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Ocular manifestations of systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is a chronic, immunologic disorder that may affect multiple organ systems. Keratoconjunctivitis sicca is the most common ocular manifestation, but visual morbidity is usually due to retinal and neuro-ophthalmic manifestations of the disease. Ocular manifestations of lupus are a reflection of systemic disease. The presence of ocular manifestations should alert the clinician to the likely presence of disease activity elsewhere. Therefore, all patients with ocular lupus should be carefully evaluated for systemic involvement to detect potentially treatable and preventable complications of the disease. In addition, the ophthalmologist should include SLE in the differential diagnosis of many retinal vascular and neuro-ophthalmic disorders. The ophthalmologist may play an important role in the care of patients with SLE, since ocular inflammatory lesions may precede potentially serious extraocular disease.

Diagnosis, Differential↗

Aberrant HS1 molecule in a patient with systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is an autoimmune disease characterized by the activation of autoreactive B lymphocytes, which are supposed to carry aberrant signal transduction after the stimulation of B-cell receptor (BCR). To investigate abnormalities in BCR-mediated signaling pathway in lupus B lymphocytes, we analyzed HS1, a molecule downstream of BCR, in 80 Japanese SLE patients. We identified 37 amino acid deletion of HS1 in a 25-year-old female patient, and the aberrant HS1 lacked a part of a functional motif. Analysis of genomic DNA revealed that the aberrant HS1 was caused by exon skipping. Family study showed that the patient as well as her father and sister are heterozygous for the abnormality. WEHI-231 cell, a mouse B cell line, transfected with the aberrant HS1 displayed a significantly increased cell death upon cross-linking of BCR. Additionally, peripheral B lymphocytes from the patient exerted increased apoptosis after BCR stimulation compared to those from control SLE patients. These data suggest that the aberrant HS1 molecule may transmit an accelerated signal after BCR stimulation and may play a role in the activation of autoreactive B lymphocytes.

Adaptor Proteins, Signal Transducing↗

Passively acquired autoimmunity and the maternal fetal dyad in systemic lupus erythematosus.

Neonatal lupus syndromes consist of transient cutaneous and hematologic abnormalities and permanent cardiac disorders all of which result from a common pathogenetic mechanism, the passive transfer of maternal autoantibodies. Detrimental antibodies such as SSA/Ro and SSB/La gain access to the fetal circulation via the normal active transport system of the trophoblast tissue which is operative after 20 weeks gestation. Despite functional maturation of the cardiac conduction system by 16 weeks gestation, fetal bradycardias are most often encountered after this time. Several lines of evidence are advanced in this review to support the role of myocarditis as the initial consequence of autoantibody attack on the fetal heart. The end result of this inflammatory insult is permanent fibrosis manifest as complete congenital heart block (CCHB). Despite the clearly demonstrated presence of SSA/Ro and SSB/La in fetal tissues as well as their fluctuation in quantity during the cell cycle, the precise accessibility of these antigens to their respective autoantibodies in unknown at the present time. However, ultraviolet light is reported to induce cell surface expression of SSA/Ro on cultured keratinocytes. The recognition of CCHB by fetal echocardiogram is presented. The rationale for the use of dexamethasone which crosses the placenta in an active form to treat fetal immune effector functions is discussed. Intense maternal plasmapheresis in an attempt to rapidly decrease maternal autoantibodies may provide another approach to the management of CCHB. Through increasing knowledge of this model of "passively acquired pure" systemic lupus erythematosus, insights into mechanisms of tissue injury and strategies for treatment will emerge.

Antibodies↗

Identification of chromosome intervals from 129 and C57BL/6 mouse strains linked to the development of systemic lupus erythematosus.

Systemic lupus erythematosus is an autoimmune disease in which complex interactions between genes and environmental factors determine the disease phenotype. We have shown that genes from the non-autoimmune strains 129 and C57BL/6 (B6), commonly used for generating gene-targeted animals, can induce a lupus-like disease. Here, we conducted a genome-wide scan analysis of a cohort of (129 x B6)F2 C1q-deficient mice to identify loci outside the C1qa locus contributing to the autoimmune phenotype described in these mice. The results were then confirmed in a larger dataset obtained by combining the data from the C1q-deficient mice with data from previously reported wild-type mice. Both analyses showed that a 129-derived interval on distal chromosome 1 is strongly linked to autoantibody production. The B6 genome contributed to anti-nuclear autoantibody production with an interval on chromosome 3. Two regions were linked to glomerulonephritis: a 129 interval on proximal chromosome 7 and a B6 interval on chromosome 13. These findings demonstrate that interacting loci between 129 and B6 mice can cause the expression of an autoimmune phenotype in gene-targeted animals in the absence of any disrupted gene. They also indicate that some susceptibility genes can be inherited from the genome of non-autoimmune parental strains.

Animals↗

Systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is a complex multisystem autoimmune disease of unknown aetiology that is subject to period of exacerbation and remission. Treatments aimed at controlling disease activity remain primarily by immunosuppression, the prescribing of which is dependent on the development of any multisystem complications. With the establishment of dedicated lupus clinics using a multidisciplinary team approach, prognosis is better and treatment options continue to improve.

Female↗

Defective early T and T-dependent B cell activation in systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is characterized by autoantibody production of unknown origin. Since T-B cell interaction is a key event to produce antibodies, we investigated this interaction through study of CD69, CD40 ligand (CD40L) and CD23 expression (three very early activation antigens). Peripheral blood mononuclear cells (PBMC) from inactive lupus patients were studied following culture with either medium alone, anti-CD3 monoclonal antibody (mAb), recombinant interleukin-4 (rIL-4) or phorbol myristate acetate (PMA)+/-ionomycin. Analysis of CD23 expression on lupus B cells in basal conditions and after anti-CD3 challenge of PBMC, a reflection of cognate interaction between T and B cells, was clearly defective. Conversely, CD23 expression on lupus B cells following non-cognate T cell signals (rIL-4) was preserved. CD69 and CD40L expression was also impaired in lupus T cells following anti-CD3 challenge. Nonetheless, activation by means of PMA and/or ionomycin was preserved both in T cells (CD69 and CD40L expression) and in B cells (CD23 expression). These results indicate that B cells from inactive lupus patients display a normal early response to direct B-cell stimuli. Conversely, T-dependent B-cell stimuli are clearly defective in SLE patients in remission. These results indicate that T-B cognate interaction related to defective T cell activation located between surface membrane and protein kinase C (PKC)/ionomycin function is an intrinsic characteristic of these patients.

B-Lymphocytes↗

Diminished response to an inhibitory signal in lymphocytes from patients with systemic lupus erythematosus.

Systemic lupus erythematosus is an autoimmune disease characterized by B-cell hyperactivity, resulting in polyclonal hypergammaglobulinaemia. One mechanism potentially resulting in excessive immunoglobulin synthesis is a diminished response to inhibitory signals. To test this hypothesis, anti-IgG antisera was used to inhibit pokeweed mitogen activation of cultured lymphocytes from lupus patients and controls. Inhibition of IgG secretion by B cells from lupus patients required more than 75 times as much anti-IgG as normal controls (P less than 0.005), indicating that lupus lymphocytes are hyporesponsive to this inhibitory signal. Similar studies with DR3+ controls demonstrated that diminished responsiveness to anti-IgG inhibition may in part be associated with the HLA-DR3 allele. Defects in this inhibitory mechanism may play a role in the B-cell hyperactivity observed in lupus.

Antibodies, Anti-Idiotypic↗

Tophaceous gout in young patients with systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) and gout have been associated infrequently. We describe 3 young adults with SLE who developed tophaceous gout relatively early in the course of their disease. All were underexcretors of uric acid but were studied after the development of renal disease; 2 were treated with diuretics. In 2 cases, gout became obvious while lupus was quiescent.

Adult↗

The genetics of systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is a disease characterised by diverse clinical manifestations and the presence of multiple autoantibodies. There are multiple aetiological factors involved in its pathogenesis. Genetic factors do play an important role and the major histocompatibility complex has been studied extensively and many human leukocyte antigen (HLA) associations have been reported. Twin and familial lupus studies confirm the importance of genetic factors in the development of SLE. Reported HLA associations range from that of HLA-DR3 in Caucasians to HLA-DR2 in Chinese, Japanese and American Blacks. These associations however may only represent linkage disequilibrium and not the actual susceptibility genes. Other non-major histocompatibility complex genes have also been reported to play important roles in the pathogenesis of lupus. The advent of molecular biological techniques has advanced the understanding of susceptibility genes in many diseases. The use of microsatellite genome scanning to study multiplex lupus families has yielded a wealth of information on clusters of susceptibility genes. The identification of these genes will be an important advance in the understanding of this complex disease.

Animals↗

CpG DNA: a pathogenic factor in systemic lupus erythematosus?

Systemic lupus erythematosus (SLE) is a multifactorial disease of unknown etiology. Characteristic features of SLE include (1) polyclonal B cell activation, (2) overexpression of the immune stimulatory cytokine interleukin-6 (IL-6), (3) defective tolerance to self antigens, and (4) production of anti-DNA antibodies (Ab). Bacterial infection has been suspected as a triggering factor for lupus. Bacterial DNA differs from vertebrate DNA in the frequency and methylation of CpG dinucleotides. These CpG motifs in bacterial DNA induce a variety of immune effects, including (1) polyclonal activation of murine and human B cells, (2) IL-6 secretion, and (3) resistance to apoptosis, thereby potentially allowing the survival of autoreactive cells. These results suggest that microbial DNA could therefore be a pathogenic factor in SLE. SLE patients have elevated levels of circulating plasma DNA which is reportedly enriched in hypomethylated CpGs. Genomic DNA is also hypomethylated in SLE. The purpose of this review is to summarize the immune effects of CpG motifs and to present the evidence for their possible involvement in the pathogenesis of SLE.

Base Sequence↗

Echocardiographic abnormalities and antiphospholipid antibodies in patients with systemic lupus erythematosus.

OBJECTIVE: Lupus anticoagulant and anticardiolipin antibodies (aCL) have been associated with thrombosis, recurrent abortion, and thrombocytopenia in patients with systemic lupus erythematosus (SLE), but their relationship with cardiac disease is less clear. The purpose of this study was to evaluate the association between antiphospholipid antibodies (aPL) and echocardiographic abnormalities in patients with SLE. METHODS: A total of 70 consecutive patients and 42 control subjects underwent M-mode, 2-dimensional and Doppler echocardiography and tests for lupus anticoagulant, aCL IgG, IgM, and IgA. Lupus anticoagulant was assayed with the dilute Russell viper venom time, and aCL IgG, IgM, and IgA were measured by an enzyme-linked immunosorbent assay (ELISA). RESULTS: Lupus anticoagulant showed a prevalence of 10%. As a whole, aCL had a prevalence of 44.3% and aPL had a prevalence of 50%. Patients with echocardiographic abnormalities had a prevalence of 54.3% and showed a trend towards an association with aCL IgG (P=0.06). The presence of pulmonary hypertension (PH) was significantly associated with aCL IgG (p=0.02). CONCLUSION: aCL IgG was significantly associated with PH and showed a strong trend towards an association with echocardiographic abnormalities taken together. These findings suggest a role for aCL IgG in the development of lupus cardiovascular disease.

Adolescent↗

Gender differences in autoimmune diseases: estrogen increases calcineurin expression in systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) predominantly affects women (9:1 compared to men) of childbearing age and often decreases its intensity in postmenopausal women, suggesting that sex hormones play a role in its pathogenesis. Comparison of steady-state levels of calcineurin mRNA using RNase protection assays revealed increased calcineurin expression in response to estradiol in cultured T cells from nine female lupus patients. Calcineurin mRNA levels did not increase significantly in T cells from eight age-matched normal control female volunteers. Estrogen-dependent calcineurin mRNA increased in a dose-dependent fashion, while progesterone and dexamethasone did not increase calcineurin mRNA in patient cells. Lupus T cell calcineurin mRNA increased in response to estradiol at 6 h but not at 3 h. Calcineurin phosphatase activity increased in lupus T cell extracts after incubation of cells with estradiol, while phosphatase activity in normal T cells was unaffected by estrogen. Calcineurin expression in T cells from patients with vasculitis and rheumatoid arthritis taking medications similar to those taken by the lupus patients was unaffected by estradiol. This study provides the first evidence for a molecular marker of estrogen action in lupus patients and suggests that estrogen-dependent changes in lupus T cell calcineurin could alter proinflammatory cytokine gene regulation and T-B cell interactions.

Adult↗

Systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is the most common of the connective tissue disorders and can involve virtually any organ in the body. It is associated with pleuropulmonary manifestations in well over 50% of cases. Pleuritis with or without pleural effusion is the most common manifestation and can be particularly troublesome to manage but is rarely life-threatening. More serious manifestations in the lung include acute lupus pneumonitis with or without alveolar haemorrhage, chronic lupus pneumonitis and pulmonary hypertension. These all contribute significantly to overall mortality in SLE. The association between SLE and the antiphospholipid syndrome, leading to venous thrombosis and pulmonary embolism, is well recognized. Up to 20% of all cases of SLE present in childhood and many of these have pulmonary features at presentation or during the course of their illness. Sepsis is one of the main causes of death in SLE and pulmonary sepsis in these often immunocompromised patients contributes a significant proportion. Several drugs can produce a clinical syndrome that has many of the clinical and immunological features of SLE. Pleuritis may be seen in up to half of these cases of drug induced SLE. The development of SLE and conditions such as sarcoidosis or asbestosis in the same patient may represent a simple coincidence but there is some evidence for a closer association between these disorders.

Humans↗

Anti-DNA autoantibodies and systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is a systemic autoimmune disease that affects most of the organs and tissues of the body, causing glomerulonephritis, arthritis, and cerebritis. SLE can be fatal with nephritis, in particular, predicting a poor outcome for patients. In this review, we highlight what has been learned about SLE from the study of mouse models, and pay particular attention to anti-DNA autoantibodies, both as pathological agents of lupus nephritis and as DNA-binding proteins. We summarize the current approaches used to treat SLE and discuss the targeting of anti-DNA autoantibodies as a new treatment for lupus nephritis.

Animals↗

The roles of interleukin-6 and interleukin-10 in B cell hyperactivity in systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is an autoimmune disease most prevalent in women between the ages of twenty and sixty. Successful treatment remains challenging due to a lack of understanding of the underlying mechanisms and multiple symptoms ranging from skin rashes to glomerulonephritis. The pathogenesis of SLE has been linked to a B-cell hyperproliferation unique to afflicted patients. These B-cells generate large quantities of IgG autoantibodies, ultimately capable of leading to lupus nephritis and renal failure. The significance of cytokines in SLE and in murine lupus, a related disease in mice, has been debated, particularly with respect to B-cell activity. Potential roles of auto-regulatory and inflammatory cytokines have been investigated. In particular, IL-6 and IL-10 have been shown to be key factors in regulating autoantibody-secreting B-cell activity in lupus. Here, we will provide a critical overview of our current knowledge of the regulatory roles of these two cytokines in SLE.

Animals↗

Systemic lupus erythematosus.

Systemic lupus erythematosus in children and adolescents is a multisystem autoimmune disease with a great variability in disease presentation and course. This article summarizes available epidemiologic data, clinical patterns, approaches to investigation and treatment, and recent outcome data.

Adolescent↗

Systemic lupus erythematosus.

Systemic lupus erythematosus is a challenging diagnosis. This article provides an overview of this disorder and what nurses need to know to provide care to patients with this potentially life-threatening disorder.

Anti-Inflammatory Agents↗

Systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is a syndrome commonly affecting young women. The clinical manifestations are extremely varied and any major organ of the body may be involved. Misdiagnosis is not uncommon in early SLE where symptoms and signs may be few. Auto-antibodies to DNA, RNA and other cell nucleus antigens are frequently present. Circulating immune complexes may deposit in major organs, causing inflammation and tissue damage by a number of mechanisms. The lupus disease is marked by exacerbations and remissions. Management is dependent on accurate assessment of clinical activity and severity. Patient education and co-operation in management affect outcome of the disease. With good management, the ten year survival may exceed 90%.

Female↗