Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0024141 (systemic lupus erythematosus)
44,322 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

SK&F 105685 (N,N-dimethyl-8,8-dipropyl-2-azaspiro[4,5]decane-2-propanamine+ ++ dihydrochloride) is a novel azaspirane with beneficial activity in animal models of autoimmune disease such as adjuvant-induced arthritis and experimental encephalomyelitis in the Lewis rat and lupus-like disease in the MRL mouse. The activity of SK&F 105685 in these models is associated with the induction of non-specific suppressor cell (SC) activity as defined by the ability of cells from drug-treated animals to inhibit the proliferative response of lymphocytes from control animals to concanavalin A. To evaluate the immunotoxicologic potential of SK&F 105685, the effect on immune function of one month of dosing with 1 mg/kg/day of SK&F 105685 was examined in the dog. Differential blood cell counts and ex vivo immune function assays were performed using blood collected before dosing on days 1 (baseline), 15 and 29, of the study. Immune function assays were performed on spleen cells on day 30. Under the conditions of the study, SK&F 105685 displayed pharmacological activity as demonstrated by the induction of splenic SC activity. The drug did not affect the total number or relative percentages of the various white blood cell types present in peripheral blood and did not cause generalized immunosuppression. The ability of peripheral blood lymphocytes or spleen cells to produce IL-2 or proliferate in response to mitogenic stimulation was not affected by drug treatment. SK&F 105685 also failed to affect the candidacidal activity of polymorphonuclear leucocytes and spleen cells indicating that it is unlikely to compromise nonspecific resistance to infection. SK&F 105685 however, was able to inhibit the generation of a specific in vitro antibody response to sheep red blood cells (SRBC) by splenocytes from treated animals. Inhibition of the anti-SRBC antibody response was also observed upon addition of the drug to normal spleen cells. Addition of the drug at different time points during the culture period indicated that SK&F 105685 was interfering with an event(s) occurring during the first 72 h of culture. Taken together, these results suggest that, in a therapeutic setting, SK&F 105685 is unlikely to compromise the immune status of the host as it can down-regulate a specific immune response without causing generalized immunosuppression.
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PMID:Effects of SK&F 105685, a novel anti-arthritic agent, on immune function in the dog. 846 15

Hydroxychloroquine has several less well-known actions that may have clinical relevance in treating systemic lupus erythematosus (SLE). (1) Hydroxychloroquine has a possible anti-thrombotic action. It is a platelet inhibitor and appears to decrease the risk of thromboembolism in patients with anticardiolipin antibodies. (2) Hydroxychloroquine is associated with lower serum cholesterol and low-density lipoprotein levels compared to those present in patients who are taking corticosteroids but not antimalarials for SLE. (3) It may also decrease abnormal levels of cytokines. Interleukin-6 (IL-6), soluble CD8 and soluble IL-2 receptors (sIL-2R) are lower in patients taking antimalarials compared to those on corticosteroids alone or on neither medication. Serum levels of CD8 and sIL-2R decrease after 6 weeks of hydroxychloroquine treatment. These findings may help explain the favorable response of SLE patients treated with antimalarials.
Lupus 1993 Feb
PMID:The relevance of antimalarial therapy with regard to thrombosis, hypercholesterolemia and cytokines in SLE. 848 65

Thymulin is a nonapeptide hormone isolated from the thymus gland. It has immunomodulatory effects which have not yet been well defined. Its major actions have been shown to be on T-cells and their immature precursors. In this study, thymulin was tested in vitro for its effect on the release of IL-1 alpha, IL-2, IL-6 and TNF alpha from peripheral blood mononuclear cells (PBMC) obtained from normal volunteers and patients with active systemic lupus erythematosus (SLE). In our experiments, PBMC (stimulated with LPS or PHA) were cultured for 24 h in the presence of 1,100 or 1,000 ng/ml of thymulin. Supernatants were subsequently assayed for cytokine activities using commercially available ELISA (IL-2, IL-6 and TNF alpha) and RIA (IL-1 alpha) kits. Thymulin (1 ng/ml) resulted in a significant (p < 0.01) increase in IL-1 alpha in the volunteers and a significant (p < 0.05) inhibition of this cytokine at all dose levels tested in SLE patients, whose basal levels of IL-1 alpha were significantly (p < 0.05) higher. Thymulin significantly (p < 0.05) inhibited IL-2 only in SLE patients at 1,000 ng/ml. At all dose levels tested, thymulin significantly (p < 0.01) inhibited IL-6 in volunteers, and, only at 1,000 ng/ml, it significantly (p < 0.05) inhibited it in patients with SLE. At the 1,000 ng/ml dose level, TNF alpha was significantly (p < 0.05) inhibited in both volunteers and SLE patients, whose basal levels of this cytokine were significantly (p < 0.05) higher.(ABSTRACT TRUNCATED AT 250 WORDS)
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PMID:Thymulin modulates cytokine release by peripheral blood mononuclear cells: a comparison between healthy volunteers and patients with systemic lupus erythematosus. 850 50

Systemic lupus erythematosus (SLE) is an autoimmune disease with a clear imbalance in the network made up of different cytokines. However this statement has been derived from studies which have focused on the analysis of some specific cytokines and few have simultaneously analyzed those cytokines that could be involved in the pathogenesis of SLE. Therefore, we decided to analyze interleukin IL-1b, IL-2, IL-4, IL-6, IL-10, tumor necrosis factor-a (TNF-a) and gamma interferon (IFN-g) gene expression in peripheral blood mononuclear cells from 17 women with SLE and 10 normal females by a coupled reverse transcriptase-polymerase chain reaction technique. High gene expression of IL-4, IL-6, IL-10 and TNF-a was found in SLE patients as compared to normal subjects. The expression of IL-1b, IL-2 and IFN-g genes was low or undetectable. The resulting high level of cytokines with strong effect on proliferation and differentiation of B lymphocytes in SLE could be responsible for the characteristic B cell hyperactivity and autoantibody production seen in SLE.
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PMID:High levels of TH2 cytokine gene expression in systemic lupus erythematosus. 852 28

In serum and plasma from SLE patients, we have detected elevated levels of factors which regulate proliferative responses of CTLL cells to IL-2. Serum samples containing these factors have dose-dependent dual inhibitory and stimulatory activities on the proliferation of this IL-2-dependent T lymphocyte cell line. At high concentrations, the serum factors inhibit the proliferative responses of CTLL cells to IL-2. At low concentrations, they synergise with IL-2 stimulating the growth of cells. Similar inhibitory activity, but with lower titre, was also found to be elevated in sera of some MRL/lpr mice, an animal model of SLE. Functional characterisation of the serum factors shows that: (1) the inhibitory activity cannot be neutralised by exogenous IL-2; (2) the stimulatory activity is not due to the presence of serum IL-2 but synergy of the factor with IL-2; (3) the factors bind directly to CTLL cells but they do not bind to protein A; and (4) the serum factors are not dialysable but heat labile. The possible pathological implications of the serum factors, particularly for the defective T cell functions in lupus disease, are discussed.
Lupus 1995 Aug
PMID:Dual inhibitory and stimulatory activities in serum from SLE patients and lupus mice that regulate the proliferation of an IL-2-dependent T cell line. 852 27

In the BXSB autoimmune disease-prone mouse strain, male mice develop severe lupus-like symptoms and die early in life (4-6 mo), whereas females do not. We have previously demonstrated that profound phenotypic and functional changes occur with age in CD4+ cells from BXSB males. CD4+ cells from males (4 mo old) were predominantly CD44high, CD45RBlow, and MEL-14low (activated/memory phenotypes), while the reciprocal phenotypes characteristic of naive cells were prevalent in age-matched females and young adult males (2 mo old). CD4+ cells from older males proliferated less and produced less IL-2 and IFN-gamma than cells from either females or young males in response to immobilized anti-CD3 mAb. We tested the effect of CTLA4Ig treatment on the progression of disease in BXSB males. CD4+ cells from CTLA4Ig-treated mice at 4 mo of age were predominantly CD44low, CD45RBhigh, and MEL-14high phenotypes that were identical with those observed in CD4+ cells from young (3-mo-old) females. In contrast, control male mice treated with IgG2a accumulated the CD4+ memory phenotype. CD4+ cells from 4-mo-old male CTLA4Ig-treated mice proliferated and produced IL-2 at levels similar to those of cells from females in response to immobilized anti-CD3 mAb. Furthermore, in contrast to IgG2a-treated mice, female and CTLA4Ig-treated male mice at 4 mo of age produced no anti-chromatin Abs. Three of four male mice injected with CTLA4Ig until 6 mo of age appeared healthy at 8 mo of age, whereas all five of IgG2a-treated control males died by 6 mo of age. These 8-mo-old CTLA4Ig-treated males showed variable resistance to autoimmunity as well as function and phenotype marker expression, and a less striking glomerulonephritis than 4-mo-old untreated males. The results of this study demonstrate that the rampant T cell activation and T cell dysfunction that occur in male BXSB mice by 4 mo of age are abrogated by blocking the CTLA4-dependent costimulatory signal(s). They also show that treatment with CTLA4Ig can suppress the pathogenesis of disease and increase longevity.
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PMID:Intervention of CD4+ cell subset shifts and autoimmunity in the BXSB mouse by murine CTLA4Ig. 855 6

Defective T cell functions, including IL-2 production and proliferation, have been shown in SLE patients. After T cell stimulation (first signal), a costimulatory signal (second signal) is required to achieve complete T cell activation. Main costimulatory signals are provided to T cells by B7 antigens (CD80 and CD86, expressed on antigen-presenting cells (APC)) upon interaction with its receptor, the CD28 molecule expressed on T cells. The aim of this study was to investigate the role of CD28/B7 interactions in the impaired T cell responses of SLE patients. We show that stimulation of T cells with phytohaemagglutinin (PHA) in the presence, but not in the absence, of anti-CD28 MoAb or B7+ cells results in tyrosine phosphorylation of specific substrates, transcription of mRNA and production of IL-2 that is indistinguishable in SLE patients and healthy controls. Moreover, proliferation of costimulated T cells from SLE and controls was specifically abrogated by blocking the CD28/B7 interactions by means of addition to the culture of the CTLA4-Ig fusion protein. However, in most patients activated APC failed to up-regulate B7 molecules, giving rise to ineffective costimulatory signalling to T cells. These results indicate that the CD28/B7 costimulatory pathway is defective in SLE patients.
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PMID:Defective B7 expression on antigen-presenting cells underlying T cell activation abnormalities in systemic lupus erythematosus (SLE) patients. 860 37

Systemic lupus erythematosus (SLE) manifested with multiple autoantibodies production and glomerulonephritis, is the best example of systemic autoimmune diseases. To further elucidate the role of cytokines and the potential involvement of natural killer cells (NK cells) in the pathogenesis of lupus, phenotypic analysis of peripheral blood mononuclear cells (PBMC), NK cells cytotoxicity and cytokines production pattern of SLE patients and normal controls were examined. In addition, the effect of a variety of cytokines on anti-dsDNA antibodies production was also investigated. Our results showed that: (a) there was an increased percentage of memory T cells and decreased percentage of NK cells in SLE patients when compared to normal controls (p < 0.05); (b) a decreased production of cytokines like gamma-IFN in mitogen-stimulated PBMCs was also noted in SLE patients; (c) cytolytic activity of NK cells was markedly reduced in SLE patients (p < 0.05); (d) spontaneous secretion of IgG anti-dsDNA antibodies by B cells isolated from SLE patients could be inhibited by gamma-IFN, but not by IL-2, IL-4 and IL-5. These data suggested that decreased functions of NK cells and related type 1 T helper cells be closely related to the immune dysregulation and autoantibodies production in SLE.
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PMID:Phenotypic and functional analysis of natural killer cells in systemic lupus erythematosus patients. 860 62

Antigen-activated T cells of the CD4(+)CD8(-) phenotype are susceptible to antigen receptor-stimulated cell death. This form of apoptotic cell death has been shown to be dependent on the expression of the Fas (CD95) antigen and can occur via an autocrine mechanism involving the concomitant up-regulation of Fas and its ligand on activated T cells. Mutation in genes encoding Fas (Ipr) and the Fas ligand (gld) contribute to the development of an autoimmune syndrome similar to systemic lupus erythematosus in mice. These observations led to the suggestion that the Fas signaling pathway is an important regulator of immune responses in vivo. Here we evaluated the importance of the Fas pathway in regulating immune responses by male antigen-specific CD4(-)CD8(+) T cells. We found that the in vivo elimination of these activated cells was independent of Fas expression by these cells. However, the elimination of these activated cells was inhibited by the transgenic expression of Bcl-2, a protein that inhibits multiple forms of apoptotic cell death. The transgenic Bcl-2 protein also inhibited the death of male antigen-activated cells following IL-2 deprivation. Cell death resulting from IL-2 deprivation occurred efficiently in male antigen-activated Fas- cells. We propose that the rapid deletion of male antigen-activated Fas- cells in vivo is due to limiting amounts of IL-2 that are available in the microenvironment of the activated cells at the peak of the response.
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PMID:Fas (CD95)-independent regulation of immune responses by antigen-specific CD4-CD8+ T cells. 867 54

Studies from our laboratory indicate that n-3 (fish oil, FO) lipids at 10% (w/w) in a nutritionally adequate, semipurified diet, and supplemented with equal levels of antioxidants, extended the life span of lupus-prone (NZB/NZW)F1 (B/W) female mice as compared to n-6 (corn oil, CO) lipids. The early rise of autoimmune disease in CO-fed mice was closely linked to the loss of T-cell function. Both IL-2 production and IL-2 receptor expression were reduced due to the loss of naive T-cells and a rise in memory T-cells. Proliferative response to both mitogens and superantigens (staphylococcal enterotoxins A and B) was higher in FO-fed 6.5-mon-old mice. These changes paralleled decreased PGE2 production by splenic cells from FO-fed mice. Analysis of mRNA expression in different organs revealed differential effects of dietary lipids. In FO-fed mice, transforming growth factor beta 1 (TGF beta 1) expression was decreased in kidneys, but splenic tissues had higher expression of TGF beta mRNA. As TGF beta promotes programmed cell death (PCD), we studied the effects of CO and FO on PCD rates in lymphocytes. Both propidium iodide staining and DNA fragmentation were elevated in lymphocytes of FO-fed mice when compared to CO-fed mice of similar age. Also, increased PCD correlated closely with increased Fas gene expression. Thus, in addition to various other antiinflammatory effects, dietary FO appears to increase PCD and prevent accumulation of self-reactive immune cells in lymphoid organs. Further studies are required to dissect the pro- and antiinflammatory mechanisms associated with dietary n-3 and n-6 lipids in modulating autoimmune disorders or malignancy during aging.
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PMID:Modulation of antioxidant enzymes and programmed cell death by n-3 fatty acids. 872 1


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