Clinical Trials Logo

Metabolic Diseases clinical trials

View clinical trials related to Metabolic Diseases.

Filter by:

NCT ID: NCT05181553 Recruiting - Clinical trials for Cardiovascular Diseases

Unravelling the Impact of Diet on Cardiovascular Health in Heterozygous Familial Hypercholesterolemia.

FH-Diet
Start date: January 10, 2022
Phase: N/A
Study type: Interventional

The investigators will first conduct a fully controlled dietary randomized crossover trial (RCT) including 72 adults with HeFH to investigate the impact of a diet low in red and processed meats and high in plant foods, reflecting Canada's Food Guide, in place of a standard North-American diet on LDL-cholesterol (LDL-C) levels and the plasma metabolome. Such a robust design will also lead to the identification an objective proxy to healthy diet adherence: the metabolomic signature. Secondly, by leveraging the unique resources of the ECOGENE-21 cohort, which includes 963 adults with HeFH, the investigators will evaluate the relationship between the metabolomic signature of the healthy diet and cardiovascular disease risk to determine how objective adherence to a healthy diet is associated with cardiovascular disease outcomes in HeFH.

NCT ID: NCT05176197 Active, not recruiting - Glucose Intolerance Clinical Trials

Effects of Almonds on Glycemia in Adults With Elevated Hemoglobin A1c Concentrations

Start date: February 9, 2022
Phase: N/A
Study type: Interventional

This study will examine the effects of regular almond consumption by individuals with elevated HbA1c on long-term glycemic control.

NCT ID: NCT05174104 Completed - Sleep Disorder Clinical Trials

Metabolic and Chronobiological Changes in Vestibular Rehabilitation

Start date: March 1, 2020
Phase: N/A
Study type: Interventional

The aim of the present study is to evaluate the impact of vestibular rehabilitation on metabolic aspects when evaluated by means of bioelectrical impedenzometry analysis, smart watch device and actigraphy in a group of vestibular hypofunction patients previously studied by means of video head impulse test, posturography and clinical validated scales

NCT ID: NCT05172180 Completed - COVID-19 Clinical Trials

Correction of Metabolic Disorders and Its Effect on Respiratory Function of Lungs in Patients With Severe COVID-19

CARECOVID
Start date: December 1, 2020
Phase:
Study type: Observational

Objective of the study: to investigate the effect of meglumine succinate solution on the dynamics of metabolic blood parameters and respiratory function of the lungs in intensive care patients with new coronavirus infection. An observational prospective study included 105 patients with a severe course of novel coronavirus infection

NCT ID: NCT05161182 Completed - Clinical trials for Postprandial Hyperglycemia

Westlake N-of-1 Trials for Macronutrient Intake 2 ( WE-MACNUTR 2)

Start date: October 30, 2021
Phase: N/A
Study type: Interventional

Diet and nutrition are key to maintain human health. Westlake N-of-1 Trials for Macronutrient Intake (WE-MACNUTR) trial investigates individualized postprandial glycemic responses to different proportions of dietary fat and carbohydrates intake using an n-of-1 experimental study design. The experimental diets are isocaloric high fat, low carbohydrate (HF-LC) or low fat, high carbohydrate (LF-HC). With standardized intervention and strictly controlled eating behaviors, the WE-MACNUTR study identifies specific HC-responders and HF-responders in terms of postprandial glucose response. This is a follow-up study offered to participants who have completed the WE-MACNUTR study in 2019. Volunteers will be asked to participate in four 5-d periods while wearing glucose monitors (Abbott Freestyle Libre) with the following experimental sequence: 1) a washout diet, 2) HF-LC or LC-HF diet, 3) a washout diet, 4) HF-LC or LC-HF diet. The experimental diet will be randomly assigned. Participants will be asked to provide a fasted blood sample and to collect fecal, urine and saliva samples at each visits.

NCT ID: NCT05139316 Active, not recruiting - Clinical trials for Glycogen Storage Disease Type IA

A Study of Adeno-Associated Virus Serotype 8-Mediated Gene Transfer of Glucose-6-Phosphatase in Patients With Glycogen Storage Disease Type Ia (GSDIa)

Start date: November 8, 2021
Phase: Phase 3
Study type: Interventional

The primary objectives of this study are to evaluate the efficacy of DTX401 to reduce or eliminate dependence on exogenous glucose replacement therapy to maintain euglycemia and to maintain or improve the quality of glucose control.

NCT ID: NCT05139264 Completed - Clinical trials for Metabolism Disorder, Glucose

Glucose, Activity, Diet, & Sleep Assessment Study

GLADS
Start date: May 3, 2021
Phase:
Study type: Observational

GLADS is a cross-sectional, observational study assessing free-living diet, physical activity, sleep, and glucose profile over a 2-week period in healthy adult men and women.

NCT ID: NCT05137990 Completed - Clinical trials for Overweight and Obesity

The HIIT Cognition Study

Start date: March 1, 2021
Phase: N/A
Study type: Interventional

This pilot study is a randomized control trial to test the effects of a 14-week home-based virtual, interactive high intensity interval training (HIIT) exercise intervention on cardiometabolic and cognitive outcomes in sedentary youth with overweight/obesity during adolescence. All participants (N=24) will complete screening via phone to determine eligibility. Eligible participants will be randomized to receive a) 14 weeks of a home-based HIIT intervention delivered via iPad or b) 14 weeks of a stretching intervention (control group). Each participant will undergo an in-lab pre- and post-test visit, where they will complete a fasting blood draw, a fitness test, and various cognitive and mental health measures.

NCT ID: NCT05135234 Active, not recruiting - Sedentary Lifestyle Clinical Trials

Developing a Physiological Understanding of High Duration Activity

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

When muscles are not contracting, the local energy demand by muscle and use of specific fuels used to produce energy by oxidative metabolism are minimal. The time people spend sitting inactive (sedentary time) typically comprises more than half of the day. This sedentary behavior is associated with elevated risk of diabetes, cardiovascular diseases, some cancers, and multiple conditions leading to poor aging. From a progressive series of experiments, the driving goal is to develop a physiological method for sustaining contractile activity via oxidative metabolism over more time than is possible by traditional exercise (hours, not minutes per day). Developing a physiological method suitable of prolonged muscular activity for ordinary people (who are often unfit) requires gaining fundamental insights about muscle biology and biomechanics. This also entails a careful appreciation of the ability to isolate specific muscles in the leg during controlled movements, such as the soleus muscle during isolated plantarflexion. This includes quantifying specific biological processes that are directly responsive to elevated skeletal muscle recruitment. The investigators will focus on movement that is safe and practical for ordinary people to do given their high amount of daily sitting time. This includes developing methods to optimally raise muscle contractile activity, in a way that is not limited by fatigue, and is feasible throughout as many minutes of the day as possible safely. This also requires development of methodologies to quantify specific muscular activity, rather than generalized body movement. There is a need to learn how much people can increase muscle metabolism by physical activity that is perceived to them as being light effort. It is important to learn if this impacts systemic metabolic processes under experimental conditions over a short term time span in order to avoid confounding influences of changes in body weight or other factors.

NCT ID: NCT05117983 Recruiting - Depression Clinical Trials

Non-invasive Brain Stimulation Normalizes Dopaminergic Transmission in the Frontostriatal Circuit to Alleviate Depression With Metabolic Disorders.

Start date: August 12, 2021
Phase: N/A
Study type: Interventional

Depression and metabolic disorder (MetD) are two of the most common and debilitating disorders worldwide, occurring with significant rates of comorbidity. This is a major clinical challenge as the outcomes of both conditions are worsened. Studies have uncovered that depression and metabolic disorder are associated with chronic, low-grade inflammation. In brain circuit level, patients with depression are characterized with aberrant frontostriatal (FS) circuit connectivity and reduced activity level that also associated with metabolic comorbidity. In neurotransmitter level, the dopaminergic pathway, that could be feedback regulated by immune and metabolic factors, has long been known to involve in emotional and metabolic homeostasis. More importantly, this dopamine (DA) input is critical to shaping the FS circuit-level dynamic connectivity and plasticity. Therefore, this study hypothesizes that inflammatory and metabolic dysregulations on DA transmission link to the aberrant FS function that cause mood and metabolic syndromes. To clarify the underlying mechanisms, 90 patients who meet the DSM-5 diagnostic criteria of major depressive episode in either major depressive disorder or bipolar disorder are planned to be recruit. FS functional connectivity and activation, before and after receiving 10 Hz repetitive transcranial magnetic stimulation (rTMS) to left dorsolateral prefrontal cortex will be measured. Then systemically analyze participants' clinical symptomology, neurocognitive function, inflammation and metabolic status. Possible correlations between indices, the effects of rTMS and differences between groups will be tested. Results could provide a chance for further understanding the pathophysiology of depression with MetD and comparing between unipolar and bipolar depression, and developing brain circuit based non-invasive brain stimulation personalized treatment for depression with MetD to achieve a better outcome.