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Type 2 Diabetes clinical trials

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NCT ID: NCT04208620 Completed - Type 2 Diabetes Clinical Trials

Safety and Tolerability Study of Cotadutide in Japanese Obese Subjects With Type 2 Diabetes Melitus

Start date: January 21, 2020
Phase: Phase 1
Study type: Interventional

This is a Phase 1 study designed to assess the safety and tolerability of MEDI0382 (Cotadutide) in Japanese T2DM patients.

NCT ID: NCT04208230 Completed - Type 2 Diabetes Clinical Trials

Progression and Etiology of Cortical Porosity in Diabetic Bone Disease

PREPT2D
Start date: January 3, 2017
Phase:
Study type: Observational

Type 2 diabetes is associated with increased cortical bone porosity and increased fracture risk. The goal of this proposed study is to understand the longitudinal evolution of cortical bone porosity and to investigate the underlying biological processes that drive increased cortical porosity and fracture risk in the setting of diabetes. The investigators will apply novel techniques for in vivo imaging of cortical pores to patients with type 2 diabetes and controls in a longitudinal prospective study. This work will establish the longitudinal progression of cortical porosity and determine whether pore content can serve as a predictor of future cortical degradation and bone fragility.

NCT ID: NCT04196231 Completed - Type 2 Diabetes Clinical Trials

Durability of Combination of Insulin and GLP-1 Receptor Agonist or SGLT-2 Inhibitors Versus Basal Bolus Insulin Regimen in Type 2 Diabetes (BEYOND)

BEYOND
Start date: November 27, 2019
Phase: Phase 4
Study type: Interventional

BEYOND represents an open-label, parallel, three-arm randomized controlled trial, aimed at evaluating the effects of combination therapy of fixed ratio basal insulin/GLP-1 receptor agonist (GLP-1RA) or basal insulin/SGLT-2 inhibitors (SGLT-2i) on the durability of the glycemic control, as compared with the basal bolus insulin regimen, in people with type 2 diabetes failing to achieve glycemic targets with injective therapy. The potential benefits for participants in the study include the possibility of improving the glyco-metabolic control with drugs that have been evaluated as safe and protective for the heart and the kidneys. The primary outcome of the study is the mean HbA1c change between groups at six months. Participants in the study will be followed for subsequent 18 months in order to evaluate the durability of glycemic control and the chenge of other secondary outcomes.

NCT ID: NCT04194450 Completed - Type 2 Diabetes Clinical Trials

Exogenous Ketones in Type 2 Diabetes

Start date: January 15, 2020
Phase: N/A
Study type: Interventional

Exogenous ketone supplements are proposed to have glucose-lowering potential, provide an alternative fuel for the brain and to enhance cognitive function. No studies have tested whether exogenous ketones can lower blood glucose in people with type 2 diabetes. In addition, the impact of exogenous ketones on brain blood flow, cognitive function or brain-derived neurotrophic factor in humans is unknown. The purpose of this study is to determine if acutely ingesting exogenous ketones, in the form of a ketone monoester drink, can lower glucose and improve measures of brain/cognitive function in humans with type 2 diabetes. Participants will consume a ketone monoester drink or placebo with blood samples, brain blood flow, and cognitive function assessed over 180 minutes. The researchers will also test how the ketone monoester drink impacts appetite and measures of inflammation.

NCT ID: NCT04192292 Completed - Type 2 Diabetes Clinical Trials

Study of Sulphonylurea Synergy With DPP4 Inhibitors

SSS
Start date: October 8, 2019
Phase: N/A
Study type: Interventional

The Study of Sulphonylurea Synergy with DPP4 Inhibitors (SSS Study) will establish whether a very low dose of sulphonylurea will have a synergistic role on augmentation of insulin secretion when given in combination with a DPP4 inhibitor as a primary outcome. The study will recruit 30 patients with type 2 diabetes mellitus controlled with no treatment or metformin monotherapy with an HbA1c <64mmol/mol (<8%). In this unblinded, randomised physiological study, participants will receive four 14-day intervention blocks: low dose sulphonylurea alone, DPP4 inhibitor alone, low dose sulphonylurea + DPP4 inhibitor or no treatment change. The primary outcome will be assessed through evaulation of insulin secretion and sensitivity at mixed meal test at the end of each treatment block. Glycaemic variability on continuous glucose monitoring for each intervention block will be evaluated as a secondary outcome. In addition, the primary outcome will be evaulated for KCNJ11 genotype as an additional secondary outcome.

NCT ID: NCT04190212 Completed - Atrial Fibrillation Clinical Trials

The Effect of High-Intensity Interval Training on Glucose Variability and Atrial Fibrillation Symptoms

Glucose-AF
Start date: November 18, 2021
Phase: N/A
Study type: Interventional

The incidence of atrial fibrillation (AF), the most common heart rhythm disorder, is increasing. The symptoms of AF include: unpleasant heartbeats; difficulty breathing; tiredness; dizziness; and, reduced exercise capacity. Patients with AF have lower quality of life, higher mental distress, and higher risk of heart disease and stroke when compared to the general population. Further, patients with non-permanent AF tend to experience more severe symptoms and substantial reductions in quality of life when compared to patients with permanent AF. Type 2 diabetes increases the risk of developing AF and accounts for about 20% of patients with non-permanent AF. High blood glucose concentrations and increased blood glucose fluctuations (large and frequent upward and downward blood glucose swings) are commonly seen in type 2 diabetes. Increased blood glucose fluctuations may worsen AF symptoms and quality of life in patients with AF. Exercise improves quality of life and mental health and reduces risk of developing heart disease and stroke. However, no clinical guidelines for managing AF include exercise. High-intensity interval training (HIIT), a form of exercise that alternates between intense bouts of exercise and less intense recovery periods, is a time-efficient approach to improve blood glucose fluctuations in type 2 diabetes. In healthy individuals and in patients with coronary artery disease, HIIT also improves quality of life and mental health. Currently, the effect of HIIT on blood glucose fluctuations, AF symptom severity and quality of life in patients with AF living with type 2 diabetes is unknown. Also, the links between blood glucose fluctuations and AF symptom severity and quality of life have not been investigated.

NCT ID: NCT04184947 Completed - Type 2 Diabetes Clinical Trials

Cardiovascular Outcomes SGLT-2 Inhibitors Versus GLP-1 Receptor Agonists

Start date: March 1, 2014
Phase:
Study type: Observational

Patients with type 2 diabetes (T2D) suffer from an excess risk of adverse cardiovascular events. Recently, two classes of glucose lowering agents, namely SGLT-2 inhibitors (SGLT2i) and GLP-1 receptor agonists (GLP-1RA), have proved superior to placebo in protecting T2D patients from cardiovascular events in dedicated trials. Patient populations in such trials were mainly composed of T2D individuals with established cardiovascular disease (CVD) or at very high risk for CVD. In addition, no clinical trial has so far compared cardiovascular outcomes of T2D associated with SGLT2i versus GLP-1RA. In addition, whether different results would incur in patients at lower CVD risk is unclear. On this basis, we designed this retrospective real-world study to compare cardiovascular outcomes of patients newly treated with SGLT2i versus GLP-1RA in routine clinical practice

NCT ID: NCT04183868 Completed - Type 2 Diabetes Clinical Trials

Effects of empagliFlozin on myocardIal metabOlic Rate of glucosE Estimated Through 18FDG PET (FIORE Study)

FIORE
Start date: April 2016
Phase: Phase 4
Study type: Interventional

Diabetes is an independent risk factor for ischemic heart disease (CAD) and heart failure, and cardiovascular diseases are the main cause of mortality and morbidity in patients with diabetes. Recent studies on cardiovascular outcomes have shown that type 2 sodium glucose co-transporter (SGLT-2i) inhibitors are not only effective in improving glycometabolic control, but are also able to reduce major CV events (MACE) and hospitalization for heart failure. However, it is still unclear whether the beneficial CV effects of treatment with SGLT2i are due to indirect mechanisms such as reduction in blood pressure, improvement of vascular stiffness, reduction in body weight and visceral adiposity, reduction in uricemia or whether they have effects direct on the heart. Recently, it was shown that in nondiabetic porcine model with heart failure, the treatment with empagliflozin was associated with a switch of myocardial fuel utilization from glucose uptake toward uptake of ketone bodies and free fatty acid, thereby improving myocardial energetics, enhancing LV systolic function, and ameliorating adverse LV remodeling. It is not known whether empagliflozin treatment is able to modify the heart's energy metabolism even in humans. In this study we hypothesize that empagliflozin may determine beneficial CV effects reducing myocardial metabolic rate of glucose assessed by hyperinsulinemic euglycemic clamp 18F-FDG PET scans in patients with type 2 diabetes. This is a single-center, prospective, controlled, randomized, open-label, two parallel group and switch, active-comparator study that evaluates the comparative effects of 26 weeks of treatment with empagliflozin versus glimepiride add on metformin on myocardial metabolic rate of glucose estimated through 18F-FGD-PET scan in patients with type 2 diabetes without a history of coronary heart disease. At the end of 26 weeks of treatment, subjects belonging to the first group will be shifted to glimepiride therapy, while subjects belonging to the second group will be shifted to empagliflozin treatment for 26 weeks. All subjects, then, will control themselves.

NCT ID: NCT04178603 Completed - Type 2 Diabetes Clinical Trials

Copenhagen, Boston, Sydney

COBOS
Start date: July 5, 2018
Phase: N/A
Study type: Interventional

The study investigates the regulation of muscle glucose utilization during exercise and enhanced insulin sensitivity in recovery from exercise. This will be investigated in lean control subjects and obese insulin resistant subjects.

NCT ID: NCT04175665 Completed - Type 2 Diabetes Clinical Trials

Real-world Health Outcomes in Canadian Patients Using Semaglutide

Start date: January 6, 2020
Phase:
Study type: Observational

Glucagon-like peptide-1 receptor agonists (GLP-1 RA) are an injectable, non-insulin therapy for patients with type 2 diabetes (T2D). Semaglutide (Ozempic®) is the newest GLP-1 RA to become available in Canada in 2018, and is administered subcutaneously once-weekly. In clinical trials, semaglutide has been superior to placebo and other antihyperglycemic agents in HbA1c reduction and body weight loss. However, there is little real-world evidence available on the effectiveness of semaglutide in real-world clinical practice. To better understand the effectiveness of semaglutide on clinical outcomes in a real-world setting, this retrospective cohort study will use the Canadian LMC Diabetes Registry to examine the effects of semaglutide on glycemic control, body weight, and other clinical outcomes in patients with T2D who initiate once-weekly semaglutide as part of usual clinical care in a diabetes specialist practice group in Canada.