observed to exert irregular effect. Contrary to the expected, the results obtained in some experimental systems show increased level of the parameters tested-IgG, antitrypsin and sialic acid. A suggestion has been put forward that the reason of the above phenomenon may be attributed not only to the type of drug applied but also to different course of treatment with regard to various affinity of the drug (different doses) to functionally different lymphocytes (suppressor, helper).
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PMID:Cyclophosphamide in allergic encephalomyelitis in chickens. 359 38


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