Publications by authors named "M Kubicka-Muranyi"

HgCl2 induces a CD4+ T-cell-dependent systemic autoimmune disease in susceptible strains of rats and mice. In rats, autoreactive T cells were shown to be involved, whereas in mice, attention has focussed on the demonstration of 'Hg-specific' T cells. To clarify these seemingly different T cell involvements, T cells from B10.

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HgCl2 treatment of B10.S mice induces IgG autoantibodies to fibrillarin, a component of small nuclear ribonucleoprotein particles, and histone. Here, we demonstrate the activation by HgCl2 of autoreactive T cells specific for these nuclear proteins.

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This article reviews results obtained with popliteal lymph node assays (PLNAs) in rodents and discusses their ability to detect and analyze immunotoxic effects of drugs and other low molecular weight (LMW) chemicals. In its basic form, the PLNA measures activation of the draining lymph node of the hind paw (i.e.

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The oxidizing capacity of phagocytic cells is suspected to play a major role in the generation of immunogenic drug metabolites, in particular those that cause extrahepatic immunopathological lesions. In the case of the antirheumatic drug gold(I) disodium thiomalate (Na2Au(I)TM), oxidation of the Au(I) ion to Au(III) appears to be responsible for the adverse immune reactions which may develop during gold therapy. Here, we show that the reactive metabolite Au(III) may be generated by mononuclear phagocytes (M phi) exposed to Au(I).

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Autoantibodies against nucleolar components are a common serological feature of patients suffering from scleroderma, a collagen vascular autoimmune disease. An important target of these autoantibodies is a protein with an apparent molecular weight of 36 kDa and a pI value of 8.5, located in the dense fibrillar component of the nucleolus and therefore termed fibrillarin.

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