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Biomedical subjects

O Abramsky

Publications and source records attributed to O Abramsky.

At least 181 records · Page 10Linked to original sources

Polyclonal B-cell activity in myasthenia gravis.

Using a protein A-reverse hemolytic plaque assay, we found that some patients with myasthenia gravis have increased numbers of circulating immunoglobulin secreting cells (IgSC). This pattern was not related to drug therapy, age, sex, duration of symptoms, thymectomy, or serum levels of AChR antibody, although elevated IgSC values tended to occur in patients with active symptoms. The responses of peripheral blood mononuclear cells to pokeweed mitogen were normal. These data suggest increased in vivo polyclonal B-cell activation in some myasthenic patients, although in vitro polyclonal B-cell activation is normal.

Acetylcholine↗

Antisera to bovine oligodendroglia raised in guinea pigs bind to surface of rat oligodendroglia and Schwann cells.

Antisera against bulk isolated bovine oligodendrocytes was raised in 2 guinea pigs (GPaBO). The sera bound only to surface of rat oligodendrocytes in dissociated rat corpus callosum and cerebellar cultures and only to surface of Schwann cells in primary and secondary sciatic nerve and dorsal root ganglia cultures as determined by indirect immunofluorescence. No cells in muscle or retinal cultures bound the guinea pig antisera. The shared antigen does not seem to be either galactocerebroside (GalC) or a myelin basic protein. GPaBO can serve as a useful marker in double-label experiments to identify oligodendrocytes and Schwann cells in dissociated cultures.

Animals↗

Inhibitory effect of alpha-fetoprotein on the binding of myasthenia gravis antibody to acetylcholine receptor.

The binding of myasthenia gravis antibody acetylcholine receptor (AcChoR) as measured in vitro by Radioimmunoassay with 125I-labeled alpha-bungarotoxin (alpha-BuTx), can be blocked by amniotic fluid, maternal serum, and umbilical cord serum. This inhibitory effect is due to alpha-fetoprotein present in high concentrations in amniotic fluid and serum, as shown by: (i) selective removal of several components from amniotic fluid and serum; (ii) selective addition of different components present in amniotic fluid and serum, including alpha-fetoprotein, to be radioimmunoassay; (iii) correlation between the inhibitory effect of both amniotic fluid and serum and between the amounts of alpha-fetoprotein they contain; (iv) blocking of the alpha-fetoprotein in vitro suggests a similar effect in vivo in pregnant women with myasthenia gravis. This effect may explain in part the variability in the development of neonatal myasthenia gravis in the babies, due to transplacental transfer of maternal anti-AcChoR antibody, only after delivery and only in the minority of the cases. It also may explain the appearnace of remissions in females with myasthenia gravis during the second and third trimesters of pregnancy. Similar phenomena observed during pregnancy in other autoimmune and immunopathogenic diseases also might be attributed to activity of alpha-fetoprotein.

Acetylcholine↗

Inosiplex in the treatment of subacute sclerosing panencephalitis.

Six patients with subacute sclerosing panencephalitis were treated with the antiviral agent inosiplex. The clinical condition of four children continued to deteriorate in spite of the treatment, the condition of one remained unchanged, and that of another improved minimally. The effect of inosiplex in these patients is not evident since this group demonstrated a pattern of progression similar to that seen in subacute sclerosing panencephalitis without specific treatment.

Adolescent↗

Antibodies to galactocerebroside bind to oligodendroglia in suspension culture.

Antisera raised in rabbits against galactocerebroside bind to bovine oligodendroglia in suspension in significant titer as demonstrated by indirect immunofluorescence. Absorption of antigalactocerebroside antiserum with galactocerebroside, oligodendroglia, or myelin markedly reduces the antigalactocerebroside antibody titer as measured by a radioimmunoprecipitation test as well as the binding to oligodendroglia. Incubation with some other galactose-containing glycolipids results in a parallel decrease in binding to oligodendroglia and reduction in antigalactocerebroside antibody titer. Antigalactocerebroside antibodies provide a useful and specific tool with which to study development of oligodendroglia and myelin as well as immunopathologic mechanisms which might be involved in demyelinating diseases.

Animals↗

Immune response to isolated oligodendrocytes.

Oligodendrocytes were isolated from bovine white matter and were injected with complete Freund's adjuvant (CFA) into experimental animals. Indirect immunofluorescence studies using fluoresceinated goat anti-rabbit or anti-guinea pig immunoglobulin (GARIg; GAGPIg) showed that rabbit and guinea pig anti-oligodendrocyte (RAO, GPAO) sera reacted specifically with the surface of isolated oligodendrocytes in suspension, as well as with oligodendroglia in bovine and human brain sections, and in mouse cerebellum cultures. This activity of RAO was blocked by non-fluoresceinated GARIg and by GPAO, and absorbed by oligodendrocyte preparation (OP) or whole white matter, but not by purified myelin, neuroblastoma or non-brain tissue. Low levels of anti-basic protein antibodies were found in many RAO (but not GPAO) sera by radioimmunoassay, and a few showed significant anti-galactocerebroside antibody by agglutination and radioimmunoprecipation techniques. Guinea pigs sensitized with isolated oligodendrocytes in CFA showed cell-mediated immunity (CMI) to OP as manifested by delayed type skin test and induced in vitro lymphocyte transformation. CMI to purified myelin basic protein was not detected. The demonstration of humoral and CMI to the cell responsible for the production of CNS myelin may be related to some aspects of the immunopathogenesis of demyelinating disorders.

Animals↗

Automimmune response to dopamine-receptor as a possible mechanism in the pathogenesis of Parkinson's disease and schizophrenia.

Clinical and neuropharmacological evidence indicates the involvement of dopaminergic mechanisms in Parkinson's disease and schizophrenia, as well as in iatrogenic Parkinsonism and drug-induced schizophrenia-like syndrome. The evidence hitherto presented stresses the existence of a reversed relationship between Parkinson's disease and schizophrenia and implicates the possibility that dysfunction of dopamine-receptors may be a central phenomenon in both diseases. In view of the recent demonstration of two separate dopamine-receptors, it is postulated that a striatal receptor blockade may cause Parkinson's disease, whereas a limbic receptor blockade may result in schizophrenia. The recent discovery that several autoimmune diseases, such as myasthenia gravis, are the result of an immunopharmacological block at receptor sites, together with several observations of immunological disorders in Parkinson's disease and schizophrenia, suggests the possibility that certain types of Parkinson's disease and schizophrenia might be the consequence of an autoimmune blockade of striatal or limbic dopamine-receptors, respectively.

Antibody Formation↗

Antibodies to oligodendroglia in patients with multiple sclerosis.

We demonstrated antibodies to isolated oligodendrocytes and to oligodendroglia in brain sections by indirect immunofluorescence technic in serums of 19 of 21 patients with multiple sclerosis. We also found such antibodies in three of five patients with subacute sclerosing panencephalitis and one of four patients with acute disseminated encephalomyelitis, but not in patients with other neurologic diseases or normal persons. The antibodies were absorbed by preincubation of serum with isolated oligodendrocytes or whole white matter, but not with purified myelin or liver tissue. Immunofluorescent staining was blocked by either rabbit anti-oligodendrocyte serum or non-fluoresceinated goat anti-human immunoglobulin. These findings suggest that antibodies to oligodendroglia are distinct from antibodies to myelin and that demyelination in multiple sclerosis could be a consequence of an immunopathologic reaction directed against oligodendroglial cells.

Animals↗