The study seeks to explore the cardiovascular effects of co-agonism at the glucagon and (glucagon-like peptide-1) GLP-1 receptor. Glucagon and exenatide will be intravenously infused into participants with type 2 diabetes (T2DM). Overall, the aim of the study is to further the investigator's understanding on the role these endogenous substances have on normal cardiac physiology, myocardial energetics and myocardial glucose uptake through a series of PET and MRI imaging studies
This is a single-centre, single-blinded pilot study designed to understand the role the GLP-1 receptor agonist, exenatide, and glucagon receptor co-agonism has on normal cardiac physiology, myocardial energetics and myocardial glucose utilisation. Part A - Overweight participants with type 2 diabetes will act as their own control and will undergo a series of three imaging studies (in a randomised order) as detailed below: 1. Cardiac positron emission tomography-magnetic resonance imaging (PET-MRI) with fluorine-18-fluorodeoxyglucose (18F-FDG) with placebo (0.9% saline) infusion 2. Cardiac PET-MRI with 18F-FDG with co-infusion of exenatide and glucagon 3. Cardiac PET-MRI with 18F-FDG with infusion of glucagon Part B - Overweight participants with type 2 diabetes will act as their own control and will undergo a series of two imaging studies (in a randomised order), followed by one optional visit as detailed below: 1. 7T Phosphorus (P) 31 magnetic resonance spectroscopy (MRS) (31P-MRS) with placebo (0.9% saline) infusion 2. 7T 31P-MRS with co-infusion of glucagon and exenatide 3 (optional) 7T 31P-MRS with infusion of glucagon Study outcome measures are detailed below
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
BASIC_SCIENCE
Masking
SINGLE
Enrollment
10
Part A - 0.9% saline infusion during cardiac PET-MRI scan
Part A - exenatide and glucagon infusion during cardiac PET-MRI scan
Part A - Glucagon and 0.9% saline infusion during PET-MRI scan
Part B - 0.9% saline infusion during 7T 31P MRS scan
Part B - exenatide and glucagon infusion during 7T 31P MRS scan
Part B - Glucagon infusion during 7T 31P MRS scan
Cambridge University Hospitals NHS Foundation Trust and The University of Cambridge
Cambridge, Cambridgeshire, United Kingdom
Part A - Myocardial glucose uptake
Difference in myocardial glucose uptake between 0.9% saline, glucagon:exenatide and glucagon scan as measured by 18F-FDG
Time frame: Comparison between scans over a maximum period of 16 weeks
Part A - Global longitudinal strain / global circumferential strain / global radial strain
Difference in global longitudinal strain / global circumferential strain / global radial strain between 0.9% saline, glucagon:exenatide and glucagon scan as measured by CMR
Time frame: Comparison between scans over a maximum period of 16 weeks
Part A - Ejection fraction
Difference in ejection fraction between 0.9% saline, glucagon:exenatide and glucagon scan as measured by CMR
Time frame: Comparison between scans over a maximum period of 16 weeks
Part A - Stroke volume
Difference in stroke volume between 0.9% saline, glucagon:exenatide and glucagon scan as measured by CMR
Time frame: Comparison between scans over a maximum period of 16 weeks
Part A - Cardiac output
Difference in cardiac output between 0.9% saline, glucagon:exenatide and glucagon scan as measured by CMR
Time frame: Comparison between scans over a maximum period of 16 weeks
Part B - Changes in phosphocreatine/adenosine (PCr/ATP) radio
Changes in PCr/ATP radio between 0.9% saline, glucagon:exenatide and glucagon (optional) in the mid-interventricular septum as a measure of cardiac energy status as measured by 7T phosphorus (P) 31 magnetic resonance spectroscopy (MRS)
Time frame: Comparison between scans over a maximum period of 16 weeks
Part B - Changes in absolute concentrations of PCr and ATP defined by AHA 17- segment territory as a measure of cardiac energy status (determined by 31P-MRS)
Changes in absolute concentrations of PCr and ATP between 0.9% saline, glucagon:exenatide and glucagon (optional) as defined by AHA 17-segment territory as a measure of cardiac energy status (determined by 7T 31P-MRS)
Time frame: Comparison between scans over a maximum period of 16 weeks
Part A - End systolic/diastolic ventricular/atrial volumes
Difference in end systolic/diastolic ventricular/atrial volumes between 0.9% saline, glucagon:exenatide and glucagon scan as measured by CMR
Time frame: Comparison between scans over a maximum period of 16 weeks
Part A - Radial strain
Difference in radial strain between 0.9% saline, glucagon:exenatide and glucagon scan as measured by CMR
Time frame: Comparison between scans over a maximum period of 16 weeks
Part A - Global systolic/diastolic longitudinal/circumferential/radial strain rate
Difference in global systolic/diastolic longitudinal/circumferential/radial strain rate between 0.9% saline, glucagon:exenatide and glucagon scan as measured by CMR
Time frame: Comparison between scans over a maximum period of 16 weeks
Part A - Relationship between early and late filling (from mitral flow)
Difference in early and late filling (from mitral flow) between 0.9% saline, glucagon:exenatide and glucagon scan as measured by CMR
Time frame: Comparison between scans over a maximum period of 16 weeks
Part A/B - Heart rate
Difference in heart rate between 0.9% saline, glucagon:exenatide and glucagon
Time frame: Comparison between infusions (placebo vs drug) over a maximum period of 16 weeks
Part A/B - Blood pressure
Difference in blood pressure between 0.9% saline, glucagon:exenatide and glucagon
Time frame: Comparison between infusions (placebo vs drug) over a maximum period of 16 weeks
Part A/B - Glucose
Difference in glucose between 0.9% saline, glucagon:exenatide and glucagon
Time frame: Comparison between infusions (placebo vs drug) over a maximum period of 16 weeks
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Part A/B - Glucagon
Difference in glucagon between 0.9% saline, glucagon:exenatide and glucagon
Time frame: Comparison between infusions (placebo vs drug) over a maximum period of 16 weeks
Part A/B - Insulin
Difference in insulin between 0.9% saline, glucagon:exenatide and glucagon
Time frame: Comparison between infusions (placebo vs drug) over a maximum period of 16 weeks
Part A/B - C-peptide
Difference in C-peptide between 0.9% saline, glucagon:exenatide and glucagon
Time frame: Comparison between infusions (placebo vs drug) over a maximum period of 16 weeks
Part A/B - fatty acids
Difference in fatty acids between 0.9% saline, glucagon:exenatide and glucagon
Time frame: Comparison between infusions (placebo vs drug) over a maximum period of 16 weeks
Part A/B - exenatide
Difference in exenatide between 0.9% saline, glucagon:exenatide and glucagon
Time frame: Comparison between infusions (placebo vs drug) over a maximum period of 16 weeks
Part A/B - Total GLP-1 and total active GLP-1
Difference in GLP-1 between 0.9% saline, glucagon:exenatide and glucagon
Time frame: Comparison between infusions (placebo vs drug) over a maximum period of 16 weeks
Part A/B - gastric inhibitory polypeptide
Difference in gastric inhibitory polypeptide between 0.9% saline, glucagon:exenatide and glucagon
Time frame: Comparison between infusions (placebo vs drug) over a maximum period of 16 weeks