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Metabolic Diseases clinical trials

View clinical trials related to Metabolic Diseases.

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NCT ID: NCT02988011 Recruiting - Weight Loss Clinical Trials

Improving Glucose and Lipid Metabolism Through Caloric Restriction Using Diet or Surgery (CRUDOS)

CRUDOS
Start date: February 28, 2016
Phase: N/A
Study type: Interventional

In this explorative randomized clinical study, the investigators aim to study metabolic, cellular, and molecular changes that occur during weight loss in obese subjects with and without type 2 diabetes. Using novel "imiomics" (imaging technique using PET/MR bioinformatics) analyses to examine possible metabolic differences between energy restricted diet and gastric by-pass surgery on whole-body and tissue specific insulin sensitivity, glucose tolerance, metabolite and protein profiles, fatty acid metabolism, ectopic fat content, and gene expression in adipose tissue. This study aims to identify novel biomarkers and drug targets for type 2 diabetes as well as validate promising and established biomarkers in an interventional model for improved glucose metabolism.

NCT ID: NCT02986542 Completed - Sepsis Clinical Trials

Comparison of Success Rates of Femoral Artery Catheterization

Start date: December 2016
Phase: N/A
Study type: Interventional

The use of USI has eased practical application of interventional procedures, and reduced complications and procedure durations. For vascular interventions with ultrasound imaging, short- or long-section imaging of vascular structures is performed. Both techniques have their own advantages and disadvantages. This study aims to compare the success rates of femoral artery catheterization using both imaging techniques.

NCT ID: NCT02984254 Completed - Knee Osteoarthritis Clinical Trials

Bracing for Patellofemoral Osteoarthritis

Start date: December 20, 2016
Phase: N/A
Study type: Interventional

BACKGROUND: Despite the prevalence of patellofemoral ostearthritis (OA), this joint has received relatively little attention in the OA literature and there are few treatment options for individuals with patellofemoral OA. Patellar misalignment is associated with radiographic progression patellofemoral OA and symptoms and in magnetic resonance imaging (MRI), to cartilage loss measurements and bone marrow lesions. The hypothesis is that the correction of the patella disorder using strategies such as bracing or adhesive bandages can handle the symptoms and progression of OA. OBJECTIVE: To compare the effect of a brace designed to stabilize the patellofemoral joint compared with a neoprene sleeve with kneecap opening in patients with patellofemoral OA. METHODS: Fifty-two patients with patellofemoral OA and co-morbidities (Two or more of: overweight or obesity, hyperglycemia, dyslipidemia, hyperuricemia, high blood pressure) will be divided into two groups according to the knee brace that will receive: Functional Bracing patellofemoral (group 1) and neoprene knee sleeve with patella opening (group 2). Both groups will be oriented on the clinical treatment of osteoarthritis and metabolic syndrome and asked to do daily exercises in addition to reporting the daily consumption of drugs a month before placing the orthotics up to three months after placing it. They will be evaluated with the questionnaires WOMAC and Lequesne, and asked to perform the five-times-sit-to-stand-test, Timed-up-and-go (TUG) and the six-minute walk test in the moments immediately prior to placement of the brace, with one, three and after 12 months bracing.

NCT ID: NCT02979106 Completed - Clinical trials for Glucose Metabolism Disorders

Metabolic Consequences of Heterozygous Hereditary Fructose Intolerance

Start date: January 2015
Phase: N/A
Study type: Interventional

Background: High fructose intake increases blood lactate, triglyceride and uric acid concentrations. Uric acid may contribute to insulin resistance and dyslipidemia in the general population. In patients with hereditary fructose intolerance fructose consumption is associated with acute hypoglycemia, renal tubular acidosis, and hyperuricemia. Objective: We investigated whether asymptomatic carriers for hereditary fructose intolerance (HFI) would have a higher sensitivity to adverse effects of fructose than the general population. Design: Eight subjects heterozygous for HFI (hHFI; 4 males, 4 females) and eight controls received for 7 days a low fructose diet and on the eighth day ingested a test meal calculated to provide 25% of basal energy requirement containing labeled fructose (13C fructose 0.35 g/kg), protein (0.21 g/kg) and lipid (0.22 g/kg). Total fructose oxidation, total endogenous glucose production (by 6,6-2H2-glucose dilution), carbohydrate and lipid oxidation, lipids, uric acid, lactate, creatinine, urea and amino acids were monitored for 6 hours.

NCT ID: NCT02978937 Completed - Metabolism Disorder Clinical Trials

Obstructive Sleep Apnea and Metabolic Health

Start date: April 2015
Phase: N/A
Study type: Observational

This is an observational study involving chart review of patients seen in the bariatric clinic since 2012 at The Ohio State University (OSU). Obese patients will be divided into two groups according to their metabolic profile (healthy vs unhealthy). The assignment to each group will be determined by the presence of diagnosis of hypertension, diabetes mellitus and/or dyslipidemia. The presence of at least 2 diagnoses will be defined as metabolically unhealthy. Then, each group will be divided based on the presence of Obstructive Sleep Apnea diagnosis. All data will be collected through a review of the patient's electronic medical record from the bariatric clinic database (the investigators will collect variables as age, gender, race, BMI, smoking status, the presence of diagnosis as Obstructive sleep apnea, hypertension, diabetes, hyperlipidemia). The investigators will analyze that data and establish if there is any correlation between sleep apnea and the subjects' metabolic profile.

NCT ID: NCT02978001 Completed - Insulin Sensitivity Clinical Trials

Insulin Sensitivity, Glucose - and Fat Metabolism in Patients With Psoriasis

Start date: August 2016
Phase:
Study type: Observational

The pathophysiological mechanisms explaining the association between psoriasis and type 2 diabetes are largely unknown but it has been hypothesized that systemic inflammation found in both psoriasis and type 2 diabetes might play a role. In a recent study hyperinsulinaemic euglycaemic clamps were performed and it showed that normal glucose-tolerant patients with moderate to severe psoriasis had lower whole-body insulin sensitivity during insulin stimulation compared to healthy matched controls. Thus, the increased risk of type 2 diabetes in patients with psoriasis appears to include defects in the glucose metabolism linked to psoriasis itself. However, the methods applied did not allow a detailed characterization of the metabolism in patients with psoriasis. Tracer technique combined with indirect calorimetry has never been applied to study hepatic and whole body insulin sensitivity, and glucose and fat oxidation, during basal conditions or during insulin stimulation in patients with psoriasis. Aim of study: The aim of this study is to investigate hepatic and whole body insulin sensitivity and glucose and fat oxidation during both basal and insulin-stimulated conditions in patients with psoriasis.

NCT ID: NCT02959762 Active, not recruiting - Obesity Clinical Trials

Vitamin K to Slow Progression of Dyslipidemia and Diabetes Risk (Vita-K 'n' Kids Study II)

Start date: October 2016
Phase: N/A
Study type: Interventional

Animal studies have found that vitamin K-dependent proteins matrix Gla protein and osteocalcin beneficially influence lipid and glucose metabolism, respectively. However, this concept has not been tested in humans at risk for dyslipidemia and diabetes risk. Vitamin K supplementation presents an opportunity to test the hypothesized link between the vitamin K-dependent proteins and markers of lipid and glucose metabolism. The investigators will conduct an 8-week vitamin K intervention (to manipulate carboxylation of matrix Gla protein and osteocalcin) and determine its effects on markers of dyslipidemia and diabetes risk. Sixty obese children will be randomly allocated to either the control group receiving placebo or the low-dose (45 mcg/d) or high-dose group (90 mcg/d) receiving vitamin K (menaquinone-7).

NCT ID: NCT02951624 Completed - Clinical trials for Overweight and Obesity

The Effect of Frequency and Duration of Breaks in Sitting Time on Metabolic Cardiovascular Risk Factors

BPS2
Start date: November 2016
Phase: N/A
Study type: Interventional

The primary aim of this study is to investigate the acute effect of the frequency and duration of breaks in sitting time on the metabolic risk factor profile.

NCT ID: NCT02936336 Completed - Metabolic Disease Clinical Trials

The Effect of Exercise Intervention on the Community's Older Adults

Start date: November 2009
Phase: N/A
Study type: Interventional

Osteoporosis is a serious global health problem, second only to cardiovascular disease. Osteoporosis is the most common metabolic bone disease in the elderly population, characterized by loss of bone mineral density (BMD) and continuous destruction of bone microstructure, especially in postmenopausal women. It gives rise to bone fragility and fracture risk. Moreover, as people grow older, falls frequently occur with high severity, and nearly 35% to 45% of persons aged 65 or older fall at least once a year. Osteoporotic fractures increase mortality, morbidity, chronic pain, and the cost of social care and it decreases the quality of life. Here, investigators plan to perform different exercise interventions such as circuit exercise, aerobic dance and Tai Chi on the community's older adults to evaluate whether exercise intervention could improve the bone mineral density, physical fitness, muscle strength or quality of life.

NCT ID: NCT02931500 Recruiting - Clinical trials for Cardiovascular Disease

Machine Learning for Identification of Future Disease Development: A Nationwide Cohort Study (MILESTONE)

Start date: July 1, 2016
Phase: N/A
Study type: Observational

To develop machine learning algorithms for the identification of future development of cardiovascular and metabolic disease