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F Breedveld

Publications and source records attributed to F Breedveld.

23 records · Page 2Linked to original sources

DR4Dw4/DR53 molecules contain a peptide from the autoantigen calreticulin.

Rheumatoid arthritis (RA) occurs more frequently in HLA-DR4+ individuals than in those who do not express this MHC class II molecule. Although the role of this genetic factor in the immunopathology of this autoimmune disease is unclear, the association of RA with HLA-DR4 may indicate that DR4 molecules present autoantigen(s) to T cells. Here we report the analysis of naturally processed peptides, eluted from a mixture of HLA-DR4Dw4 (DRB1*0401) and DR53 (DRB4*0101) molecules isolated from an RA patient-derived EBV-transformed B cell line. Several (size variants of) self-peptides originating from the autologous molecules HLA-A2, HLA-Cw9, HLA-B62, HLA-DR4Dw4 and HLA-DR53, were identified. We also found a sequence that has no homology to any protein in the SwissProt protein sequence databank, and a peptide identical to an internal fragment of the autoantigen calreticulin. The association of the identified peptides with cells expressing HLA-DR4Dw4/DR53 was confirmed by peptide binding analysis. In agreement with previously described peptide binding motifs for DR4Dw4, most peptides contained an aromatic residue (Phe, Tyr, Trp) at relative position i and a small hydroxyl-containing residue (Ser, Thr) at i + 5. Our findings indicate that in RA patient-derived EBV-transformed B cells DR4Dw4/DR53 molecules present a peptide from the autoantigen calreticulin. Interestingly, autoantibodies against calreticulin have been found in various rheumatic diseases, including rheumatoid arthritis. Thus, the analysis of HLA class II-bound peptides can lead to the identification of putative T helper epitopes, which might be involved in the immunopathology of autoimmune diseases.

Amino Acid Sequence↗

Tenidap: a novel cytokine-modulating antirheumatic drug for the treatment of rheumatoid arthritis.

Tenidap is a novel, once-daily, cytokine modulating antirheumatic drug indicated for the treatment of rheumatoid arthritis (RA). In vitro, tenidap significantly inhibits the production of the pro-inflammatory cytokines, interleukin-1, interleukin-6 and tumour necrosis factor in human cell lines, and inhibits cytokine-mediated processes such as cartilage degradation, bone resorption, metalloprotease synthesis, endothelial cell adhesion and monocyte differentiation. Tenidap also inhibits cyclo-oxygenase. In RA patients, tenidap 120 mg/day is clinically equivalent to the combination of disease-modifying antirheumatic agents plus non-steroidal anti-inflammatory drugs (NSAIDs) and significantly more effective than NSAIDs. Tenidap also produces rapid, profound and sustained reductions in the serum levels of the acute phase proteins, C-reactive protein and serum amyloid A, an effect suggestive of disease modifying properties. In addition, tenidap reduces circulating levels of IL-6 in RA patients. Tenidap is well tolerated.

Acute-Phase Proteins↗

IgG autoantibodies against C1q are correlated with nephritis, hypocomplementemia, and dsDNA antibodies in systemic lupus erythematosus.

We investigated the association between serum titers of IgG antibodies against C1q (C1qAb) and clinical and laboratory variables of disease activity in systemic lupus erythematosus (SLE). C1qAb were measured by ELISA in serum samples of 88 patients. Thirty patients (34%) had increased C1qAb titers. No correlation between C1qAb titers and a score for general disease activity was found. However, significant positive correlations were found between C1qAb titers and the presence of several clinical and laboratory variables of disease activity. These included nephritis, dermatitis, hypocomplementemia, antibodies against dsDNA, and circulating immune complexes. A negative correlation was found with neurological disease manifestations. The correlations between C1qAb titers and clinical features indicate that the pathogenetic role for C1qAb in certain disease manifestations of SLE deserves further study.

Adolescent↗

Dendritic cells and high endothelial venules in the rheumatoid synovial membrane.

Since dendritic cells are believed to play a crucial role in the pathogenesis of rheumatoid arthritis (RA) we studied the microenvironmental relationship of these cells with endothelial cells, lymphocytes and macrophages in the rheumatoid synovial membrane. With the monoclonal antibodies OKIa (MHC Class II determinants), RFD1 and L25 (both specific for "active" human dendritic cells) we identified large numbers of dendritic cells. With the monoclonal antibody HECA 452 [specific for a putative adhesion molecule notably present on high endothelial venules (HEV)], a subset of dendritic cells could be detected. HECA-452 positive dendritic cells were found in 2 basic patterns: (1) associated with small lymphoid cell clusters in the neighborhood of vessels with flat, HECA-452 negative endothelium, (2) at the periphery of dense organoid lymphoid infiltrates, surrounding HECA-452 positive HEV-like vessels. Our data suggest that the influx of HECA-452, L25, RFD1 and MHC Class II positive dendritic cells is an early event in the development of the inflammatory infiltrate found in the rheumatoid synovial membrane. The formation of organoid lymphoplasmacellular infiltrates with high endothelial venules would be secondary to this event.

Antibodies, Monoclonal↗