View clinical trials related to Healthy.
Filter by:The main purpose of this study is to evaluate how much of the study drug (LY3372689), administered as a single dose that has the radioactive substance 14C incorporated into it, passes from blood into urine, feces and expired air in healthy male participants. The study will also measure how much of the study drug gets into the bloodstream, how its broken down, and how long it takes the body to get rid of it. The study will last about 4 weeks. Screening is required within 28 days prior to the start of the study and follow up is required approximately 7 days after discharge.
To investigate the effects of dehydration and exercise for the urine secretion of beta2-agonists.
Evaluation of the CapScan intestinal collection device in characterizing the metabolism of sulfasalazine in the digestive tracts of healthy volunteers.
Cognitive impairment (such as challenges in thinking and memory) is a core aspect of schizophrenia (SCZ), contributing to disability and poor functional outcomes. Additionally, almost half of the patients with SCZ are obese, the prevalence of type 2 diabetes is 3-6 times higher, and life expectancy is lower by 15-20 years compared to the general population. This is relevant as metabolic syndrome and diabetes are both associated with worse cognition among SCZ patients. Recent work studying the relationships between metabolic health and cognition has encouraged a new way of thinking about SCZ as both a metabolic and cognitive disorder. Brain insulin is involved in several processes relevant to SCZ, and abnormal brain insulin action may help explain both cognitive and metabolic abnormalities in patients with SCZ, but this has not been examined previously. Glucose uptake in several brain regions relevant to SCZ has been shown to be partially dependent on insulin. Therefore, in this study, the researchers will measure glucose uptake in the brain using an 18F-fluorodeoxyglucose ([18F]-FDG) positron emission tomography (PET) scan after an intranasal insulin stimulus, and will compare this measure between patients with SCZ and healthy controls.
To determine whether there is an ipsilateral transfer of a motor skill from the upper limb to the lower limb
Multiple Sclerosis is a chronic autoimmune disease associated with inflammatory response harmful for the Central Nervous System. Immunological imbalance is involved with Th1 and Th17 cells in correlation with a disturbance of regulators mechanisms as Treg cells. Despite years of research, the mechanisms involved remain unclear. Serotonin (5-HT) seems to be play an essential role in developing CNS inflammatory diseases and in particular in MS. Indeed, several studies have shown the anti-inflammatory potential of this neurotransmitter and also its vulnerability in inflammatory context. Moreover, a recent study has shown that 5-HT can reduced CD4 T cells proliferation and pro-inflammatory cytokines released in vitro. Interestingly, treatment, treatment with SSRIs (selective serotonin reuptake inhibitor) in an animal model of MS, on Experimental Autoimmune Encephalomyelitis, was shown to improve the clinical score and promote remission of the disease. Among serotonin receptors, the 5-HT7 receptor, can be considered as an interesting target to treat neurological disorders associated with inflammatory context. Present in humans and mice, this receptor is expressed on the surface of a large number of cells, such as T-lymphocytes, macrophages, dendritic cells as well as on cells of CNS such as neurons, astrocytes and microglia. Given the importance of the positive cells for 5-HT7 receptor, in the inflammatory context observed in multiple sclerosis, the investigators propose to study the receptor expression in blood samples from multiple sclerosis patient.
The aim of this study is to determine whether there is an increase in the TSPO PET signal (measured with the radioligand [11C]PBR28) in the lungs of patients living with PAH relative to age matched controls. If so, TSPO PET may be a useful technique to non-invasively monitor response to therapy. To do this, we will perform 2 [11C]PBR28 PET scans. The first will quantify the total [11C]PBR28 PET signal. This signal is a combination of the specific signal (VS) and the nonspecific signal (VND). The second scan will be performed following dosing with an unlabelled TSPO ligand. By directly measuring the total [11C]PBR28 signal (scan 1) and the nonspecific [11C]PBR28 signal (scan 2) we can therefore calculate the specific [11C]PBR28 signal, and hence the amount of TSPO in the lung.
This is a Phase 1, open-label, fixed-sequence, 3-period study to evaluate the effect of multiple doses of itraconazole and a single dose of cyclosporine on the single-dose PK of PF-07081532 in otherwise healthy, overweight or obese, adult female and male participants. The 3 study periods will be conducted consecutively without a break.
Obesity and its metabolic complications are leading causes of global morbidity and mortality. Evidence is mounting that inappropriate timing of food intake contributes to obesity. Specifically, late eating is associated with greater weight gain and metabolic syndrome. However, the mechanism by which late eating harms metabolism is not fully understood but may be related to mis-timing of food intake in relation to the body's endogenous circadian rhythm. Conversely, harmonization of eating timing with endogenous circadian rhythm may optimize metabolic health. In this study the investigators will use gold-standard methods of characterizing circadian rhythm in humans to examine the metabolic impacts food timing relative to endogenous circadian rhythm.
The purpose of this study is to investigate the cerebral activation during visual motor simulation in healthy subjects in 3 conditions: observation (OBS), observation and imagination (OBS-IM) and observation and realization (OBS-REAL). The investigators goal is to compare cerebral activation during the three different tasks using EEG and fNIRS.