Clinical Trials Logo

Type 2 Diabetes clinical trials

View clinical trials related to Type 2 Diabetes.

Filter by:

NCT ID: NCT02019264 Completed - Obesity Clinical Trials

A Study to Evaluate the Effect of Long-term Treatment With BELVIQ (Lorcaserin HCl) on the Incidence of Major Adverse Cardiovascular Events and Conversion to Type 2 Diabetes Mellitus in Obese and Overweight Subjects With Cardiovascular Disease or Multiple Cardiovascular Risk Factors

CAMELLIA-TIMI
Start date: January 24, 2014
Phase: Phase 4
Study type: Interventional

This is a multicenter, randomized, double-blind, placebo-controlled, parallel-group study in overweight and obese subjects with cardiovascular (CV) disease and/or multiple CV risk factors.

NCT ID: NCT02014740 Completed - Obesity Clinical Trials

Effect of Liraglutide on Epicardial Fat in Subjects With Type 2 Diabetes

Start date: March 2014
Phase: Phase 4
Study type: Interventional

The purpose of this research study is to learn about the effect of Liraglutide, (Victoza®), on the fat surrounding the heart.Excessive amount of the fat around the heart is common in people with type 2 diabetes and can be associated with poor sugar control. Liraglutide is an injectable prescription medicine that can improve blood sugar control in adults with type 2 diabetes.

NCT ID: NCT02009813 Completed - Obesity Clinical Trials

Hyperbaric Oxygen Therapy and Insulin Resistance (HOTAIR2) - Effect of One HBO Session.

HOTAIR2
Start date: March 2013
Phase: N/A
Study type: Interventional

Obesity is an epidemic in Western society and is the biggest risk factor for insulin resistance and type 2 diabetes. The investigators have recently shown that exposure to hyperbaric oxygen (HBO) leads to an increase insulin sensitivity in males ubjects and that this improvement can be measured in all men, not just those with diabetes. The aim of this study is to investigate the time course of this effect and explore the mechanisms involved. The investigators suspect that insulin sensitivity as measured by hyperinsulinaemic-euglycaemic clamp will be increased within the time-frame of one 2-hour hyperbaric oxygen exposure, and that the improvement will be measurable in females as well as males.

NCT ID: NCT02007278 Completed - Type 2 Diabetes Clinical Trials

Glycemic Excursions in Type 2 Diabetic Patients With Vildagliptin and Metformin Versus Vildagliptin and Glimepiride

GLOBE
Start date: January 2014
Phase: Phase 4
Study type: Interventional

The purpose of this study is to compare the effect of a fixed dose combination of vildagliptin plus metformin versus combination therapy of glimepiride plus metformin in glycemic variability in patients with type 2 diabetes who have not achieved adequate control of their disease prior to treatment with metformin monotherapy in optimal doses.

NCT ID: NCT02004366 Completed - Type 2 Diabetes Clinical Trials

Linagliptin Inpatient Trial

Start date: January 2014
Phase: Phase 4
Study type: Interventional

This study is a prospective, randomized, open label trial to compare the safety and efficacy of linagliptin (an oral anti diabetic medication) given orally once daily to an insulin regimen of glargine once daily plus rapid-acting insulin before meals. Both of these treatment groups will be given corrective doses of rapid-acting insulin analogs (aspart, lispro or glulisine) before meals if their blood sugars are > 140 mg/dl. The patients will be monitored for their blood sugars while the hospital. If patients are agreeable to participate in the discharge part of the study, the investigators will randomized them to a treatment group based on their admission HbA1c. The investigators will follow these patients for 3 months with phone calls and clinic visits, and will monitor their blood sugars. This is to compare the efficacy of linagliptin and our discharge treatment algorithm in controlling blood sugars as out patients.

NCT ID: NCT02001753 Completed - Type 2 Diabetes Clinical Trials

Impact of Cardiac Magnetic Resonance Imaging on Endothelial Function in Type 2 Diabetes

Start date: December 2013
Phase: Phase 4
Study type: Interventional

Magnetic resonance (MR) imaging is a widely used and well-established noninvasive medical diagnostic imaging tool. By using a static and a gradient magnetic field in combination with a radiofrequency field (RF), MR provides excellent contrast among different tissues of the body. Although long-term effects on human health from exposure to strong static magnetic fields seem unlikely, acute effects such as vertigo, nausea, change in blood pressure, reversible arrhythmia, and neurobehavioural effects have been documented from occupational exposition to 1.5 T. Cardiac MR (CMR) imaging requires some of the strongest and fastest switching electromagnetic gradients available in MR exposing the patients to the highest administered energy levels accepted by the controlling authorities. Studies focusing on experimental teratogenic or carcinogenic effects of MR revealed conflicting results. Since CMR is emerging as one of the fastest growing new fields of broad MR application, it is of particular concern that a recent in vitro study with CMR sequences has reported on CMR-induced DNA damages in white blood cells up to 24 h after exposure to 1.5 T CMR. Therefore, we hypothesized that CMR can induce the damage of endothelium and endothelial progenitor cells in type 2 diabetes

NCT ID: NCT01993121 Completed - Type 2 Diabetes Clinical Trials

Exercise and Type 2 Diabetes: Gender and Endothelial Function

Start date: September 2002
Phase: N/A
Study type: Interventional

The objective of the current proposal is to evaluate the importance of blood vessel dysfunction and heart dysfunction to overall exercise impairments in type 2 diabetes and their contribution to the gender differences observed in exercise capacity. Importantly, treatments that improve blood vessel function in persons with type 2 diabetes can be used to directly assess whether impairment in blood vessel function and ultimately exercise performance, can be improved and whether the degree of improvement differs between the sexes. Hypothesis 1. Uncomplicated type 2 diabetes more adversely affects exercise capacity in women than men. Hypothesis 2. Blood vessel function and cardiac function are more significantly impaired in women with type 2 diabetes than men and contribute to the gender differences in exercise capacity. Hypothesis 3. Restoration of blood vessel function will improve exercise capacity more in women than men with type 2 diabetes.

NCT ID: NCT01991548 Completed - Type 2 Diabetes Clinical Trials

User Evaluation of the MiniMed 640G Insulin Pump

Start date: November 2013
Phase: N/A
Study type: Interventional

This four center international study will include two United Kingdom National Health Service centers, and two centers in Melbourne, Australia. The objective of the study is to evaluate subject acceptance of a new insulin pump and transmitter together with the accompanying training materials. Descriptive data from participant questionnaires and device uploads will be evaluated. Pediatric subjects between the ages of 7 - 18 years and adults from the age of 19 years of age upwards, who currently use an insulin pump in the management of their type 1 or type 2 diabetes, will be invited to participate. Each subject will be trained on the study device and then use it for approximately four weeks. During this time there will be three in-clinic visits and four follow-up phone calls, scheduled at the subjects' convenience. At the end of this period, they will revert back to their original insulin pump and complete a questionnaire on the study pump training materials, features and usability.

NCT ID: NCT01984489 Completed - Type 2 Diabetes Clinical Trials

Efficacy and Safety Study of SHR117887 in Combination With Metformin in Patients With Type 2 Diabetes

Start date: June 2012
Phase: Phase 2
Study type: Interventional

SHR117887 is a new dipeptidyl peptidase(DPP)-4 inhibitor. This study aims to evaluate the efficacy and safety of SHR117887 in combination therapy with Metformin in patients with Type 2 Diabetes in Metformin monotherapy Who have Inadequate Glycemic Control

NCT ID: NCT01983046 Completed - Obesity Clinical Trials

Rectal Short Chain Fatty Acids Combinations and Substrate and Energy Metabolism

Start date: September 2013
Phase: N/A
Study type: Interventional

Gut microbiota is being increasingly recognized as an important factor in fat distribution, insulin sensitivity and glucose and lipid metabolism. Accordingly, the intestinal microbiota could play an important role in the development of obesity and type 2 diabetes mellitus. The role of gut-derived short-chain fatty acids (SCFA), the formation of which is enhanced by microbial fermentation of fiber, is still controversial. One study found that an increase in the formation of SCFA stimulated energy extraction from diet, with subsequent weight gain. In contrast, supplementation of non-fermentable carbohydrates, which lead to an increase in SCFA formation, had beneficial effects on body weight control and insulin sensitivity. Of note, a study showed that butyrate supplementation in mice prevented diet-induced obesity and insulin resistance. At the present time, our understanding of the effects of SCFA on human metabolism (in gut or systemically) is still limited. Yet, in light of the health claims of certain dietary fibers (prebiotics), a detailed picture of the physiology of human SCFA metabolism and its interaction with the microbiome is of pivotal importance. We hypothesize that the differential availability of SCFA impacts human metabolism differently. To determine whether rectal administration of SCFA is a good model for studying the metabolic effects of SCFA we first have performed a pilot study (METC 11-3-079). In this pilot study we have determined if rectal administration of sodium acetate has the same effects on substrate and energy metabolism compared to proximal administration. Our results indicate that the primary outcome parameter fat oxidation was significantly changed during post-absorptive conditions, when sodium acetate in a concentration of 180mM was administered in the distal part of the colon. In contrast, no effect on energy expenditure or substrate oxidation was seen when sodium acetate was administered in the proximal colon. Consequently, the distal part of the colon seems to be a good model to determine effects of gut-derived SCFA on the human substrate and energy metabolism. Therefore, we will administer in this study the SCFA rectally by using enemas. We will administer different combinations of SCFA to healthy, overweight male volunteers and examine effects on metabolism. This study is an important part of a Gastrointestinal Health TIFN project (GH003 WP 1.2), which will provide more insight in how increased availability of a beneficial SCFA mixture might serve as a basis for rational nutritional strategies in the prevention and treatment of obesity and type 2 diabetes mellitus. To obtain rational nutritional strategies, a next step in this TIFN project will be focusing on dietary ingredients modulating intestinal microbiota and subsequent SCFA production.