View clinical trials related to Diabetes Mellitus, Type 2.
Filter by:Prospective observational study of the POINTED consortium to evaluate whether new diagnoses of diabetes mellitus, occur significantly more frequently in the post-acute phase of a laboratory-confirmed SARS-CoV-2 infection than in carefully matched control groups.
The primary aim is to test the effectiveness of an innovative 24-month pragmatic and scalable weight-loss centric approach using a collaborative care model that connects patients with a non-Primary Care Practitioner (PCP) health coach who delivers care remotely to patients through the patient portal of an electronic medical record (EMR).
Type 1 diabetes mellitus (DM) is an autoimmune disease characterized by absolute insulin deficiency, defined as insulin-dependent diabetes mellitus and develops due to autoimmune damage of beta cells in the pancreas. Approximately 425 million people worldwide are diabetic patients, 5% to 10% of whom are T1DM. In the majority of type 1 DM prevention studies, the main aim is to stop beta cell destruction. Primary prevention studies aim to prevent or alter exposure to environmental stimuli before autoimmunity is developed. Secondary prevention studies address interventions in the autoimmune processes that cause betacell destruction. Tertiary prevention studies include interventions to stop or reverse beta-cell destruction after clinical diagnosis of type 1 DM. Despite all technological advances, type1DM has not shown a permanent improvement in metabolic control over the last 5 years. Breast milk provides protection against Type 1 DM through the prevention of diabetogenic infections, delaying exposure to diet antigens including cow's milk, and the ability to produce healthy intestinal microbiota. Xiao et al. (2018) published in Nature, investigated the effect of human milk oligosaccharides on non-obese diabetic rats, where it was found that it improved intestinal flora and insulitis scores and brought the blood glucose level closer to the optimum level. This study is expected to fill the gap in the literature about dose-dependent efficacy and placebo of breastmilk oligosaccharides in diabetic humans. This project will investigate 1) the possible contribution of 2-FL oligosaccharides to the disease's metabolic control 2) their effects on beta-cell preservation in the pancreas 3)their effects on intestinal microbiota 4) whether there is a doseresponse relationship as compared to placebo among type 1 diabetic children. This project is designed as a double-blind randomized placebo-controlled experiment lasting for 36 months. The proposed research population consists of 111 children aged 4-16-year-old who were diagnosed with Type 1 DM at the Department of Pediatric Endocrinology of Ege University. The sample size was calculated as 111 with an effect size of 0.33, an error of 0.05 and a power of 80% using the F-test group (for a numerical variable such as blood glucose) for 3 groups. It is planned that the two intervention arms consist of 37 volunteers and the placebo group of 37 volunteers. In the research, 1.5 g/day of human milk oligosaccharides will be supplemented in the first intervention group and 3 g/day for the second intervention group. The placebo group will receive maltodextrin as a placebo at a dose with no effect on metabolic control. Patients included in the study will be provided human milk oligosaccharides for 3 months and will be under follow-up for 12 months. All variables, mainly C-peptide, HbA1c, immunoglobulins, lymphocytes and faecal analysis will be examined. The project aims to ameliorate the microbiota profile, optimize C-peptide levels, reduce exogenous insulin dependence through the provision of 2-FL from human milk oligosaccharides and develop a more applicable, acceptable and an innovative method in the metabolic control of the disease. It is believed that the psychosocial and economic burdens of the disease will be reduced by increasing the metabolic control of the disease.
What is the effect of a ketone drink on liver glucose production, and postprandial glycemia, in people with type 2 diabetes.
This study explores the perspectives and needs of people dealing with type 1 diabetes or their carers to co-design a voice-based digital health intervention for supporting diabetes distress management.
The main purpose of this study is to assess the safety and tolerability of multiple subcutaneous injections of HRS9531 in patients with type 2 diabetes mellitus who have suboptimal glycaemic control after conventional lifestyle or metformin intervention.
The primary objective of this study is to assess the efficacy of endoscopic gastric reduction with the endomina® device, in combination with standard of care, compared to standard of care alone, on the remission of diabetes 24 months after surgery, in patients with type-2 diabetes and class I obesity.
This study compares semaglutide, together with a lower dose of insulin glargine, to a higher dose of insulin glargine in participants with type 2 diabetes. The study looks at how well the study medicines control blood glucose levels. Participants will either get semaglutide together with a lower dose of insulin glargine or a higher dose of insulin glargine. The study will last for about 47 weeks (approximately 11 months). Participants will have 9 clinic visits, 15 phone/video calls and 1 home visit. Participants will be asked to wear a sensor that measures their blood sugar all the time in 2 periods of 10 days during the study.
In this pilot clinical trial, the investigators will recruit and randomize 120 patients with diabetes mellitus and chronic kidney disease (CKD/DM) stages 3 to 5 to a patient-centered and flexible Plant-Focused Nutrition in Diabetes (PLAFOND) diet with >2/3 plant-based sources, which will be compared with a standard-of-care CKD diet, which is usually a low-potassium and low-salt diet, over a 6-month period. Through this study, the investigators will determine whether the plant-focused diet intervention is feasible for patient adherence, whether this diet is safe by avoiding malnutrition, frailty, and high potassium or glucose blood levels, and whether patient reported outcomes are favorably impacted.
The objective of this study is to generate preliminary data in an inpatient setting to help optimize an insulin dosing logic (that decides how much to deliver insulin) for Eli Lilly's system.