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Filter by:Numerous studies have established the role of nutrition on obesity and its related metabolic diseases, which together affect a billion individuals worldwide. Evidence indicate that meal timing regulates numerous metabolic processes suggesting that meal time manipulation may be a simple intervention against obesity and its metabolic diseases. Time-restricted eating (TRE) is a dietary manipulation that involves restricting food intake to 6-10 h/day with no energy intake the rest of the day. In rodents, TRE significantly decreases hepatic steatosis and dyslipidemia, while it supports a healthier hepatic cellular content even without caloric restriction, potentially by alternating activation of nutrient sensing mechanisms and effects on circadian oscillations. However, an understanding of the effect of TRE on liver health in people is not clear. Accordingly, we will conduct a randomized controlled trial in people with overweight/obesity and hepatic steatosis to determine the effect of 9 h TRE for 12 weeks, on key metabolic outcomes in liver health: 1) intrahepatic triglyceride content using magnetic resonance imaging; 2) de novo lipogenesis during fasting and postprandial conditions using administration of deuterated water in conjunction with mathematical modeling. The proposed study will enable us to determine the effect of meal timing on metabolic function in people with NAFLD.
This is a Post-Market Surveillance study of AMIStem-P femoral stem prosthesis
An Open-Label and Randomized, Double-Blind, Placebo-Controlled, Multicenter Study to Evaluate Safety, Tolerability, Pharmacokinetics, and Efficacy of SER-155 in Adults Undergoing Hematopoietic Stem Cell Transplantation to Reduce the Risk of Infection and Graft vs. Host Disease
The study explores the application of marker-less motion analysis (visual-perceptive computing, VPC) using a consumer grade infrared and video camera (Microsoft Kinect) for clinical assessment in MS. It includes as the primary outcomes a short assessment battery of simple motor tasks (PASS-MS) that can be performed in front of the sensor after standard oral instructions given by the operator. For each task, the sensor data are transformed into a set of kinematic parameters that may be used as motor outcome reflecting specific neurological dysfunction. For validation against both clinical and patient-reported outcomes as well as MRI findings, we here prospectively investigate a large cohort of patients with multiple sclerosis. This will allow to determine the usefulness of the various kinematic parameters generated and to define a reduced set of the most meaningful parameters for potential use in future MS trials. Data on repeatability and benchmarks for clinically relevant change are essential to interpret test results and, more importantly, changes thereof. Further, this prospective study will yield estimates of progression rates that are required for planning future studies using this motion analysis tool and assessment battery as an outcome. The study is designed to obtain benchmarks for sensitivity and clinical responsiveness. Primary analysis aims to answer the question: Does the SMSW - Maximum Speed worsen with disease progression established as confirmed disability progression based on EDSS after 24 months (defined as 1 step increase in EDSS ≤ 5.5 and 0.5 step in EDSS > 5.5)?
The purpose of this research is to determine how frequently sleep disorders such as sleep disordered breathing and insomnia occur in patients with coronary artery disease enrolled in cardiac rehabilitation. By reviewing results of a variety of tests, we also hope to learn more about the cardiovascular effects on people who may have these conditions.
This trial investigates technology-enhanced palliative care for patients in phase I trials with cancer that has spread to other places in the body (advanced). The goal of this study is to learn if the technology-enhanced palliative care symptom-monitoring program, when combined with in-person clinic visits and standard remote care visits (by phone or video call), helps increase quality of life and care for patients with advanced cancer participating in phase 1 immunotherapy trials.
This is an open-label, nonrandomized, multicenter, dose escalation, and dose expansion first-in human (FIH) Phase 1 study to determine the safety, tolerability, PK, pharmacodynamics, and preliminary efficacy of INCA00186 when given alone or in combination with INCB106385 and/or retifanlimab in participants with specific advanced solid tumors; squamous cell carcinoma of the head and neck (SCCHN) and specified gastrointestinal (GI) malignancies have been selected as indications of interest for this study. Participants with CD8 T-cell-positive tumors will be selected as these tumors are more likely to respond to immunotherapy.
Open-Label Extension and Safety Monitoring Study of Acoramidis (AG10) in Participants with Symptomatic Transthyretin Amyloid Cardiomyopathy Who Completed the Phase 3 ATTRibute-CM Trial (AG10-301)
The COVID-19 pandemic is caused by the severe acute respiratory syndrome coronavirus 2 (SARS CoV-2), an emerging coronavirus, which has already infected 192 million people with a case fatality rate close to 2%. About 5% of patients infected with SARS CoV-2 have a critical form with organ failure. Among critical patients admitted to intensive care, about 70% of them will require ventilatory assistance by invasive mechanical ventilation (MV) with a mortality rate of 35% and a median MV duration of 12 days. The most severe lung damage resulting from SARS CoV-2 infection is the acute respiratory distress syndrome (ARDS). The virus infects alveolar epithelial cells and capillary endothelial cells leading to an activation of endothelium, hypercoagulability and thrombosis of pulmonary capillaries. This results in abnormal ventilation / perfusion ratios and profound hypoxemia. To date, the therapeutic management of severe SARS CoV-2 pneumonia lay on the early use of corticosteroids and Interleukin-6 (IL-6) receptor antagonist, which both reduce the need of MV and mortality. The risk factors of death in Intensive Care Unit (ICU) are: advanced age, severe obesity, coronary heart disease, active cancer, severe hypoxemia, and hepatic and renal failure on admission. Among MV patients, the death rate is doubled in those with both reduced thoracopulmonary compliance and elevated D-dimer levels. Patients with severe alveolar damage are at risk of progressing towards irreversible pulmonary fibrosis, the incidence of which still remain unknown. The diagnosis of pulmonary fibrosis is based on histology but there are some non-invasive alternative methods (serum or bronchoalveolar biomarkers, chest CT scan). We aim to assess the incidence of pulmonary fibrosis in patients with severe SARS CoV-2 related pneumonia. We will investigate the prognostic impact of fibrosis on mortality and the number of days alive free from MV at Day 90. Finally, we aim to identify risk factors of fibrosis.
Evaluate the safety and effectiveness of the Zenflow Spring System in relieving LUTS associated with BPH.