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M Aringer

Publications and source records attributed to M Aringer.

At least 19 recordsLinked to original sources

[Systemic lupus erythematosus--activity and outcome].

Both clinically and scientifically, the variable organ manifestations of systemic lupus erythematosus (SLE) pose a particular challenge to rheumatologists. Validated scores for disease activity (BILAG, ECLAM, SIS, SLAM, SLEDAI), damage (SLICC/ACR damage index) and health-related quality of life (MOS SF-36) have been successfully used for years. New therapies, however, need to show improvement on outcome parameters for defined organ systems--and these are mostly ill-defined. For proliferative lupus nephritis, well designed studies have been available for years. However, these use very severe outcome parameters (renal failure, death), and therefore take at least 5 years for definitive results. Of the surrogate markers which were devised, none has proven reliable for determining outcome. The combination of shorter studies for defining hopeful strategies followed by long definitive studies, appears to be the best option at present.

Arthralgia↗

ICF core sets: how to specify impairment and function in systemic lupus erythematosus.

The World Health Organization's International Classification of Function (ICF) is a tool to characterize and illuminate better the full of array of problems a patient faces when affected by disease. Specifying these problems is a particular challenge in a disease like systemic lupus erythematosus (SLE) because of the wide variety in organ systems involved, its variable activity and severity, and considerable ethnic and local differences. The authors of this manuscript believe, however, that a broader understanding will prove essential for optimal patient care, and that there is sufficient experience now in defining ICF Core Sets to successfully complete core sets for SLE. Therefore, we will embark on an international project for developing ICF Core Sets for SLE, which we here delineate. This development will include two versions: 1) The Brief ICF Core Set for SLE will be a very focused list of categories essential for SLE clinical trials; and 2) The Comprehensive ICF Core Set will be much broader and useful for guiding multidisciplinary assessment in patients with SLE. Both Core Sets will be developed in a formal decision-making and consensus process of health professionals integrating evidence gathered from preliminary studies. The final definition of the Core Sets will occur at a consensus conference which will integrate: i) a systematic review of the literature regarding the outcome measures used in clinical trials and selected observational studies; ii) focus groups or semi-structured interviews with SLE patients; iii) a Delphi exercise with world wide involvement of experts; and iv) the evidence from empirical studies. The development of these SLE ICF Core Sets is designed to be an inclusive, open, worldwide process. We therefore invite both SLE clinical experts and SLE patients to participate actively.

Consensus Statements as Topic↗

IgG immunoadsorption reduces systemic lupus erythematosus activity and proteinuria: a long term observational study.

OBJECTIVE: To analyse the effects of rigorous immunoglobulin removal by immunoadsorption (IAS) on proteinuria (primary outcome variable), disease activity (SIS, SLEDAI, ECLAM), and autoantibodies to double stranded DNA (anti-dsDNA) in active systemic lupus erythematosus (SLE). METHODS: 16 patients with severe SLE and renal disease, in whom cyclophosphamide was contraindicated or failed to halt disease progression, were treated with IAS for 3 months. Patients achieving at least 20% improvement in two or more of the outcome measures were considered responders and offered a 9 months' extension period. RESULTS: Within 3 months, 14 patients responded and 11 opted for an extension. Proteinuria decreased from 6.7 (4.6) g/day (mean (SD)) at baseline to 4.3 (3.5) g/day at 3 months and 2.9 (2.4) g/day at 12 months (p<0.001). From baseline to 3 and 12 months, disease activity improved independently of scoring by SIS (15 (5) to 5 (2) and to 5 (2), p<0.0001), SLEDAI (21 (7) to 5 (4) and to 5 (4), p<0.0001), or ECLAM (7 (2) to 2 (1) and to 3 (1), p<0.0001). Anti-dsDNA fell from 391 (647) IU/ml to 146 (218) and to 53 (50) IU/ml at 3 and 12 months, respectively. Steroids could be tapered from 117 (159) mg/day at baseline to 29 (17) mg/day at 3 months and 9 (2) mg/day at 12 months. IAS was not associated with an excess of infections. However, one patient died of septicaemia after 1 month of treatment. CONCLUSION: In this negatively selected cohort of patients with SLE, IAS was associated with a significant response shown by reduced proteinuria, improved global disease activity, decreased anti-dsDNA, and lower glucocorticoid dosages, suggesting therapeutic benefit.

Adult↗

Cytokine expression in lupus kidneys.

Although far from complete, the picture of cytokines present in systemic lupus erythematosus (SLE) glomerulonephritis is already complex. Proinflammatory cytokines, such as TNF, IL-6, IL-1, and IL-18 are upregulated, as are both Th1 and Th2 cytokines, with different implications. In many instances, the local effects may be different from the systemic immunoregulatory ones. For some proinflammatory cytokines, and TNF in particular, the local proinflammatory ones may be more relevant to the disease. This may help solve discrepancies between different murine models of the disease and provide a better rationale for targeting certain cytokines in human SLE.

Animals↗

Anti-cytokine therapy in systemic lupus erythematosus.

In the course of the disease, a wide variety of cytokines is dysregulated, many of which likely influence systemic lupus erythematosus (SLE) autoimmunity and/or lupus tissue inflammation. Proinflammatory cytokines in particular, such as TNF, IL-6, IL-18 or IFN-gamma, may play a major role in propagating the inflammatory processes responsible for tissue damage. These cytokines are overexpressed both systemically and locally, and preliminary results from open-label trials and/or animal studies suggest potential benefits of blocking either of these inflammatory mediators. Since new therapeutic agents may soon offer many ways to influence the process, controlled clinical trials following open-label safety studies are of central importance to arrive at optimized therapies for SLE patients.

Cytokines↗

Increased transendothelial migration of scleroderma lymphocytes.

BACKGROUND: CD4+ T lymphocytes play an important part in the pathogenesis of scleroderma (systemic sclerosis, SSc) and predominate in perivascular SSc skin lesions. Both soluble and membrane bound adhesion molecules are overexpressed in SSc, possibly influencing lymphocyte/endothelial cell (EC) contact. OBJECTIVE: To assess the transendothelial migration capacity of peripheral lymphocytes in vitro. PATIENTS AND METHODS: Collagen was covered with human umbilical vein endothelial cells (HUVEC), and peripheral blood mononuclear cells (PBMC) of patients and matched healthy controls (HC) were added in parallel experiments. Before and after fractionated harvest of non-adherent, bound, and migrated lymphocytes, the CD4/CD8 ratio and the lymphocytic expression of activation markers and adhesion molecules were analysed by fluorocytometry. RESULTS: 13 (SD 12)% of the SSc PBMC migrated compared with only 5 (5)% HC PBMC (p<0.0002); this increase was primarily due to the migration of CD3+ T lymphocytes and mainly to a larger proportion of CD4+ cells within this CD3+ fraction (71 (SD 14)% for SSc v 56 (14)% for HC, p<0.03), leading to an increased CD4/CD8 ratio among migrated SSc lymphocytes in comparison with controls (3.3 (1.5) v 1.62 (0.93), p<0.006). Among migrated SSc CD4+ T lymphocytes, the frequency of HLA-DR+ cells was increased; migrated lymphocytes highly expressed the adhesion molecules CD11a, CD49d, CD29, and CD44. CONCLUSION: Transendothelial migration of CD4+ T lymphocytes is enhanced in SSc, and migrating cells exhibit an activated phenotype. The data suggest that activated CD3+CD4+ lymphocytes as found in SSc peripheral blood are prone to transvascular migration, thus contributing to the formation of typical perivascular lymphocytic infiltrates.

CD3 Complex↗

Leflunomide inhibits transendothelial migration of peripheral blood mononuclear cells.

OBJECTIVES: To test whether the active metabolite of leflunomide (LEF-M), in addition to blocking the proliferation of activated lymphocytes by inhibiting dihydro-orotate dehydrogenase (DHODH), influences the transendothelial migration (TEM) of peripheral blood mononuclear cells (PBMC). METHODS: In an in vitro model of PBMC transmigration through an endothelial cell (EC) barrier, PBMC were re-collected in three groups: cells not adherent to the EC, cells bound to, and cells which had migrated through, the EC layer. Experiments in which cells were pretreated with LEF-M (in the absence or in the presence of uridine) were compared with parallel experiments in the presence of medium alone. RESULTS: Preincubation of EC with LEF-M led to a 36 (SEM 16)% reduction in PBMC TEM (p<0.05). Likewise, preincubation of PBMC induced a reduction in their TEM of 39 (9)% (p<0.005). Incubation of both PBMC and EC with LEF-M had an additive effect (mean reduction of 48 (6)%, p<0.005). Incubation of PBMC with LEF-M also decreased monocytic CD44 expression (p<0.005) and PBMC-hyaluronan binding (p<0.05). Incubation of cells with LEF-M and uridine in addition to LEF-M reversed the inhibition of migration, suggesting that the observed effects were due to DHODH inhibition. Fluorocytometric analysis of PBMC subsets within the migrated population showed a decrease of monocytes, but not of B or T cells, after LEF-M treatment. CONCLUSIONS: LEF-M reduces monocytic adhesion molecule expression and TEM and may thus interfere with monocyte and EC activities in RA. Thus, the clinical effects of leflunomide may, at least in part, be due to blocking cell traffic into the inflamed synovia.

Antirheumatic Agents↗

Tumour necrosis factor and other proinflammatory cytokines in systemic lupus erythematosus: a rationale for therapeutic intervention.

Systemic lupus erythematosus (SLE) is an autoantibody and immune complex mediated disease. However, it is the ensuing inflammatory process that leads to irreversible organ damage. In fact several murine models of SLE suggest that this inflammatory organ damage can be prevented even in the presence of autoantibodies. Given data from experimental models as well as from patients, proinflammatory cytokines including tumour necrosis factor (TNF) alpha apparently play a significant role in the inflammatory process, but may have immunoregulatory functions at the same time. Therefore, anti-TNF alpha therapy may constitute an interesting candidate approach for treating SLE inflammatory organ disease, but potentially at the cost of increased autoantibody formation. Clinical trials will be required to answer whether TNF alpha blockade fulfils this hope with an acceptable safety profile. Interferon (IFN)-gamma, interleukin (IL)-18, IL-6 and possibly IL-1 are increased in SLE and likewise involved in the inflammatory process. Specific therapeutic agents for blocking these cytokines should be available in the near future.

Animals↗

Functional and molecular aspects of transient T cell unresponsiveness: role of selective interleukin-2 deficiency.

Defects of T cell (Tc) proliferation have been demonstrated in several autoimmune diseases. Detailed mechanisms governing activation and proliferation of Tc are still not completely known. Here we show that under certain conditions human peripheral blood lymphocytes, once activated by anti-CD3, fail to respond to a subsequent restimulation via the Tc-receptor. Peripheral blood mononuclear cells (PBMC) were preactivated by anti-CD3 for 96 h following restimulation by anti-CD3, interleukin (IL)-2 and other mitogens. In control experiments unstimulated PBMC were incubated in medium alone. Immunophenotypes were analysed by flow cytometry. Cytokine production was determined by reverse transcription-polymerase chain reaction and intracellular signalling protein contents of Tc were compared by Western blotting. Furthermore, apoptosis was detected by terminal deoxyribose transferase-mediated deoxyuridine triphosphate nick end labelling assay. Unstimulated PBMC proliferate well after subsequent stimulation with anti-CD3, whereas IL-2 induces only limited proliferation. In contrast, preactivated cells respond only minimally to restimulation with anti-CD3, but IL-2 induces a marked proliferation. Both preactivated and unstimulated Tc respond well to restimulation by phytohaemagglutinin (PHA). In contrast, preactivated Tc show only a weak response to concanavalin A. Interestingly, when cells have been allowed to rest for 168 h, the responsiveness of preactivated Tc is restored. Immunoblots reveal that preactivated cells have a higher intracellular content of zeta-chain and p56lck. No differences are found concerning apoptosis after restimulation with anti-CD3 or the expression of ERK 1/2. The unresponsiveness to restimulation is due to an impairment of the transcription of the IL-2 gene and this defect is temporary. Despite the lack of proliferation, preactivated Tc phenotypically maintain an intermediate stage of activation. These data show how the same cell population can change its functional phenotype into a non-responder state.

Adaptor Proteins, Signal Transducing↗

Treating rheumatoid arthritis with new disease modifying drugs.

Rheumatoid arthritis (RA) is a serious illness that can only be controlled by the appropriate use of disease modifying anti-rheumatic drugs (DMARDs). In spite of the successful use of such substances, and of methotrexate in particular, a large number of patients still experience disease progression. Leflunomide and the two anti-TNF agents, infliximab and etanercept, were therefore warmly greeted as very welcome additions to the rheumatologist's armamentarium. These successful newcomers, their strengths and problems are the focus of the present review.

Adjuvants, Immunologic↗

T lymphocyte activation--an inside overview.

Activated T lymphocytes play an important role in autoimmune disease. The process of T-cell activation is therefore of significant importance in understanding the pathogenesis of many rheumatic diseases. This process can be observed from outside the lymphocyte, but we have also gained increased understanding of many of the intracellular events of T-cell activation. This review tries to draw out the most important receptors, pathways, and transcription factors involved in the process.

Animals↗

Increased bioactive TNF in human systemic lupus erythematosus: associations with cell death.

In systemic lupus erythematosus (SLE) serum TNF is increased and correlates with its soluble receptors and with disease activity. We therefore investigated (i) whether the TNF in SLE serum is bioactive, (ii) whether SLE cells react to TNF and (iii) whether there are associations with cell death, which is regarded as pathogenic in SLE. Sera from active SLE patients induced an increase in fibroblast CD54, which was abolished by blocking antibodies against TNF, suggesting TNF bioactivity. SLE lymphocytes had a similar surface expression of TNF-RI as healthy lymphocytes, their expression of TNF-RII was slightly increased. Recombinant TNF induced cell death in PBMC of SLE patients, suggesting functional receptors. Serum levels of sTNF-RII (as a surrogate marker for TNF activity) correlated with sTNF-RI and disease activity, as expected, and also correlated with the percentage of dying lymphocytes and with lymphocytic CD95. SLE sera contain increased amounts of biologically active TNF. Peripheral blood lymphocytes of SLE patients express functional TNF receptors. Finally, associations with cell death and CD95 receptors suggest that TNF may be pathogenic in SLE.

Adult↗

Cancer polyarthritis resembling rheumatoid arthritis as a first sign of hidden neoplasms. Report of two cases and review of the literature.

Recent onset arthritis reminiscent of rheumatoid arthritis (RA) may be an early manifestation of an occult malignancy. In this report, we present two patients with cancer-associated polyarthritis. Both suffered from symmetric polyarthritis when initially visiting their physicians and did not achieve relief when treated with non-steroidal anti-rheumatic drugs (NSAIDs). In both patients, subsequent work-up led to the diagnosis of an underlying malignancy. One patient suffered from small cell lung cancer (SCLC), while the other was diagnosed with adenocarcinoma of the colon. In both, the arthritis spontaneously disappeared after successful treatment of the malignancy, i.e. chemotherapy and tumor resection, respectively. We discuss these cases in view of the existing literature, since awareness of the entity of cancer polyarthritis is necessary for its timely treatment and may potentially be life-saving.

Adenocarcinoma↗

Serum interleukin-15 is elevated in systemic lupus erythematosus.

OBJECTIVE: To investigate if interleukin-15 (IL-15) (rather than IL-2) is increased in systemic lupus erythematosus (SLE) and might be responsible for immunological abnormalities of SLE such as the increased lymphocytic expression of Bcl-2 and CD25. METHODS: Serum IL-15, IL-2 and tumour necrosis factor (TNF) levels of 65 SLE patients, 20 healthy persons and 10 rheumatoid arthritis (RA) patients were measured by enzyme-linked immunosorbent assay (ELISA). For 25 SLE patients, the percentage of CD25 + lymphocytes and the lymphocytic Bcl-2 levels were simultaneously determined by fluorocytometry. Peripheral blood mononuclear cells (PBMC) of 15 SLE patients were incubated with or without recombinant IL-15 and the influence on Bcl-2 and CD25 was determined. RESULTS: IL-15 was found to be elevated in 25 SLE sera (38%), but in none of the 20 healthy sera (P = 0.0005) and none of the 10 RA sera. Both lymphocyte CD25 and Bcl-2 expression significantly correlated with serum IL-15 and were increased by recombinant IL-15. CONCLUSION: Serum IL-15 may in part be responsible for the immunological abnormalities seen in active SLE.

Adult↗

The gene for familial Mediterranean fever, MEFV, is expressed in early leukocyte development and is regulated in response to inflammatory mediators.

Familial Mediterranean fever (FMF) is a recessive disorder characterized by episodes of fever and neutrophil-mediated serosal inflammation. We recently identified the gene causing FMF, designated MEFV, and found it to be expressed in mature neutrophils, suggesting that it functions as an inflammatory regulator. To facilitate our understanding of the normal function of MEFV, we extended our previous studies. MEFV messenger RNA was detected by reverse transcriptase-polymerase chain reaction in bone marrow leukocytes, with differential expression observed among cells by in situ hybridization. CD34 hematopoietic stem-cell cultures induced toward the granulocytic lineage expressed MEFV at the myelocyte stage, concurrently with lineage commitment. The prepromyelocytic cell line HL60 expressed MEFV only at granulocytic and monocytic differentiation. MEFV was also expressed in the monocytic cell lines U937 and THP-1. Among peripheral blood leukocytes, MEFV expression was detected in neutrophils, eosinophils, and to varying degrees, monocytes. Consistent with the tissue specificity of expression, complete sequencing and analysis of upstream regulatory regions of MEFV revealed homology to myeloid-specific promoters and to more broadly expressed inflammatory promoter elements. In vitro stimulation of monocytes with the proinflammatory agents interferon (IFN) gamma, tumor necrosis factor, and lipopolysaccharide induced MEFV expression, whereas the antiinflammatory cytokines interleukin (IL) 4, IL-10, and transforming growth factor beta inhibited such expression. Induction by IFN-gamma occurred rapidly and was resistant to cycloheximide. IFN-alpha also induced MEFV expression. In granulocytes, MEFV was up-regulated by IFN-gamma and the combination of IFN-alpha and colchicine. These results refine understanding of MEFV by placing the gene in the myelomonocytic-specific proinflammatory pathway and identifying it as an IFN-gamma immediate early gene.

Cell Differentiation↗