PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “LUPUS ERYTHEMATOSUS, SYSTEMIC”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 199 records · Page 11Linked to original sources

Roles of genetic variations in signalling/immunoregulatory molecules in susceptibility to systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is a systemic autoimmune disease with a complex genetic basis that includes many susceptibility genes on multiple chromosomes. As complex human diseases like SLE involve multiple, interacting genetic and environmental determinants, identifying genes for complex traits is challenging and has had limited success so far. However, recent advances in genetic resources and technology have been providing new tools to identify the novel pathways or the sequence variants that contribute to autoimmune diseases. During the past several years, several new candidate genes have been implicated in development of SLE though association studies. In this article we describe an overview of the latest findings in the genetics of SLE, especially focusing on the genetic variations in the signalling or immunoregulatory molecules including CD28 and IRF family members.

Animals↗

Haplotype analysis of tumour necrosis factor receptor genes in 1p36: no evidence for association with systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is a systemic autoimmune disease with partially understood aetiology. The 1p36 region has been previously linked with SLE and harbours tumour necrosis factor receptor (TNFR) genes. Functional and genetic data implicate their gene products in SLE and other autoimmune diseases. In all, single-nucleotide polymorphisms (SNPs) across TNFRSF14 (HVEM), and 43 SNPs across the TNFRSF8 (CD30) and TNFRSF1B (CD120B) locus were investigated for linkage disequilibrium (LD) and haplotype analysis in European-Caucasians. Strong LD was observed across HVEM and CD120B, and little LD and recombination across CD30. We also examined the association of SNPs and haplotypes in HVEM, CD30 and CD120B with SLE in European-Caucasians. There was no evidence of association for these genes in 456 European-Caucasian families with SLE from UK. Haplotype tagging SNPs are made known across areas of strong LD, which will facilitate analysis for susceptibility in other diseases.

Chromosomes, Human, Pair 1↗

Reduced complement receptor 1 (CR1, CD35) transcription in systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is a chronic systemic autoimmune disease characterized by the production of a broad spectrum of autoantibodies against nuclear, cytoplasmic and cell surface antigens and immune complex overload. Complement receptor 1 (CR1, CD 35), a transmembrane glycoprotein found on the surface of erythrocytes, leukocytes and glomerular podocytes plays a key role in the clearance of immune complexes and regulation of complement cascade. A drastic decline in the level of cell surface CR1 appears to be an important event in pathology of SLE. However, the etiology of lower than normal expression of cell surface CR1 in this disease is poorly understood. We studied the level of leukocyte CR1 transcription in 30 patients with active SLE and 30 controls by reverse transcriptase-polymerase chain reaction (RT-PCR) and related the same with the level of CR1 protein expression monitored by Western blotting. For RT-PCR, ratio of CR1/beta-actin was considered for semiquantitation of the level of CR1 transcription. Despite individual variation at the level of transcription, 70% (21 out of 30) of the patients expressed CR1 transcript at the lowest range of 0-15% as compared to the controls wherein only 30% (9 out of 30 individuals) demonstrated CR1 transcript in this range. Majority of the controls (70%) expressed CR1 transcript at the level above 15%. Mean level of CR1 transcript in patients (mean +/- S.D. = 21.09 +/- 14.3) was significantly lower than the controls (mean +/- S.D. = 48.91 +/- 26.34) (P < 0.001). The level of CR1 transcription correlated inversely with circulating immune complexes (CIC) (r = 0.52, P < 0.01). This may suggest that although erythrocyte CR1 is the chief vehicle for CIC clearance, drastic decline in leukocyte CR1 expression may impair the phagocyte mediated immune complex clearance and contribute to increased complement consumption in SLE. Total leukocyte CR1 protein expression was also significantly reduced in patients (P < 0.001) as compared to controls. This decline at the protein level gave a very significant positive correlation with CR1 transcript (r = 0.67, P < 0.01). A marginal increase in soluble CR1 (sCR1) was observed in the plasma (ELISA) of SLE patients compared to the controls but was insignificant. This paper for the first time brings evidence to suggest that reduced synthesis of CR1 contributes substantially to the low cell surface CR1 expression in SLE. Our findings also suggest increased proteolytic cleavage of leukocyte cell surface CR1 in these patients. However, evidence for the latter is indirect.

Adult↗

Polymorphisms in the tyrosine kinase 2 and interferon regulatory factor 5 genes are associated with systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is a complex systemic autoimmune disease caused by both genetic and environmental factors. Genome scans in families with SLE point to multiple potential chromosomal regions that harbor SLE susceptibility genes, and association studies in different populations have suggested several susceptibility alleles for SLE. Increased production of type I interferon (IFN) and expression of IFN-inducible genes is commonly observed in SLE and may be pivotal in the molecular pathogenesis of the disease. We analyzed 44 single-nucleotide polymorphisms (SNPs) in 13 genes from the type I IFN pathway in 679 Swedish, Finnish, and Icelandic patients with SLE, in 798 unaffected family members, and in 438 unrelated control individuals for joint linkage and association with SLE. In two of the genes--the tyrosine kinase 2 (TYK2) and IFN regulatory factor 5 (IRF5) genes--we identified SNPs that displayed strong signals in joint analysis of linkage and association (unadjusted P<10(-7)) with SLE. TYK2 binds to the type I IFN receptor complex and IRF5 is a regulator of type I IFN gene expression. Thus, our results support a disease mechanism in SLE that involves key components of the type I IFN system.

Alleles↗

Recognition and management of systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is an inflammatory systemic disease that causes organ damage by the deposition of autoantibodies and complement activating immune complexes or by vascular occlusion due to procoagulant states associated with antiphospholipid antibodies. The vast majority of cases occur in women of childbearing age. SLE is diagnosed on the basis of its clinical manifestations and the demonstration of characteristic immunological phenomena, especially anti-nuclear antibodies. The prognosis in SLE has shown a distinct improvement over recent decades, the 5-year survival rate now approaching or exceeding 90%. The 15-year survival rate of 63 to 79%, on the other hand, underscores the need for further advances in diagnosis and treatment of the disease. Management of the disease includes regular monitoring of disease activity, avoidance of predisposing factors and close supervision of therapy. Drug therapy is guided by the activity and severity of the leading organ manifestations and ranges from nonsteroidal antirheumatic drugs to intensive treatment with cytotoxic agents. Corticosteroids remain irreplaceable for the control of acute flares. Antimalarials and azathioprine are important long term drugs for treating mild or moderate disease activity. Intravenous pulse cyclophosphamide is safer than other regimens and at least as effective as oral cyclophosphamide for severe lupus nephritis. It is also effective in the treatment of central nervous disease and of other organ-threatening manifestations. Recently, an intensified protocol which included cyclophosphamide induced long term treatment-free remission in 60% of patients. The toxicity of cyclophosphamide is considerable, but can be ameliorated by various measures. The value of several new immunosuppressants and other compounds remains to be determined.

Adrenal Cortex Hormones↗

Mapping the plasma proteomic architecture of systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is a heterogeneous systemic autoimmune disease, yet the molecular basis underlying this variability remains incompletely understood. We profiled the plasma proteome in 260 SLE patients and 86 healthy volunteers (HVs) using the SomaScan v4.1 platform, quantifying 7,288 analytes corresponding to 6,595 unique proteins. We identified 215 proteins that were robustly differentially abundant between SLE patients and HVs in both discovery (n = 207 SLE, n = 45 HVs) and validation sets (n = 53 SLE, n = 41 HVs). Within-cases analyses identified 421 proteins associated with disease activity. Network-based clustering delineated correlated protein modules, including an interferon-associated (IFN-associated) module and a kidney-associated module. Autoantibody-stratified analyses further uncovered distinct proteomic endotypes; positivity for antibodies targeting RNA-binding proteins (anti-Sm, anti-Ro-60, anti-RNP68, anti-RNP-A) was associated with increased IFN-stimulated protein levels (e.g., MX1, ISG15, and CXCL10), independent of disease activity. Anti-Sm, anti-RNP-A, and anti-Ro52 antibodies were associated with reduced plasma levels of their respective autoantigens. Anti-dsDNA antibodies were associated with elevated levels of CD40 ligand (CD40LG) and the neutrophil protease, proteinase-3. Moreover, we identified an association between CD40LG and disease activity specific to the anti-dsDNA-positive subgroup. Together, these data define plasma protein signatures of SLE and disease activity, highlight autoantibody-specific molecular phenotypes, and provide a basis for precision medicine.

Humans↗

Atypical manifestations in a patient with systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is a chronic systemic inflammatory disease associated with the production of various autoantibodies and involvement of multiple organs. Necropsy findings in a 65 year old woman with SLE who had multiple aortic aneurysms and dissections, as well as other unusual manifestations, are described. The case illustrates the occurrence of and the difficulties encountered in the diagnosis of several diseases, namely aortic aneurysm, aortic dissection, acute pancreatitis, and Penicillium marneffei infection.

Aged↗

Subdural hematoma presenting as headache in systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) affects the nervous system in 75% of cases (1). A female with several neurological manifestations in the case history presented with severe headache, psychiatric disturbances, and increasing paraparesis. She was found to have bilateral subdural hematomas, and after evacuation her neuropsychiatric symptoms, including headache, disappeared. It is speculated that the reported low incidence of subdural hematomas in SLE may be more apparent than real. On the basis of our case, we recommend repeated neuroradiological investigations to uncover this important, treatable and otherwise potentially fatal cause of headache.

Adult↗

[Recent advance in genetics of systemic lupus erythematosus].

Systemic lupus erythematosus (SLE) is the prototype systemic autoimmune disease and genetic component seems to play an important role in disease susceptibility. Studies from murine models have shown that about 30 loci are related to the disease. Meanwhile, 50 loci have been found in linkage to SLE in human genomic studies, especially 1q23-24, 1q41-42, 2q37, 4p16-15.2, 6p21-11 and 16q13. A lot of candidate genes contribute to the disease susceptibility and different combinations of genes at multiple loci in individual patient may result in the development of diverse clinical features.

Animals↗

The epigenetic face of systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is an archetypical systemic, autoimmune inflammatory disease characterized by the production of autoantibodies to multiple nuclear Ags. Apoptotic defects and impaired removal of apoptotic cells contribute to an overload of autoantigens that become available to initiate an autoimmune response. Besides the well-recognized genetic susceptibility to SLE, epigenetic factors are important in the onset of the disease, as even monozygotic twins are usually discordant for the disease. Changes in DNA methylation and histone modifications, the major epigenetic marks, are a hallmark in genes that undergo epigenetic deregulation in disease. In SLE, global and gene-specific DNA methylation changes have been demonstrated to occur. Moreover, histone deacetylase inhibitors reverse the skewed expression of multiple genes involved in SLE. In the present study, we discuss the implications of epigenetic alterations in the development and progression of SLE and how epigenetic drugs constitute a promising source of therapy to treat this disease.

Animals↗

Molecular aspects in the pathogenesis of human systemic lupus erythematosus.

Systemic lupus erythematosus is a common and often devastating systemic autoimmune disease of unknown etiology. In this communication we review the latest developments of the molecular pathogenesis of human lupus. Novel genetic studies of multiplex lupus families have revealed potential disease-associated genome intervals, put special emphasis on genetic loci mapping in the long arm of chromosome 1 and have underscored the complexity of the underlying genetic background. New data have emerged on the role of estrogens in the function of lymphocytes and a number of studies have recently emphasized the relative Th-1/Th-2 cytokine imbalance in favor of a Th-2 type cytokine immune response. Finally, novel experiments have revealed an abnormal antigen receptor-mediated signaling process in lupus T and B cells, which may influence the aberrant expression and function of costimulatory molecules as well as of other aspects of immune cell function. It is important to decipher the underlying molecular mechanisms that govern the expression of human lupus, because we may design novel, rational approaches in the treatment of a human lupus, a disease that has high morbidity and mortality.

Antibodies, Antinuclear↗

Aberrant phenotype and function of myeloid dendritic cells in systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is characterized by a systemic autoimmune response with profound and diverse T cell changes. Dendritic cells (DCs) are important orchestrators of immune responses and have an important role in the regulation of T cell function. The objective of this study was to determine whether myeloid DCs from individuals with SLE display abnormalities in phenotype and promote abnormal T cell function. Monocyte-derived DCs and freshly isolated peripheral blood myeloid DCs from lupus patients displayed an abnormal phenotype characterized by accelerated differentiation, maturation, and secretion of proinflammatory cytokines. These abnormalities were characterized by higher expression of the DC differentiation marker CD1a, the maturation markers CD86, CD80, and HLA-DR, and the proinflammatory cytokine IL-8. In addition, SLE patients displayed selective down-regulation of the maturation marker CD83 and had abnormal responses to maturation stimuli. These abnormalities have functional relevance, as SLE DCs were able to significantly increase proliferation and activation of allogeneic T cells when compared with control DCs. We conclude that myeloid DCs from SLE patients display significant changes in phenotype which promote aberrant T cell function and could contribute to the pathogenesis of SLE and organ damage.

Adult↗

The homogeneous multiplexed system--a new method for autoantibody profile in systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is a multi-systemic autoimmune disease leading to immunological aberrations and excessive multiple autoantibody production. The aim of this study was to investigate the prevalence of multiple autoantibodies in SLE patients utilizing the multiplex system method. We analyzed the presence of elevated titers of anti-Ro, anti-La, anti-RNP, anti-Sm, anti-Jo1, anti-centromere, anti-Scl-70, anti-histone, and anti-dsDNA antibodies in 199 serum samples (113 SLE patients, 86 healthy donors). We compared the type, level and number of autoantibodies and the correlation between the autoantibody profile and disease severity utilizing the SLEDAI score. Elevated titers of at least one autoantibody were detected in 48% of 42 SLE patients. Elevated titers of anti-Ro antibodies were most commonly detected. The distribution of specific autoantibodies was: anti-Ro- 23.8%, anti-dsDNA- 19%, antihistone- 19%, anti-RNP- 14.2%, anti-La antibodies- 11.9%, anti-Sm- 7.1%, anti-Scl 70-4.7%, and anti-centromere- 2.4%. Utilizing ROC analysis, the sensitivity and specificity of anti-DNA antibodies at a cutoff value of 34 IU/ml were 87.1% and 79.4% respectively. Elevated titers of anti-Jo1 antibody were not detected. There was a correlation with the titer of anti-Ro antibodies and disease activity by the SLEDAI score. Seven patients harbored one autoantibody only, 15 patients harbored 2-3 autoantibodies, 3 patients harbored 4-5 autoantibodies, and one patient harbored 6 autoantibodies. A correlation between the number of autoantibodies per patient and disease severity was found. One patient with a multitude of autoantibodies had severe lupus and a myriad of clinical manifestations. In conclusion, the multiplex system is specific and sensitive, provides an autoantibody profile in a single test, and may be useful as a diagnostic test for SLE. Elevated anti-Ro antibodies are associated with severe disease. An autoantibody load may be indicative of more severe disease.

Antibodies, Antinuclear↗

Do naturally occurring autoantibodies participate in the constitution of the pathological B-cell repertoire in systemic lupus erythematosus?

Systemic lupus erythematosus (SLE) is the prototype of systemic autoimmune diseases. In both human and mouse SLE diseases, the autoimmune response targets a restricted set of autoantigens. Many of them are nucleic acids and proteins involved in the synthesis and processing of DNA or RNA, a characteristic which should be taken into consideration to elucidate the origins of non organ-specific autoantibodies. Several observations, in particular those obtained from experimental models of SLE induced in normal mice, suggest that the breakdown of B-cell tolerance occurs in the periphery. Herewith, we present data further supporting the proposition that SLE-associated autoantibodies originate from natural autoantibody-secreting B cells activated in the internal environment of lupus mice. Thus, one may hypothesize that certain clones of the expanded primary B-cell repertoire are selected to differentiate into harmful IgG autoantibody-secreting clones, thereby raising the question of the nature of immunogenic structures involved in SLE. Our analysis of the immunochemical and structural properties of anti-nucleosome and anti-myeoloperoxidase monoclonal antibodies derived from (NZB x NZW)F1 mice leads us to propose that complexes formed by the association of DNA and DNA-binding proteins and, more generally, by anionic molecules associated with proteins, possess a selective advantage over other autoantigens to induce the differentiation of certain B-cell clones and the very special profile of the SLE-autoimmune response. These DNA/DNA-protein complexes could also play a role in the activation of the T-cell compartment in SLE.

Animals↗

Systemic lupus erythematosus.

Systemic lupus erythematosus is a disease with both genetic and environmental pathogenesis. It has protean manifestations and can mimic most other clinical entities. Its severity varies widely among patients and its course commonly fluctuates from mild to severe in a single patient as the disease waxes and wanes. Since disease presentation is variable its treatment requires individualization. Some patients can be managed with NSAIDs and antimalarials without steroids. Patients with involvement of the nervous system, kidney and hematologic system usually require steroids--often in high doses. Immunosuppressants such as cyclophosphamide are useful in managing lupus emergencies and in maintaining control of disease in others.

Humans↗

B cell loss leading to remission in severe systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) pathogenesis is mediated in part by autoantibodies. We describe a patient with central nervous system lupus who developed a loss of B cells with associated hypogammaglobulinemia and sinopulmonary infections requiring intravenous immunoglobulin. The SLE went into complete remission. Of 18 reported patients with SLE developing persistent hypogammaglobulinemia, only 5 patients including ours had a nearly complete loss of circulating B cells. Of those whose SLE and B cell status was reported, 5/5 with B cell loss and 1/10 without B cell loss experienced a durable response of SLE (p = 0.002). These cases illustrate that B cell ablative therapies may have efficacy for SLE.

Adult↗

C-fibre function in systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) frequently involves the central nervous system (CNS), but to a considerably lesser degree leads to peripheral neuropathy as measured by conventional nerve conduction velocity studies. Neuropathic symptoms are, however, frequently reported. Abnormalities of other nerve fibers than the large myelinated nerves might thus be responsible for such phenomena. Three age matched groups of 44 patients with SLE, 50 patients with rheumatoid arthritis (RA) and 45 healthy controls were investigated with quantitative sensory thermotesting. Warm detection thresholds (WDT) and heat pain detection thresholds (HPDT) were found significantly higher in SLE compared to RA and controls. There were no differences between the RA and the control group. In the SLE group no association to disease duration, medication or CNS abnormalities were found. Neuropathic symptoms and vibration thresholds showed weak associations to WDT. These findings imply that there is an impairment of C-fibre function in SLE. This small fibre neuropathy is probably not part of a generalized diffuse polyneuropathy also affecting large fibres, although this can not be ruled out completely by this study.

Adult↗

Pulmonary manifestations of systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is an autoimmune disease that primarily affects young women. The respiratory system is more commonly involved in SLE than in any other collagen vascular disease. SLE may affect virtually all components of the respiratory system, including the upper airway, lung parenchyma, pulmonary vasculature, pleura, and respiratory muscles. Respiratory system involvement ranges from symptomatic to fulminant and life threatening. This article reviews the pulmonary manifestations of SLE, including drug-induced SLE.

Adult↗