The purpose of this study is to test different methods of preparation that can be used prior to a test called an FDG PET/CT scan. FDG PET/CT scans are routinely done for evaluation of heart inflammation. Standard preparation for the scan includes a ketogenic (high fat and low carbohydrate) diet for 24 hours and overnight fasting to help suppress the amount of sugar taken up in the heart muscle. However, Investigator still do not know if this preparation is the most effective method. So the Investigator, want to investigate alternative methods for decreasing the amount of sugar uptake seen in the heart during FDG PET/CT scan, thus, investigator will have participants try up to 3 different methods of preparation prior to the FDG PET/CT scans to see which type of preparation works the best.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
DIAGNOSTIC
Masking
NONE
Enrollment
20
FDG is a FDA approved radiotracer which each subject will have 3 positron emission tomography/computed tomography (PET/CT) scan performed.
Subjects will undergo FDG PET/CT after 1 dose of ketone drink administration after 12 hours of fasting prior to FDG injection. The dosing of ketone drink administration (approximately 65 mL) will be weight based (714 mg/kg), which is crucial to replicating ketone levels between participants
Subjects needs to be on Ketogenetic diet
University of Pennsylvania
Philadelphia, Pennsylvania, United States
RECRUITINGComparing the myocardial glucose suppression in Ketogenetic diet vs. external Ketone supplement by looking at the FDG uptake using PET/CT
Comparing the myocardial glucose suppression in Ketogenetic diet vs. external Ketone supplement by looking at the FDG uptake using PET/CT. Images will be qualitative and semi-quantitatively assessed. The entire right and left ventricular walls will be contoured in a dedicated nuclear medicine workstation (MIM Software) to create volume of interest s(VOI) and derive the maximum and mean standardized uptake value (SUV) and total glycolytic activity (TGA), all measures of glucose utilization. Blood pool activity within the left ventricular cavity will be used as reference. Complete myocardial suppression will be defined as FDG activity (by any measure) in the left ventricular wall lower than blood pool activity in the ventricular cavity.
Time frame: 3 years
The optimal duration of ketosis to produce myocardial suppression by looking at the FDG uptake using PET/CT by comparing the data out of 1 day keto diet Arm versus 3 days Keto diet Arm
The optimal duration of ketosis to produce myocardial suppression by looking at the FDG uptake using PET/CT by comparing the data out of 1 day keto diet Arm versus 3 days Keto diet Arm.
Time frame: 3 years
Understanding the relationship between serum β-hydroxybutyrate (BHB) levels and myocardial glucose by looking at the FDG uptake using PET/CT by comparing the data out of keto diet Arm versus Ketone supplement Arm.
Understanding the relationship between serum β-hydroxybutyrate (BHB) levels and myocardial glucose by looking at the FDG uptake using PET/CT by comparing the data out of keto diet Arm versus Ketone supplement Arm by measuring serum levels of BHB, free fatty acid, acylcarnitine, glucose, and insulin at each FDG PET/CT visit. Approximately 15 mLs of blood will be drawn and used to measure B-Hydroxybutyrate (BHB), acylcarnitines, insulin, glucose and free fatty acid and other targeted metabolomics
Time frame: 3 years
comparing the transthoracic echocardiogram changes before and after the Ketone supplement drink to assess the effect of Ketone supplement
comparing the transthoracic echocardiogram changes before and after the Ketone supplement drink to assess the effect of Ketone supplement. Transthoracic Echocardiogram: Ultrasound will be used to create an image of the internal parts of the heart. This test is being done to assess any changes in cardiac function with the ketone drink. We will perform echocardiography before and approximately 30 minutes after the drink.
Time frame: 3 years
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