View clinical trials related to Inflammatory Bowel Diseases.
Filter by:The trial will test the hypothesis that edible structures within plant cells (ginger) will have clinically important anti-inflammatory effects on the gut lining of patients with inflammable bowel disease. To evaluate the safety and tolerability of exosomes with and without curcumin in patients with Inflammatory Bowel Disease (IBD); To estimate the effect of ginger exosomes or curcumin alone or combined with curcumin on the symptoms and disease score in patients with refractory IBD describe toxicities associated with ginger exosomes; to evaluate the effect of ginger exosomes on biomarkers of inflammation.
The main aim of this study is to check the disease activity in people with moderate to severe ulcerative colitis and Crohn's disease. Participants will complete questionnaires about their disease and quality of life on Day 1 clinic visit. They will do this during a standard scheduled appointment with their doctor. Some of this study will also involve collecting information about participants from their medical records.
To develop and train a convolutional neural network to detect and characterize disease severity of inflammatory bowel disease during endoscopy
Given the bidirectionality between psychological distress and disease activity in inflammatory bowel disease (IBD), whereby increased psychological distress exacerbates disease activity and vice versa, psychosocial aspects of IBD care are receiving increased attention. However, proposed interventions are generally resource-intensive and have been tested in majority white populations. While people of color are an increasing segment of the IBD population, they are currently underrepresented in research studies. The purpose of this study is to evaluate the efficacy and implementation of internet-based cognitive behavioral therapy (iCBT) among IBD patients of color with elevated psychological distress.
In this study it will be explored whether the levels of fecal biomarkers are associated with histologic inflammation of the intestinal mucosa and concomitant alteration of the mucosal permeability. The aim of the study is to assess the diagnostic accuracy of fecal biomarkers especially to detect the potential of differentiation between inflammatory and functional gastrointestinal diseases. The following biomarkers will be examined in the stool of the participants: calprotectin, lactoferrin, pmn-elastase, human beta-defensin, zonulin, alpha-antitrypsin.
Background Psoriasis is a common disease which is a source of major distress for patients and costs for the society. Treatments are effective but temporary and relapses occur, preferentially at sites previously involved. Locally, tissue resident memory T cells (TRM) cells prone to produce pathogenic cytokines accumulate in the outer layers of the resolved skin of psoriasis patients under treatment, and can trigger strong inflammatory responses upon reactivation, thus starting the cascade of the relapse. We have recently shown that the skin transcriptional responses after TRM cell activation in healed skin biopsies of patients could predict the time until the disease relapse. How to modify the local pool of TRM cells in the human skin is not known, but several factors leading to the establishment and the persistence of the TRM cells in the skin are suggested. First, the skin microbiota has emerged as a potent actor of the skin immunity, with the capacity to shape the pool of skin T cells in mice. Second, after TRM cells are settled in the skin, their lipid intake will impact their local survival. Last, in addition to these local factors, the gut subclinical inflammation that lead to bacterial translocation can trigger a more global state of inflammation in the body and could drive the local survival of the TRM cells in the skin. Aims Our first aim in this project is to validate a tool to predict psoriasis relapse upon treatment withdrawal in a cohort of patients treated with systemic drugs- the STOPso cohort (Shortening Treatments Of Psoriasis). We will correlate the skin reaction to local TRM activation in resolved lesions to the time before relapse. In parallel, we will characterize several factors likely to participate to the establishment, function and survival of the TRM cells in the skin. We will decipher the skin microbiota and mycobiota; the lipid composition of the outer layer of the skin; the presence of lipopolysaccharide in the blood, in order to better understand what factors should be targeted to modify the skin populations of TRM cells. Methods Patients will be recruited through the Dermatology department of the university hospital of Besançon. We will use skin biopsies from resolved lesions to perform the characterization of the skin responses at the transcriptional level after local TRM activation with OKT-3 antibody compared to control. RNA will be analyzed with Nanostring technologies. For the microbiota analysis, we will use wet swabs and later DNA sequencing. The lipid composition and the circulating LPS will be analyzed after tape stripping, through the LabEx LipSTIC lipidomic platform of the region Bourgogne Franche-Comté. Patients will be followed up at Month 1, Month 6, Month 12 and Month 18 and at time of relapse if it occurs in between those intervals. Data about the disease activity (PASI, quality of life scores) and inter-current events will be registered at each time point. Expected results and Perspectives The final aim of this project is to validate a tool available to clinicians to guide them in their decision to withdraw an efficient treatment in psoriasis, based on the skin reactivity to the resident T cells left locally after resolution of the inflammation. This would help reduce treatment length, and thus toxicities and costs to the health care systems. To open future perspectives, we also want to better understand the reasons why TRM populations tend to be retained in the skin, in order to develop remodeling strategies of the skin TRM populations.
The main purpose of this study is to evaluate the long-term efficacy of mirikizumab in pediatric participants with ulcerative colitis (UC) or Crohn's disease (CD). The study will last about 172 weeks and may include up to 44 visits.
The research is being done to study the immune responses to COVID-19 vaccination in patients with rheumatic diseases.
Individuals susceptible to SARS-CoV-2 and the illness it causes (COVID-19) are comprised of heterogeneous populations with a large risk spectrum for more severe disease. Pre-existing risk factors for a more severe course include respiratory and cardiovascular disease, morbid obesity, diabetes, underlying kidney or liver disease, and immunocompromised status. Whether children and young adults with inflammatory bowel disease (IBD) or juvenile idiopathic arthritis (JIA) receiving immunomodulating biologic and other therapies which are known to increase risk of viral infection are at increased risk of complications from COVID-19 or post-infectious co-morbidities, including the recently described multi inflammatory syndrome (MISC), is entirely unclear. This research focuses on the heretofore uncharacterized immune response to SARS-CoV-2 infection in children and young adults with IBD or JIA who are receiving maintenance immunosuppressive biologic therapies. Given the large Connecticut based infusion program, in a region of the United States with a recent large outbreak of COVID-19, the investigators have a unique opportunity to address a glaring knowledge gap in this unique pediatric, adolescent, and young adult population. The investigators will longitudinally determine antibody development and durability to SARS-CoV-2 in approximately 450-500 children and young adults with IBD or JIA receiving biologic therapy using a highly sensitive and specific quantitative assay utilizing novel technology. This period will include a return to school or work for many with likely resurgent infections, as well as the possible introduction of anti-SARS CoV-2 vaccines. The specific aim is to study the acute and convalescent antibody responses to SARS-CoV-2 infection in a cohort of children and young adults receiving infusions of biologic therapies for IBD and JIA.
In the 21st century, the incidence of inflammatory bowel disease (IBD) globally increases. Higher incidence of IBD development may implicate that environmental factors played essential roles in IBD pathogenesis. One of the environmental factors is a westernized diet that contains a high amount of animal protein and a low amount of dietary fiber. This kind of diet can lead to gut microbial dysbiosis and increase susceptibility to IBD. A microbial dysbiosis pattern in IBD is a decrease in microbial diversity and the inversed ratio of local protective and pathologic bacteria. High animal protein was associated with an increased risk of IBD and increased risk of disease relapse meanwhile dietary fiber was associated with IBD risk reduction. A semi-vegetarian diet is a diet with high fiber and low red meat and processed food that may reduce inflammatory activity in IBD. The study in the semi-vegetarian diet in IBD activity is still limited. This study aimed to evaluate a semi-vegetarian diet's effect in maintaining IBD remission in disease quiescence patients.