View clinical trials related to Arthritis, Rheumatoid.
Filter by:The administration of Janus kinase (JAK) inhibitors as well as biological disease-modifying anti-rheumatic drugs has dramatically improved even the clinical outcomes in rheumatoid arthritis (RA) patients with inadequate response to methotrexate (MTX). Upadacitinib is a selective JAK1 inhibitor to be approved for use in RA. Nearly half of patients added JAK inhibitors including upadacitinib can achieve clinical remission in RA patients with inadequate response to MTX. As the next step, it is the great issue whether disease activity can be maintained in good condition even if MTX is discontinued after achieving clinical remission in patients treated with the combination of JAK inhibitors and MTX. Thus, it is desirable to investigate the maintenance of clinical non-relapse after discontinuation of MTX in RA patients with clinical remission during treatment with upadacitinib plus MTX. In this study, we will evaluate the proportion of patients who maintained nonclinical relapse after discontinuation of MTX in patients with RA who achieved clinical remission after treatment with upadacitinib plus MTX. We will also use musculoskeletal ultrasound (MSUS) assessments to determine whether discontinuation of MTX can be maintained nonclinical relapse in RA patients achieving clinical remission.
Evaluation of spironolactone, a well-known cardiological treatment, in patients with rheumatoid arthritis (RA). The hypothesis is that spironolactone, through its anti-inflammatory and anti-fibrosis actions, decreases RA's activity. The primary objective is to assess the efficacy of spironolactone on RA activity by evaluating the proportion of patients achieving DAS28-CRP < 3.2 at 3 months (comparison between spironolactone and placebo arms). CRP (C reactive protein)
The administration of Janus kinase (JAK) inhibitors as well as biological disease-modifying anti-rheumatic drugs has dramatically improved even the clinical outcomes in rheumatoid arthritis (RA) patients with inadequate response to methotrexate (MTX). The dysregulation of JAK-signal transducer and activator of transcription (STAT) pathways via overproduction of cytokines, such as interleukin-6 (IL-6) is involved in the pathogenesis of RA. Filgotinib is a selective JAK1 inhibitor to be approved for use in RA. Filgotinib is effective in suppressing disease activity and preventing the progression of joint destruction due to inhibition of the JAK-STAT pathway. IL-6 inhibitors such as tocilizumab also inhibit the JAK-STAT pathways due to inhibition of IL-6 signaling. We will evaluate whether the effectiveness and safety of filgotinib monotherapy is non-inferior to those of tocilizumab monotherapy in RA patients with inadequate response to MTX.
The rationale for this study is to use immune molecule-specific drug treatment to leverage a mechanistic understanding of the brain changes that drive sickness behaviour. This will combine current therapy with innovative neuroimaging technologies to obtain data in humans that has hitherto only been available in animal studies. Data supporting the role of inflammatory molecules in sickness behaviours and other cognitive disorders are increasingly compelling. A putative mechanism linking inflammatory proteins to sickness behaviour is Tumour Necrosis Factor (TNF)-driven increases in extracellular glutamate leading to changes in neural function and brain network integrity and ultimately to sickness behaviour. Investigators hypothesise that TNF antagonism will effect changes in brain network connectivity and sickness behaviour score, that Rheumatoid Arthritis (RA) patients will show changes in brain network connectivity and glutamate quantification in the brain and that RA patients will show changes in monocyte infiltration into the brain that are correlated with changes in sickness behaviours. This is a randomised, placebo-controlled waiting list study. All patients will be eligible for anti-TNF treatment i.e. moderate to severe active disease as defined by Physician. Participants will be randomised to immediate (fast tracked) treatment or to treatment after 6-8 weeks (the routine waiting time). The latter group will receive placebo during the treatment phase.
The COVID-19 VaccinE Response in Rheumatology patients (COVER) study is a multicenter randomized controlled trial designed to evaluate the efficacy and safety of a mRNA COVID-19 vaccine supplemental dose (booster) in patients with autoimmune conditions and to evaluate the impact of different immunomodulatory therapies on vaccine response. The investigators propose to recruit up to 1000- patients with autoimmune conditions who have a completed 2-dose regime of mRNA COVID-19 vaccine (>28 days prior) and who are planning to receive an additional dose of mRNA COVID-19 vaccine (i.e., booster). Participants in this study will be men and women 18 years and older with confirmed rheumatic disease, including psoriatic arthritis (PsA), axial spondyloarthritis (SpA) and rheumatoid arthritis (RA) who express a decision to receive the mRNA vaccination booster within 30 days post enrollment. A primary objective of this study is to test the hypothesis that holding certain medications for a brief period of time around the time of COVID-19 vaccination might improve the response to the vaccine while not unduly having safety concerns with respect to the effects of their disease. During the study, participants using the immunomodulatory therapies described outlined in protocol will be randomized to temporarily hold (for 2 weeks) versus continue after they receive the COVID-19 vaccine supplemental dose. Patients who temporarily stop one of their medications for their autoimmune inflammatory disease may be at increased risk of flares of their autoimmune condition. If these occur, they are expected to occur within 2 - 4 weeks of treatment interruption. Detailed protocol outlines the hold schedules for the therapies to be randomized in this study.
One-center observational study aimed at determining the survival of patients with rheumatoid arthritis treated with targeted synthetic disease-modifying drugs (FAMEsd) and biologic disease-modifying drugs (FAMEb). These patients will be administered a series of medications and a follow-up will be carried out to analyze their evolution.
The objective is to identify modifiable clinical factors and neurobiological pathways that lead to the development of chronic pain in patients with early rheumatoid arthritis. Participants will undergo quantitative sensory testing, a type of testing that involves assessing response to well-defined, quantifiable painful stimuli, at 0, 3, and 12 months. A subset of participants will also undergo magnetic resonance imaging at 0 and 12 months to assess neuroimaging markers that have previously been shown to be involved in chronic pain.
This trial will study the safety and efficacy of intravenous infusion of cultured allogeneic adult umbilical cord derived mesenchymal stem cells for the treatment of Rheumatoid Arthritis
This study will evaluate the safety, tolerability, and effects of stimulating the splenic neurovascular bundle (NVB) with the Galvani System, which consists of a lead, implantable pulse generator, external components and accessories. The study will consist of 4 study periods, including a Randomized Control Trial period (Period 1), an Open Label period (Period 2), a Treat-to-target period (Period 3), and a Long-term Follow-up period (Period 4). Participants eligible for implant will have active rheumatoid arthritis (RA) and have an inadequate response or intolerance to at least two biologic Disease Modifying Anti-Rheumatic Drugs (DMARDs) or JAK inhibitors (JAKis). A sufficient number of participants will be enrolled so that approximately 28 participants will undergo device implantation.
Despite their efficacy in the treatment of Rheumatoid Arthritis and their partial advantage over traditional bDMARDs ( biological Disease Modifying antirheumatic drugs), JAK inhibitors (JAKi or tsDMARDs) have not gained preference over Tumor Necrosis Factor inhibitors (TNFi) in guidelines or clinical practice. The biggest influence on recent guidelines has been the "Treat To Target" principle (T2T), in which Shared Decision Making (SDM) plays a key part. Patient preference has proven to be a large barrier in treatment adjustments (14- 37%) while patients showed better adherence and higher treatment satisfaction when engaged in Shared Decision Making. From survey studies it is suggested that patient preference and satisfaction will be in favour of oral JAK inhibitors over parenteral biologics.The investigators want to establish the treatment preference of patients with active RA and compare the treatment satisfaction of patients who are given the opportunity to choose between the JAKi filgotinib and TNFi, to the treatment satisfaction of patients who are randomized to the same treatment options. In addition to higher treatment satisfaction and better adherence, the investigators expect to find an improvement in DAS28-, HAQ-, SQUASH- and WPAI-scores and also an improved activity and work productivity.