View clinical trials related to Diabetes Mellitus, Type 2.
Filter by:The aim of the present study is to investigate the clinical performance of the Metronom CGM system in patients with type 1 diabetes over a period of 14 days. In this study, the CGM sensor will be tested in an inpatient setting (meal/insulin test with frequent plasma glucose monitoring) at different days of wear-time. Sensor data will be compared to gold standard reference (Super GL2 analyser or YSI) and stability of sensor performance will be assessed over time. Additionally, safety and tolerability of the sensor will be investigated by regular assessment of the insertion site.
The study is a prospective, randomized, non-blinded comparative group clinical trial comparing participants who receive access to a mindfulness software app, Headspace, to those who receive standard care (i.e., a list of resources on mindfulness and health). It is hypothesized that participants randomized to the Headspace mindfulness application will exhibit greater improvement in HbA1C and quality of life measures compared to those randomized to standard care.
Empagliflozin treatment in high cardiovascular risk patients has been shown to have a relatively rapid powerful capability in reducing cardiovascular mortality. Among the suggested mechanisms mediating this effect of empagliflozin, anti-arrhythmic effect (AAE) has the highest potential to translate into a rapid clinical beneficial effect on cardiovascular mortality, while other mechanisms are known to have a lag in their clinical effect based on data from previous studies. Based on this assumption, the study driving hypothesis is that the effect of empagliflozin on the rate of cardiovascular death may be mediated by a direct effect on the risk for arrhythmic events (via a direct or an indirect effect on the myocardium). The current study aims at assessing the effect of empagliflozin on arrhythmias in diabetic patients with HF with reduced ejection fraction and relatively high arrhythmic burden. The objective of the current study is to demonstrate the effect of empagliflozin compared to placebo on the rate of ventricular arrhythmic events in type 2 diabetes patients with heart failure with reduced ejection fraction and high risk arrhythmic profile.
The increase in the prevalence of diabetes mellitus (DM) is one of the greatest public health challenges worldwide. Epidemiological studies have shown that DM is the leading cause of chronic kidney disease (CKD) in patients initiating renal replacement therapy. In our country, diabetes accounts for about 60% of all incidents of dialysis. On the other hand, CKD is currently considered a noxious disease because patients not only have the likelihood of progression to end-stage renal disease (ESRD), but because these renal alterations are associated with an increased risk of cardiovascular complications and premature death for the same cause. Most studies have focused on traditional risk factors (poor diet, physical inactivity and obesity) for the development and progression of renal damage, and less information exists on non-traditional factors such as oxidative stress and mainly, the low antioxidant response that characterizes both DM and nephropathy. In addition, there is a great variation in the susceptibility to and progression of kidney disease between different populations that is not explained by the presence of traditional factors and that could be triggered by genetic variations and its interaction with other components related to the environment and lifestyle. Fortunately, there is sufficient scientific evidence that early detection and modification of negative lifestyle factors can not only delay or halt the progression of the renal function decline to ESRD but can also significantly reduce the incidence of cardiovascular disease leading to premature death in most of these patients. Therefore, it is suggested that this risk may be determined by the interaction of lifestyle factors with the presence of susceptibility alleles, which may vary from one population to another. It is now known that hyperglycemia causes a state of oxidative stress and inflammation that can be counteracted by diet supplementation with some natural antioxidants such as curcumin. It has been shown that this molecule has multiple pharmacological properties: antioxidant, anti-inflammatory, cardioprotective, renoprotective, among others. In clinical trials a positive effect of curcumin has been seen in the treatment of diabetes and its complications. This has generated a relative optimism in the search for new curcumin treatment targets where oxidative stress is of great relevance, as is the case with CKD. However, there are still doubts about its efficacy as an adjuvant in the prevention of CKD. Additionally, the role played by interindividual variability in genes involved in the mechanism of action of curcumin is still incipient, more studies in this knowledge area are necessary.
Diabetes Mellitus type 1 is characterized by an absolute insulin deficiency caused by T-cell-mediated autoimmune destruction of pancreatic β-cells . It is the predominant form of diabetes mellitus during childhood and adolescence. Hyperglycemia is a major cause of vascular and neuropathic complications that are seen in patients with diabetes mellitus type 1.
One of the important complications of DM is the diabetic foot that may present ulcers, which result from multiple risk factors, being diabetic peripheral neuropathy and ischemia due to peripheral vascular disease considered the main causes. In this way, the ulcers of the lower extremities of diabetics, have a complex and long cicatrization process. Faced with this, the treatment of chronic wounds is challenging, the diversity of treatments is great, however the search for new modalities of effective therapeutic resources, scientifically proven and financially feasible, that are available and easily accessible for clinical practice is still desirable . The aim of this study was to evaluate the responses of phototherapy with light emitting diodes (LED) and electrical stimulation with the fixed diphasic current (DF) in ulcers of diabetic patients. Diabetic volunteers who present with chronic skin ulcers will also be randomized (n = 13) to: Treatment group with LED 620 nm, Treatment group with LED 940 nm, Treatment group with fixed diphasic current and Control group. Interventions will occur three times a week for 12 weeks and evaluations will occur on the 1st, 30th, 60th, and 90th day of the intervention, followed by follow-up after 30 days of treatment completion.
This study is designed to evaluate the effect of oral health educational program on the awareness and oral health status of children with Insulin Dependent Diabetes Mellitus.
The investigators will examine the influence of increasing motivation on healthy lifestyle and glycemic control in diabetes patients. Participants will be randomized to two groups, the control group gets informational text message and the intervention group gets motivational SMS. The patients get a weekly text message and after 26 weeks the HbA1c and quality of life will be assessed.
To assess the efficacy of an electronic system to support clinical decisions based on an evidence-based clinical practice guide for metabolic control of adults with Type 2 Diabetes Mellitus through Clinical and cluster-randomized controlled trial in a Colombian population.
Coronary artery disease is a contraction of the coronary arteries that prevent adequate blood supply to the heart muscle is called CAD. Usually caused by atherosclerosis, it may be advanced to the point where the heart muscle is injured due to lack of blood supply. Such damage may result in infarction, arrhythmias, and heart failure(1,2). Telomeres are short in circulating leucocytes in patients with coronary artery disease but the precise mechanism is not well-known (3). Telomere and telomerase are affected by cytomegalovirus (CMV) infection due to its effect on increasing the number of highly differentiated T cells that are characterized by shorter telomere length (TL) and lowered telomerase activity (TA). Both genetic and environmental factors have been connected with individual distinction in TL.Cardiovascular risk factors such as smoking, diabetes mellitus, hypertension, obesity, and stress have been considered to upsurge inflammation, oxidative stress, therefore accelerating TL shortening (1,2) It has also been observed that telomere loss in type 2 diabetic patients contributes to oxidative stress and endoplasmic reticulum stress while telomere shortening has also been proposed that it can serve as an independent risk factor of T2DM and it can measure disease progression(4). Moreover, telomeric length in peripheral blood mononuclear cells (PBMCs) is associated with the duration of disease and good glycemic control seems to be protective for telomeric loss (5). Growth differentiation factor-15 (GDF-15) is a member of the transforming growth factor (TGF)-β superfamily. GDF-15, recently identified as one of the new cardioprotective cytokines. It is highly expressed in cardiomyocytes, adipocytes, macrophages, endothelial cells, and vascular smooth muscle cells in normal and pathological condition. GDF-15 increases during tissue injury and inflammatory states and is associated with cardiometabolic risk(6). Dipeptidyl peptidase inhibitors (DPP4 -I) are called gliptins which increase the incretin levels and therefore prolong the post-prandial insulin action(7). Diana et al reported that In type 2 diabetic patients, leukocyte telomere was significantly shorter than control groups and was significantly elongated after intervention by sitagliptin(8). The common feature of all risk factors of CAD and T2DM imbalance between pro- and anti-oxidative factors in the organism with an increased production of reactive oxygen species (ROS).Nuclear factor erythroid-derived factor 2-related factor 2(Nrf2) is a family of transcription factors which plays an important role in protection against CVD and DM by regulating antioxidant enzymes in cells after ROS exposure (9). In our study, we will propose a model, which would provide the basis to establish a marker for chronic reactivation of CMV and shed more light into the pathophysiology of CMV infection in patients with CAD in relation to GDF-15 and NrF2 and their implications on disease progression. Ultimately, this would then enable us to identify patients at risk and develop novel strategies for future treatment and prevention of heart diseases in our country. In light of our project research, the question arises whether telomere length could represent a marker of chronic CMV reactivation and uncertainty their length will be modified by the effect of DPP-4 or not?