View clinical trials related to Obesity.
Filter by:Over 70% of Americans are either overweight or obese, putting them at risk for many chronic diseases including diabetes. Exercise is commonly used as a weight loss and weight loss maintenance strategy. However, exercise-induced weight loss is often much less than expected as individuals compensate for a large portion of the energy expended through exercise, resisting maintenance of the negative energy balance needed for weight loss. Our prior research, in agreement with others, point to increases in energy intake as the primary compensatory response when exercising for weight loss; however, mechanisms promoting this behavior have yet to be fully elucidated. With obesity and diabetes prevalence continually rising, innovative research is needed to identify novel mechanisms promoting energy compensation with exercise. The long-term goal of this proposal is to reduce the incidence and improve the outcomes of obesity-related diseases by developing interventions that will attenuate compensation for the energy expended through exercise and thus improve initial weight loss and weight loss maintenance. The present proposal will take the necessary first steps towards our long-term goal by identifying novel mechanisms promoting energy intake when exercising for weight loss. One's reinforcing value of food, attentional bias and inhibitory control for food cues play an important role in feeding behaviors, independent of hunger. These behaviors are largely a product of the central dopamine reward system, which is also in play with exercise behavior. This provides mechanistic support for our central hypothesis, that exercise evokes increases in food reinforcement, attentional bias, and lowers inhibitory control for food cues to promote greater energy intake in effort to maintain energy homeostasis. The rationale for this project is by elucidating the mechanisms mediating energy compensation, future interventions can be designed that attenuate this response to improve the utility of exercise as a weight loss intervention to prevent and manage T2DM. The overall objective of the current proposal is to demonstrate an acute bout of exercise alters food reinforcement, attentional bias and inhibitory control for food cues. Upon completion, we will have a greater understanding of the mechanisms underpinning compensatory increases in energy intake when exercising. These findings will pave the way for future clinical trials testing this hypothesis in the context of a long-term exercise intervention. This contribution is significant, as the identification of novel mechanisms influencing energy compensation with exercise is needed to provide strong support for the development of novel, evidence-based interventions to attenuate this compensatory response to exercise, improving its efficacy for weight control and chronic disease management.
The present study is a retrospective cohort study. Patients older than 18 years of age and underwent Roux-en-Y gastric bypass (RYGB) surgical treatment during the period from 2014 to 2019 and paired severely overweight controls who had no longer gone through bariatric surgery. Patients having BMI (Body Mass Index) much lower than 35 (calculated as the weight (kilograms) / length2 (meters)), a base line diagnosis taken into consideration a medical exclusion for surgical treatment died in one year of surgical operation and missed statistics at scientific information had been excluded from the study. The primary final results of the study was the weight-change percentage at follow-up in comparison with baseline one and the clinical events after surgery.
Time-restricted eating (TRE) is a dietary approach that aims to increase fasting time and decrease the eating window. Promising TRE effects on weight loss and some cardiometabolic risk factors have been reported. However, there is a lack of randomized clinical trials that directly investigate the effect of TRE at different times of the day (early vs. delayed) in individuals with overweight and obesity. The present study investigates the effects of 8 weeks of TRE performed at different moments of the day on body composition and cardiometabolic parameters in adults with overweight and obesity.
Irisin is a myocin secreted by skeletal muscle in stimulus to physical exercise and has been described as a possible therapeutic tool in the fight against obesity by triggering a cascade of signaling that triggers the expression of genes responsible for the increase in energy expenditure and browning of adipose tissue white cells by activating thermogenesis promoter mitochondrial proteins. Although the science is engaged in the search for evidences about the actions of the irisin, the physical exercise involved and the improvement in the levels of obesity, many mechanisms are still unknown. Since taurine by means of irisin-like pathways also increases energy expenditure, it is believed that taurine supplementation associated with high intensity aerobic physical exercise can optimize the effects of irisin, increasing energy expenditure and improving body composition in obesity.
To evaluate the effect of one-on-one coaching in the Noom Healthy Weight Program, a digital behavior change, weight loss intervention, compared to the same program with no coaching, as well as influential factors.
This study evaluate the effects of muscle electrostimulation (MES) on carbohydrate homeostasis in adult patients with obesity. Its aims are also to evaluate the tolerance of feasibilty and the tolerance of MES and the impact on basal metabolism ; muscle mass (maintenance, gain or loss) in a context of calorie restriction ; physical capacities ; adherence to the usual rehabilitation program ; eating behavior : quality of life.
Background : There is a plausible relationship between microbial gut and insulin resistance. Intervention to prevent insulin resistance by modifying the microbial gut has been proposed but limited studies demonstrates the expected impact. One of the possible way to manipulate the microbial gut is the administration of synbiotic (prebiotic and probiotic). Objective : This study aim to address the impact of synbiotic administration to the microbial gut and insulin resistance. Brief Methodology : A Quasi Experimental study with multiple arms is conducted to healthy participants. All subjects will undergo a microbial gut taxonomic analysis using faecal sample and blood examination to determine the insulin resistance status (using Homeostatic Model Assessment for Insulin Resistance/HOMA-IR approach). Synbiotic will be given to intervention arm and active comparator will use maltodextrin. Repeated measurement will be conducted after 8 weeks and 12 weeks from the day of administration. Hypothesis : A superiority trial hypothesis is applied, assuming that the synbiotic group will demonstrates higher variety of microbial gut and lower HOMA-IR level
With the demand for weight-loss interventions likely to continue its upward trend over the next decades, the question remains on how to continuously monitor and support overweight and obese adolescents, particularly in the long-term. Moreover, as the burden of the obesity rates increases in health care centers, the development of alternative delivering strategies gains attention. In an environment of limited resources, the development of new-technology based programs seems a promising area to deliver cost-effective interventions to a wide number of individuals. However, the existing studies present several limitations and a challenging aspect of treating obesity in adolescents is the presence of high rates of disordered eating behaviors. The objective of this study is to develop and test the effectiveness of a web-based Cognitive Behavioral Therapy intervention, for adolescents with overweight/obesity. A Randomized Controlled Trial will compare a control group receiving medical treatment as usual (TAU), and an intervention group receiving TAU plus a psychological/behavioral intervention delivered via the internet.
Conjugated linoleic acid or CLA, is one of the food supplements that could be found in meat, fats, and dairy products of ruminants which has been fed grass not on grains. CLA has shown anti-cancer, anti-obesity, and anti-inflammatory effects in several animal modules, but the results of the human studies were not consistent. Also, a very limited number of studies looked at the CLA effect on the respiratory system. The study will look at the effect of 12 weeks of supplementation of conjugated linoleic acid on obesity markers, lung functions, lipid profile, and inflammation in overweight and obese women in a double-blind randomized control trial. The study looked at the inflammation using different approaches, where it looked at the expression of adhesion molecules on the proinflammatory monocytes as well as it analysed the expression of the stress proteins Heat-shock proteins (HSPA1A and HSPB1)on the PBMCs.
Obesity is a national epidemic that affects all aspects of health care, including trauma care. According to the Centers for Disease Control and Prevention, 1% of US adults 20 years old and older are obese (body mass index [BMI], calculated as weight in kilograms divided by height in meters squared, > 30), and 69% are overweight (BMI > 25) (1, 2). Obesity is a major health concern because of its established relationship with serious medical diseases and increased likelihood of comorbid conditions (eg, diabetes mellitus, hyperlipidemia, heart disease, pulmonary disease) (3). As the number of obese adults continues to increase, the potential number of obese trauma patients with severe injury and complications will also increase (3). Management of prehospital and in-hospital trauma care, including complications associated with airway management, surgical procedures, and radiological imaging, of obese patients can be challenging. However, published reports on how obesity complicates hospital stays after trauma are conflicting (4, 5). Several studies have indicated that obese trauma patients are more likely than non-obese patients to have longer stays in the intensive care unit (ICU) and hospital, more days of mechanical ventilation, more complications, and comorbid conditions, and higher mortality (6,7,8). Other studies have indicated no differences between obese and nonobese patients in mortality, length of stay in the ICU and the hospital, duration of mechanical ventilation, complications, or comorbid conditions (9). Accordingly, the main aim of this study is to investigate and compare hospital course, clinical outcomes, disposition, and the cost of treatment between geriatric obese and non-obese patients hospitalized for treatment of traumatic injuries.