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Obesity clinical trials

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NCT ID: NCT03908099 Recruiting - Obesity Clinical Trials

Fit-for-Fertility Multicenter Randomized Controlled Trial

FFF
Start date: April 3, 2019
Phase: N/A
Study type: Interventional

Infertility affects approximately 10-15% of couples and one of its important modifiable risk factor is obesity, which affects 19% of Canadian women of reproductive age. Accordingly, many organizations have recommended that women should be assisted to adopt a healthy lifestyle prior to conception and maintain it during pregnancy. We therefore propose to conduct a multicenter randomized controlled trial (RCT) assessing the lifestyle intervention Fit-For-Fertility in women with infertility and obesity. Our hypothesis is that the Fit-For-Fertility program is an efficient and low cost solution to improve access to motherhood for women suffering from obesity and infertility. To test our hypothesis, seven fertility clinics having a good ethnic diversity will participate in this RCT and recruit a total of 616 women with obesity (BMI according to ethnicity) who consult at the fertility clinic. Participants will be randomly allocated to one of these two groups: the intervention group will be invited to participate in the Fit-for Fertility Program alone for 6 months and then in combination with usual fertility treatments; while the control group will receive standard fertility treatments from randomisation. The aim of the Fit-for Fertility Program will be to implement progressive and sustainable lifestyle changes, using 1) individual sessions with a dietitian and a kinesiologist every 6-12 weeks, for a total of 18 months or until the end of pregnancy; and 2) eight educational group sessions. Evaluation visits will take place prior to randomisation and then every 6 months for 18 months. Women who become pregnant will be evaluated early during pregnancy and at 26 weeks of gestation. Clinical outcomes will be assessed after a total follow up of 24 months. Anticipated contributions: The results of our multicenter RCT will provide important data on the importance of a lifestyle program supporting women with obesity consulting in fertility clinics, in order to improve their fertility and response to ART, as well as helping them to have a healthy baby. This study will also provide valuable information on potential cost savings for individuals and the healthcare system.

NCT ID: NCT03905018 Recruiting - Clinical trials for Obesity and Erectile Dysfuntion

Effect of Tadalafil Administration on Vasodilatation Mediated by Flow in Patients With Obesity Grade I-II

Start date: May 1, 2019
Phase: Phase 3
Study type: Interventional

Obesity is a public health problem, not only for its high prevalence, but also because of the comorbidities found in it. Within the physiopathological mechanisms associated with obesity is a low-grade inflammatory state that is associated with endothelial dysfunction Endothelial dysfunction is known to be the beginning of the atherosclerotic process that eventually leads to the development of cardiovascular disease. Erectile dysfunction is an example of endothelial dysfunction, where blood flow is compromised as a consequence of a reduction in the production of nitric oxide among others. Tadalafil, which is an inhibitor of PDE-5, is currently used as a treatment for erectile dysfunction. However, it has been observed that the administration of tadalafil in patients with éndothelial dysfunction decreases arterial stiffness, having a positive effect on it, in addition it reduces the pulse pressure, systolic and diastolic pressure.

NCT ID: NCT03904329 Recruiting - Obesity Paradox Clinical Trials

Obesity Paradox in Non Valvular Atrial Fibrillation Regarding Outcomes: Fact or Fiction

Start date: October 1, 2020
Phase:
Study type: Observational

Obesity paradox In patient with non valvular atrial fibrillation

NCT ID: NCT03902327 Recruiting - Obesity Clinical Trials

N-acetyl-cysteine and Carbohydrate Metabolism Disorder in Obese Women

Start date: January 17, 2020
Phase: N/A
Study type: Interventional

The effect of N-acetylcysteine supplementation on carbohydrate metabolism disorder and homocysteine concentrations in obese women will be analysed.

NCT ID: NCT03894527 Recruiting - Obesity Clinical Trials

Impact of Acute Exercise on Vascular Insulin Sensitivity in Metabolic Syndrome

Start date: February 18, 2019
Phase: N/A
Study type: Interventional

Obesity is an independent risk factor for type 2 diabetes and cardiovascular disease. The increased prevalence of obesity worldwide is a major concern among the scientific and medical communities. Insulin resistance is a common factor associated with obesity, metabolic syndrome, hypertension, and type 2 diabetes. Individuals affected by these conditions often experience endothelial dysfunction as well. Insulin resistance provides a key link between metabolic syndrome risk factors and vascular disease. Development of strategies aimed at preventing vascular dysfunction and future disease caused by metabolic disturbances is needed. Although the relationship between obesity and various diseases is well known, the acute effects of insulin on vascular function in obese individuals have yet to be fully determined. Additionally, the effects of acute exercise on insulin-stimulated endothelial function are unknown. Exercise may be an effective and potent treatment that protects against endothelial dysfunction, insulin resistance, and future cardiometabolic disease commonly present with obesity. However, less attention has been placed on vascular insulin sensitivity. The purpose of this study is to test the hypothesis that a single bout of exercise increases insulin-stimulated blood flow at the macro- and micro-vasculature level in obese individuals with metabolic syndrome to similar levels as healthy obese control. Our laboratory has available non-invasive methods to quantify vascular function and the gold-standard technique for assessing insulin sensitivity (euglycemic-hyperinsulinemic clamp). The investigators will assess vascular function (flow-mediated dilation, post-ischemic flow velocity and contrast-enhanced ultrasound) as well as arterial stiffness (augmentation index and pulse wave velocity) before and at the end of the clamp protocol performed the morning following a bout of exercise and a control (no-exercise) condition in 1) metabolic syndrome and 2) obese adults. If our hypothesis is sustained, it will suggest that a key role of the vasculature exists in regulating insulin following exercise and will provide insight into the link between the vasculature, obesity, metabolic syndrome and cardiovascular disease and may confer decreased risk for cardiometabolic disease.

NCT ID: NCT03885245 Recruiting - Obesity Clinical Trials

Supplementing L-citrulline to Overweight Late Asthma oNset Phenotypes

SANDIA
Start date: October 1, 2021
Phase: Phase 2
Study type: Interventional

Patients with obese late onset (after childhood) asthma can have lower FeNO levels, yet be highly symptomatic and poorly responsive to inhaled steroids. This is a common asthma phenotype, particularly among females. This reduction of NO occurs through increased arginase activity and uncoupling of NO synthase (NOS), by accumulation of asymmetric di-methyl arginine (ADMA), which further lowers the L-arginine/ADMA ratio, preferentially promoting reactive oxygen species (ROS) formation and inflammation at the expense of NO. Indeed, in patients with obese late onset asthma, lower L-arginine/ADMA plasma ratios are associated with reduced FeNO, increased bronchial hyperreactivity, and greater asthma morbidity. In our pilot studies, the administration of L-citrulline, as an L-arginine donor, to patients with obese late onset asthma increased the L-arginine/ADMA ratio, FeNO levels, and improved asthma control and lung function. Therefore, the objectives of the protocol are to: a) determine the efficacy of L-citrulline, as an add-on treatment to improve the asthma control and lung function in obese late onset asthmatics; b) leverage the use of asthmatic and control cells to further understand obesity-related changes in epithelial airway NO metabolism, and how these changes relate to bronchoconstriction and lung function, c) determine airway epithelial changes in mitochondrial function and bioenergetics in obese late onset asthmatics and how these are modified by L-citrulline. To do this, 54 obese late onset asthmatics with suboptimal control will be blindly randomized, in a cross over study, comparing 15g/day of L-citrulline vs. placebo, in two 8-week treatment periods with a 6-week washout in between. The co-primary study outcomes are asthma control (ACQ, ACT) and FeNO, and secondary endpoints plasma L-arginine/ADMA, FEV1 and PC20 methacholine. Parallel to this study, a small study of 10 healthy obese controls will receive open label L-citrulline for 7 weeks to establish comparative reference values for the study aims. During the initial treatment phase, 50% of study participants will be randomly allocated to undergo pre and post L-citrulline treatment bronchoscopy to obtain BAL and airway epithelial cells. The research group proposing this study is highly experience in asthma clinical trials, implementation of cross over design studies, and in the use of research bronchoscopies.

NCT ID: NCT03880422 Recruiting - Obesity Clinical Trials

Nutrition and Exercise Interventions in Reducing Androgen Deprivation Therapy-Induced Obese Frailty in Prostate Cancer Survivors

Start date: May 2, 2019
Phase: N/A
Study type: Interventional

This trial studies how well nutrition and exercise interventions work in reducing androgen deprivation therapy-induced obese frailty in prostate cancer survivors. Individualized nutrition and exercise advice for prostate cancer patients on androgen deprivation therapy may help to reduce obese frailty and change the levels of myokines in blood.

NCT ID: NCT03866408 Recruiting - Obesity Clinical Trials

Insulin Regulation of Lipolysis and Lipolysis Proteins

Start date: November 12, 2018
Phase: Early Phase 1
Study type: Interventional

These studies will define the abnormalities in the adipocyte proteins that are involved in the failure of insulin to suppress lipolysis normally in humans with upper body obesity and will help discover the mechanism by which pioglitazone, a medication used to treat type 2 diabetes and improve insulin resistance, improves insulin-regulation of adipocyte fatty acid metabolism.

NCT ID: NCT03865524 Recruiting - Obesity Clinical Trials

Effect Of The Use Of Navigation In The Alignment Obtained When Performing A Total Knee Arthroplasty In Obese Patients

Start date: February 7, 2019
Phase: N/A
Study type: Interventional

NAOBE is a randomized, open and prospective clinical trial that evaluates the accuracy to achieve an adequate mechanical axis of the lower extremity in obese patients after total knee replacement.

NCT ID: NCT03864107 Recruiting - Obesity Clinical Trials

Investigating the Possible Link Between Habitual Diet, Physical Activity, Sleeping Patterns, Obesity Status and Age With Gut Bacterial Composition, Gut Barrier Function, Metabolic Endotoxemia, Systemic Inflammation and Glycaemic Control.

Start date: March 21, 2019
Phase:
Study type: Observational

In the UK, 25% of the adults are affected by metabolic syndrome (NHS, 2016). Metabolic syndrome is a cluster of different conditions including: hyperglycaemia, insulin resistance hypertriglyceridemia, dyslipidaemia and hypertension. Such individuals also have increased risk of developing type 2 diabetes and cardiovascular disease. The factors contributing to the development of metabolic syndrome are potentially numerous and understudied in humans, with much of what we think we know coming from animal research. Recent animal studies have pointed towards gut health playing a role in metabolic health. More specifically it has been suggested that changes in the composition of the gut microbiota may drive insulin resistance and type 2 diabetes through a mechanism that is linked to increased gut permeability and the development of metabolic endotoxemia and inflammation. Yet, this link has not been confirmed in humans. This research will look at the relationship between diet, physical activity, sleeping patterns, obesity status and age etc. and measures of gut bacterial composition, gut barrier function and metabolic health. Findings will provide us with new insights on the effect of different physiological and behavioural/ lifestyle variables on gut health and metabolic function.