The aim of the proposed study is to investigate the effect of increased plasma lactate concentrations on the heart and brain's metabolism of other energy sources, primarily glucose in the brain and glucose and FFA in the heart. The investigator hypothesize that: * An acute increase in lactate plasma concentration will decrease cerebral glucose uptake and increase cerebral blood flow * An acute increase in lactate plasma concentration will decrease palmitate and glucose uptake in the myocardium, and increase myocardial perfusion
SCREENING VISIT During the initial screening visit, the investigators will inform all potential volunteers about the project, and volunteers will have the chance to ask questions about participation in the project. The investigators will register the following data 1. Medical history to assess exclusion criteria 2. Weight, height, BMI 3. Standard medical examination including pulse, blood pressure and an ECG After assessment of inclusion- and exclusion criteria remaining volunteers will be offered to participate in the project. The investigators will screen potential volunteers with the following blood samples: haemoglobin, HbA1c, glucose, cholesterol, triglyceride, TSH, creatinine, albumin, sodium, potassium, ALAT, ASAT, bilirubin and coagulation parameters. Blood samples and randomization will not take place until volunteers have signed the informed consent form. MAGNETIC RESONANCE IMAGING (MRI) SCAN The investigators will perform a cerebral MRI for the purpose of anatomical localisation for alignment with the PET scans on the 1st and 2nd study day. 1st STUDY DAY: The volunteers will arrive fasted (8 hours) at the Department of Nuclear Medicine \& PET-Centre at 7.30 a.m., where the subject will have an arterial catheter placed for arterial blood sampling during PET scans as well as two venous catheters for blood sampling and continued administration of intravenous fluids (saline or Na-lactate) and adenosine. At 9.00 a.m., we will start the Na-lactate or saline infusion. From 9.30 a.m., the investigators will perform PET scans with administration of relevant PET tracers preceding each scan. The investigators will perform PET scans in the following order: 1. Dynamic PET scan with \[15O\]H2O in order to assess cerebral perfusion. 2. Dynamic PET scan with \[15O\]H2O in order to assess myocardial perfusion. 3. Stress test using an adenosine infusion during a dynamic PET scan with \[15O\]H2O to assess coronary flow reserve (CFR) in the heart. 4. Dynamic PET scan with \[11C\]Palmitate to assess uptake, oxidation and re-esterification of FFA in the heart. 5. Dynamic PET scan with \[11C\]Acetate to asses oxygen and energy expenditure in the heart. 6. Dynamic whole-body PET scan with \[18F\]FDG to assess glucose uptake in the heart and brain. Following the \[11C\]Acetate scan the investigators will administrate a continued infusion of insulin (0,3 mIE/kg/min) and 20% glucose throughout the rest of the study day in order to achieve hyperinsulinemic-euglycemic conditions (clamp conditions). To correct for attenuation, we will perform three lowdose, non-contrast enhanced CT scans over the course of the study day. The investigators will draw blood samples every hour. 2nd STUDY DAY The PET scan regime during the 2nd study day is identical to the 1st study day. If volunteers were administered Na-lactate during the 1st study day they will be administered saline during the 2nd studyday and vice versa.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
BASIC_SCIENCE
Masking
SINGLE
Enrollment
8
Infusion of sodium-lactate solution
NaCl solution
Medical Research Laboratories/Steno Diabetes Center Aarhus
Aarhus, N, Denmark
Department of Nuclear Medicine & PET-Centre
Aarhus, N, Denmark
Cerebral glucose uptake
Cerebral glucose uptake (\[18F\]FDG PET scan) under basal and hyperinsulinemic- euglycemic conditions (clamp conditions).
Time frame: From T=300-360 (minutes)
Cerebral blood flow
Cerebral blood flow (\[15O\]H2O PET scan)
Time frame: T = 0-10 (minutes)
Myocardial perfusion
Myocardial perfusion (\[15O\]H2O PET scan)
Time frame: T = 0-10 (minutes)
Myocardial glucose uptake
Myocardial glucose uptake (\[18F\]FDG PET scan)
Time frame: T = 300-360 (minutes)
Myocardial FFA uptake and oxidation
Myocardial FFA uptake and oxidation (\[11C\]Palmitate PET scan)
Time frame: T = 30-70 (minutes)
Myocardial contractility
Myocardial contractility (ejection fraction based on ECG-gated PET scan)
Time frame: T=0-10 (minutes)
Myocardial oxygen consumption and efficiency
Myocardial oxygen consumption and efficiency (\[11C\]Acetate PET scan)
Time frame: T=150-180 (minutes)
Blood sampling
A number of cardiometabolic blood samples will be collected during the whole study day.
Time frame: T = -60 to 360 (minutes)
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.