View clinical trials related to Metabolic Diseases.
Filter by:The Danish Childhood Obesity Biobank aims to produce a scientific platform for research in obesity: Bio-clinical data are collected from two cohorts - an obesity clinic cohort and a population-based cohort. The biobank thus facilitates translation between research and clinical practice of obesity treatment and related complications.
The hypothesis for this study is that a preparative regimen that maximizes host immunosuppression without myeloablation will be well tolerated and sufficient for engraftment of donor hematopoietic cells. It is also to determine major toxicities from these conditioning regimens, within the first 100 days after transplantation.
The purpose of this study is to determine safety and efficacy of mipomersen (ISIS 301012) in the reduction of total cholesterol, low density lipoprotein cholesterol (LDL-C), and apolipoprotein B (apoB) in high risk subjects intolerant to statins.
This is an observational study on the prevalence and incidence of diabetes and osteoporosis in a rural area of Korea.
To evaluate the safety and efficacy of extended dosing with mipomersen (ISIS 301012) in participants with familial hypercholesterolemia or severe hypercholesterolemia on lipid-lowering therapy who had completed either the 301012-CS5 (NCT00607373), 301012-CS7 (NCT00706849), 301012-CS17 (NCT00477594) or MIPO3500108 (NCT00794664) clinical drug trials.
The aim of this study is to measure the variations of serum and urinary hepcidin levels following a single intravenous injection of erythropoietin in healthy volunteers. Hepcidin is a major regulator of iron homeostasis. It acts by binding on ferroportin, and limits cellular efflux of iron through enterocytes and macrophages. Anemia and hypoxia are known to modulate hepcidin synthesis. In these situations, erythropoietin synthesis is increased, so it can be postulated that erythropoietin could modulate hepcidin synthesis.
Eleven National Sports Teams are located in the Quebec Metropolitan Area. In these groups, many athletes are aiming for Olympic medals in Beijing 2008 and Vancouver 2010 Olympic Games. A consultation of the coaches of these National Teams revealed that although a large proportion of these athletes present various cardio-respiratory symptoms, they do not have a rapid access to a systematic medical evaluation and follow-up. Furthermore, little is done in regard to prevention and optimization of treatment of pulmonary and cardiac conditions in the elite athlete's population of the Quebec area. Cardiorespiratory problems are therefore commonly found in high-level athletes. However, these pathologies are not well characterized in athletes and the associated symptoms often not well perceived. These problems can be serious and it is important to detect them before they appear1 while setting up a systematic medical follow-up. Health professionals should monitor health of the young athletes and help to reduce the risks associated with high level exercise. The following project is an evaluation and follow-up program of high-level athletes, aiming at gathering key-information on long-term effects of high-level training on cardio-respiratory and metabolic parameters. Our aims will be 1. to establish a long-term program of systematic evaluation and follow-up of cardiorespiratory health and performance of high elite athletes. 2. to evaluate the prevalence of respiratory, circulatory and metabolic problems among high-level athletes 3. to evaluate the effects of treatments on cardiorespiratory conditions and exercise performance in athletes who need asthma medication.
This research had as a goal to characterize the social demographic profile, nutritional status, the presence of chronic non-transmissible diseases and food intake of the community health agents who belong to five family health units in the east zone of Sao Paulo City.
To determine the association of both neurohormonal and hemodynamic alterations associated with metabolic abnormalities in acute heart failure syndrome.
The purpose of this study is to investigate the effectiveness and safety of 12 weeks of treatment with R256918 in patients with Type 2 Diabetes Mellitus who are taking metformin. The primary measure of effectiveness is the change in concentration of glycated hemoglobin (HbA1c) during treatment. Glycated hemoglobin is a substance in red blood cells that is formed when blood sugar (glucose) attaches to hemoglobin and is a measure of diabetic status. Additional measures include fasting glucose, and lipid levels, and body weight. Safety assessments performed during the trial include laboratory tests, vital sign measurements, and adverse event reporting.