View clinical trials related to Diabetes Mellitus, Type 2.
Filter by:The overall aim of the study is to observe the natural pattern of usage and metabolic outcomes in patients with type 2 diabetes who had access to the new digital tool as a stand-alone support in addition to usual care. The tool is based on self-affirmation theory and has large emphasis on self-reflection to enable sustainable lifestyle changes. The changes in HbA1c, reflecting long-term blood glucose, will be evaluated in patients with type 2 diabetes. Patients are compared to controls on usual care not exposed to the tool.
The objective of this study is to assess the effect Spinal Cord Stimulators have toward improving vascular changes of diabetes mellitus in patients eligible for SCS placement based on their condition of painful diabetic neuropathy; we will evaluate improving their disability and quality of life, improving micro-circulatory changes induced by Diabetes Mellitus (DM), improving macro-circulatory changes induced by DM and improving arterial stiffness of the vessels of the lower extremity.
This multi-arm, multi-site study investigates the safety, tolerability, and efficacy of stem cell therapy for the treatment of various acute and chronic conditions. Clinically observed initial findings and an extensive body of research indicate regenerative treatments are both safe and effective for the treatment of multiple conditions.
The purpose of this randomized clinical trial is to determine whether glycemic targets that are lower than those currently recommended by the American Diabetes Association (ADA) and the American College of Obstetricians and Gynecologists (ACOG) would improve overall outcomes in pregnant patients with diabetes. Eligible pregnant women with a diagnosis of gestational diabetes or Type 2 diabetes will be randomized into either routine care with glycemic targets as currently recommended by ADA and ACOG (control arm), or more aggressive care with lower glycemic targets that more closely resemble normoglycemia in pregnancy (intervention arm). The glycemic targets for the control arm will be defined as follows: fasting ≤95 mg/dL, pre-prandial ≤95 mg/dL, and 1-hour postprandial ≤140 mg/dL. The glycemic targets for the intervention arm will be defined as follows: fasting ≤80 mg/dL, pre-prandial ≤80 mg/dL, and 1-hour postprandial ≤110 mg/dL. The primary outcome will be a 250-gram difference in birth weight between the two study arms. Secondary maternal and neonatal outcomes of interest will also be compared between the two study arms.
The main purpose of this study is how to manage hyperglycemic patients in emergency departments, to determine the conditions that require blood glucose regulation and to examine the prognosis of the patients in the next 30 days, depending on the regulation method.
Randomized, controlled, blind, single-center and non-inferiority clinical trial to compare the target lesion failure (TLF) at 12 months in patients with diabetes mellitus who underwent percutaneous coronary intervention with an Orsiro stent vs. Abluminus stent.
Cardiovascular (CV) diseases are the most frequent type 1 diabetes (T1D) complications. A recent epidemiological study showed that patients with T1D have a two-fold CV mortality risk, even in case of good glycemic control. In addition, it has been shown that patients with T1D with no traditional CV risk factors had about a 80% higher risk of cardiovascular event compared to non-diabetic individuals. This indicates that further modifiable risk factors in relation to CV mortality remain to be identified. One of the candidates that could help to disentangle the factors associated with the increased CV mortality in T1D patients is glycemic variability which could contribute to diabetes complications. Indeed, severe hypoglycaemia, one of the most severe consequence of glycaemic variability, are associated with a higher mortality in patients with type 1 and type 2 diabetes. In order to evaluate the relation between glycemic variability, insulin therapy modalities and CV risk as well as some other questions related to health determinants of T1D, we are building up a large observational, prospective, multi-centric cohort study of patients gathering 15,000 patients with T1D, age above 6 years old, to perform the following: - Collecting clinical information - Evaluating Glycemic variability (assessed by the coefficient of variation of glucose (CV) calculated from automatically downloaded continuous glucose monitoring data (CGM) - Biobanking including plasma, DNA, urine, saliva and hair. - Collecting patients' reported outcomes through auto-questionnaires (online questionnaires). - Doing an active follow-up for a period of 10 years with an intermediate visit every 3 years. - Passive follow-up: link to national Health data system (Système National de Données de Santé, SNDS) in order to exhaustively collect health events as death, CV events and hospitalizations (including severe hypoglycemia).
The aim of this project is to create a registry of diabetic patients, containing a detailed clinical profile of each patient, along with omics data, which will be analyzed using artificial intelligence algorithms, and their results will be implemented in the form of new recommendations of care for high-risk patients and those already suffering from diabetes. The study will be conducted prospectively. The project participants will be patients with diabetes, patients at high risk of developing diabetes and a control group of normoglycemic patients who will participate in study visits at the Clinical Research Center of the Medical University of Bialystok.
The cognitive disorders of adult forms of myotonic dystrophies type 1 are heterogeneous (impairment of executive functions, visio construction and theory of the mind, which can progress to the stage of dementia). Nevertheless, patients have very different degrees of cognitive impairment. Expansion of CTG triplets disrupts the alternative splicing of mRNAs of various proteins, including the insulin receptor and Tau protein. Type 2 diabetes, associated with peripheral insulin resistance, is therefore common in this pathology. Type 2 diabetes,could to explain the cognitive impairment of patients, through the accelerated development of brain lesions (especially tauopathy and cerebral atrophy).
Being physically active and exercising is important for the treatment of Type 2 diabetes as it helps control blood sugar and improve physical function. Lots of people find it hard to be physically active and sticking with exercise is difficult for most people. In this project we will investigate two strategies to support people with Type 2 diabetes to increase and then maintain a physically active lifestyle, which includes exercising regularly. Participants in one group (Exercise Counselling) will complete a 6-month structured exercise and physical activity programme supported by regular (virtual) contact with an exercise specialist. Participants in the second group (Mobile health technology (mHealth)) will receive the same 6-month exercise and physical activity programme supported by an exercise specialist, but participants in this group will also receive a fitness watch that links to a mobile phone application (App). The fitness watch and mobile App will allow the exercise specialist to provide greater support and feedback throughout the programme.