Finding studies
Finding studies
Take this into the appointment.
Saves the questions and what to expect into your notes, next to the visit they belong to.
Christopher Crabtree, Ph.D.
CONTACT
Lead
Christopher Crabtree
Alzheimer's disease and other age-related neurodegenerative conditions are associated with changes in brain energy metabolism that can occur years before symptoms develop. One of the earliest findings in these conditions is reduced utilization of glucose by certain brain regions. Ketones, including beta-hydroxybutyrate, can serve as an alternative fuel source for the brain and may help support brain metabolism when glucose utilization is impaired. Experimental evidence also suggests ketones may influence cerebral blood flow, neurotransmitter balance, and functional brain connectivity. Despite growing interest in ketone supplementation, the acute effects of ketone esters on multiple aspects of human brain function have not been comprehensively evaluated. This study will investigate whether acute ketone ester ingestion alters cerebral blood flow, brain neurochemistry, resting-state brain connectivity, and cognitive performance in healthy adults. This is a randomized, double-blind, placebo-controlled crossover study. Participants will complete two intervention periods, receiving a ketone ester supplement during one period and a calorie-matched placebo during the other. The order of interventions will be randomized and separated by a washout period of 3 to 7 days. Participants will consume study beverages for two days prior to each testing session and will undergo detailed testing following an overnight fast. At each testing visit, participants will provide fingerstick blood samples to measure ketone and glucose concentrations, complete standardized cognitive testing, and undergo advanced magnetic resonance imaging (MRI). Brain imaging will include arterial spin labeling (ASL) to evaluate cerebral blood flow, proton magnetic resonance spectroscopy (1H-MRS) to assess brain metabolite and neurotransmitter concentrations, and functional MRI (fMRI) to assess resting-state brain network connectivity. Cardiac MRI measures will also be collected to explore relationships between cardiovascular and cerebrovascular responses. The primary goal is to determine whether acute ketone supplementation changes cerebral blood flow, brain metabolite concentrations, and functional brain connectivity compared with placebo. Secondary analyses will evaluate relationships between blood ketone concentrations, imaging measures, and cognitive performance. Results from this pilot study will provide important mechanistic information regarding how ketones affect the healthy aging brain and will support the development of future clinical trials in populations at risk for cognitive impairment. The study lasts about two weeks. There are two main test days with 3-7 days in between. Each testing session will last up to 3.5 hours at most.
Age
45–65
Sex
ALL
Healthy volunteers
Accepted
