View clinical trials related to Lupus Erythematosus, Systemic.
Filter by:Background: Systemic lupus erythematosus (SLE) is a disease that affects females nine times more often than males. People with SLE are often treated with cyclophosphamide (CYC). But CYC can damage a woman s ovaries; it may cause infertility. A drug called GnRHa is sometimes given to protect the ovaries during CYC therapy. But no one really knows how effective GnRHa treatment is. This natural history survey will compare women who received GnRHa during CYC therapy with those who did not. Objective: To find out whether GnRHa can help protect women s ovaries during CYC. Eligibility: Women under age 40 years starting CYC treatment with or without GnRHa. Design: This study will do 2 things: It will conduct patient surveys. It will collect data from medical records. Participants will complete a one-time survey. They will answer questions about their menstrual cycle. They will be asked about their history of pregnancy or infertility. Participants can take the survey in 4 ways: On paper, sent through the mail. Online, in a secure web page managed by the NIH. By phone. In person, during a routine visit to the NIH clinic. The survey will take about 30 minutes. Participants medical records will be reviewed. Researchers will look for data about the participants SLE disease. This may include their symptoms and the results of their blood tests. It may also include the details of prior treatments. Researchers will also collect data about participants reproductive history. This may include their personal or family history of infertility. It may include any fertility treatments and any sexually transmitted infections.
This randomized, double-blind, placebo-controlled, non-inferiority crossover study will evaluate the Herpes Zoster Sunbit (HZ/su) vaccine in SLE patients in order to evaluate safety and immunogenicity in patients with variable baseline clinical activities, ages and immunosuppressant exposures. The investigators hypothesize that HZ/su administration will be non-inferior to placebo with respect to the risk of moderate or severe SLE flare(s) occurring within 24 weeks of receiving the first dose of the assigned treatment. In addition, the investigators hypothesize that immunogenicity of the vaccine in SLE patients will be at least 50% of levels observed in healthy subjects from prior large clinical trials.
Interleukin 2 (IL-2) is a critical cytokine for the survival and function of regulatory T cells (LTreg). This cytokine has a dual role in the immune system. IL-2 stimulates immune responses by acting on the intermediate affinity IL-2R receptor, IL-2Rβγ, expressed by conventional T cells (LTconv) during activation, but also contributes to the inhibition of immune responses via LTreg that express the high affinity receptor IL-2Rαβγ. This difference in IL-2 receptor affinity for IL-2 has led to the development of low-dose IL-2 therapy to stimulate LTreg and improve control of excessive inflammation in autoimmune (AID), inflammatory or alloimmune diseases Low-dose IL-2 therapy is being studied in several of these diseases such as systemic lupus erythematosus, type 1 diabetes, alopecia, HCV (hepatitis C virus)-induced vasculitis, atopic dermatitis and chronic allo-transplantation-related graft-versus-host disease (GVHD). Some of these studies have shown an increase in LTreg numbers and an improvement in certain clinical signs. To improve LTreg targeting in autoimmune diseases, inflammatory diseases or GVHD, mutated IL-2s (muteins) have been developed with selective LTreg agonist properties. These IL-2 muteins are linked to an Fc fragment to increase their half-life. Two IL-2 variants (IL-2Vs)-Fc preferentially stimulate STAT5 phosphorylation in LTregs compared to conventional FoxP3- (LTconv) CD4+ or CD8+ T cells
The purpose of the study is to evaluate the long term safety and efficacy of orally administered M5049 in participants with subacute cutaneous lupus erythematosus (SCLE), discoid lupus erythematosus (DLE) and/or systemic lupus erythematosus (SLE) who have completed the 24 week treatment period of Willow study (MS200569_0003 [NCT05162586]).
In order to achieve accurate diagnosis and treatment of the disease, we performed RNA sequencing and ATAC(Assay for Transposase Accessible Chromatin) chromatin open sequencing in lupus patients in the early stage. By comparing with normal controls, other rheumatic immune diseases (rheumatoid arthritis), and before and after treatment, dozens of disease-causing genes independently associated with the disease were identified. Based on the previous omics results, this project will analyze its changes in different outcomes of lupus patients, and use machine learning methods to establish an optimal severe prediction model, so as to build an early diagnosis system based on novel biomarkers and reduce all-cause mortality in patients with treatment failure rate. It is expected to produce good social and economic benefits.
The primary objectives of the study are to evaluate the efficacy of BIIB059 (litifilimab) compared with placebo in reducing skin disease activity measured by the Cutaneous Lupus Activity of Physician's Global Assessment-Revised (CLA-IGA-R) score [Parts A and B (US)] and the Cutaneous Lupus Erythematosus Disease Area and Severity Index Activity (CLASI-A) score [Part B (ROW)] in participants with active SCLE and/or CCLE with or without systemic manifestations and refractory and/or intolerant to antimalarials. The secondary objectives of the study are to evaluate the efficacy of BIIB059 in reducing SCLE and/or CCLE disease activity by CLA-IGA-R, CLASI-A; to evaluate additional efficacy parameters of BIIB059 in reducing SCLE and/or CCLE disease activity; safety; tolerability; and immunogenicity of BIIB059 [Parts A and B].
Systemic lupus erythematosus (SLE) is a heterogeneous autoimmune disease that involve many different organs and display a variable clinical course.The prevalence of SLE varies across gender, race/ethnicity, and geographic regions. SLE demonstrates a striking female predominance with a peak incidence of disease during the reproductive years. In adults, the female to male ratio is 10- Renal involvement is common in SLE and is a significant cause of morbidity and mortality. It is estimated that as many as 90% of patients with SLE will have pathologic evidence of renal involvement on biopsy, but clinically significant nephritis will develop in only 50%. AII is a potent pro-inflammatory modulator with the ability to augment the immune responses in renal and non-renal tissues. Specifically in the kidney, AII stimulates mononuclear cells, favoring hyperplasia and hypertrophy of mesangial, tubular cells and interstitial fibroblasts, and increases expression and synthesis of the extracellular protein matrix leading to fibrosis. Angiotensin II and strong candidate for a mediator of the development and progression of renal disease in SLE has been found to promote glomerular cell proliferation, alter growth factor expression, and activate proinflammatory cytokines, all of which promote glomerulosclerosis
SLE associated immune thrombocytopenia (SLE-ITP) is one of the main clinical manifestations of SLE. Approximately 70% of SLE patients follow a relapsing-remitting course. Similarly, SLE-ITP often relapses during GCs tapering. At the same time, patients with SLE-ITP may suffer from thrombocytopenia and damage to vital organs when they relapse, seriously affecting their lives. Therefore, maintenance therapy after remission is an inevitable choice for SLE-ITP. The SLE guidelines recommend GCs and immunosuppressive agents(ISA) are first-line maintenance treatment in the treatment of SLE-ITP. GCs is indispensable in SLE treatment, but it is associated with a series of side effects, which are related to the dosage and duration of use. How to maintain remission with the most appropriate dose of GCs is a problem that needs to be considered in clinical practice. However, the existing guidelines lack detailed recommendations on the specific use of GCs in maintenance therapy for SLE-ITP, and there is also a lack of relevant clinical studies to guide. The GCs reduction regimen commonly used in maintenance therapy is a gradual reduction after 1 month of adequate GCs therapy, usually by 10% of the original dose every 2 weeks. However, the side effects of this reduction method are obvious, and whether the treatment can be maintained with less cumulative dose and maintenance duration of GCs is an urgent problem to be solved. Clinical observations show that in a small number of patients with relative contraindications to GCs, a more rapid taper can maintain an effective response. Currently, rapid dosing reduction is recommended in both Lupus nephritis(LN) and the ANCA-associated nephritis guidelines of ACR. However, SLE-ITP changes more rapidly than LN. Although similar maintenance responses have been observed in a few patients between rapid dosing reduction and conventional method, relevant clinical studies are lacking. It is necessary to explore the effectiveness of rapid GCs tapering method. Therefore, the investigators plan to conduct a single-center, prospective, randomized design, non-blind, non-inferiority controlled study on the optimization of GCs taper strategy for SLE-ITP maintenance therapy.In this study,sustained response rate and relapse rate within 3 months and 6 months were observed to judge the effectiveness of rapid GCs taper strategy, thus providing a basis for clinical GCs taper strategy.
This study will evaluate the safety, tolerability, pharmacokinetics (PK), pharmacodynamics (PD), and efficacy of KP104 in participants with systemic lupus erythematosus (SLE)-Thrombotic microangiopathy (TMA). The study consists of 2 parts: Part 1 (Dose Optimization) and Part 2 (Proof of Concept). All participants will receive KP104 in combination with standard of care (SOC) for SLE-TMA.
Investigating the physiological effects of the interferons type 1 and 2 (IFNs), and the cytokines Interleukin 6 (IL-6) and tumor necrosis factor (TNF) on the adaptive changes to exercise in patients with systemic lupus erythematosus (SLE). The investigators hypothesize that the pathogenic blockage of IL-6 signalling that occurs in SLE, will decrease the cardiac and metabolic adaptations to aerobic exercise, and this decrease can be related to the IFN signature. 55 patients was included in a 12-week investigator blinded 1:1 randomised high intensity aerobic exercise intervention study.