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Impact of Exenatide on Cardiovascular Exercise Performance in Type 2 Diabetes

Impact of Exenatide on Cardiovascular Exercise Performance in Type 2 Diabetes

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01364584
Acronym
Exenatide
Enrollment
23
Registered
2011-06-02
Start date
2010-10-31
Completion date
2014-12-31
Last updated
2023-07-12

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Type 2 Diabetes

Brief summary

Previous research in our lab and others has established that type 2 diabetes (T2D) is associated with significantly impaired functional exercise capacity, a factor which is potentially associated with an increased risk of cardiovascular disease in those with type 2 diabetes. Of great concern, the majority of people with type 2 diabetes are sedentary and one possible reason may be that exercise, even at low levels, is perceived as being a harder effort than for nondiabetic people. Thus, treatments that may motivate patients with type 2 diabetes to be more physically active have great potential benefit. Recent observational studies suggest that glucagon-like peptide-1 agents, such as exenatide, may have a beneficial effect on endothelial and cardiac function. Because these two factors have been shown to be associated with exercise dysfunction in type 2 diabetes, the investigators hypothesize that exenatide may improve exercise capacity in those with type 2 diabetes. The aims of this study are to (1) assess whether exenatide will improve functional exercise capacity in persons with type 2 diabetes and (2) investigate the effect of exenatide on specific metabolic, endothelial, cardiac and peripheral circulatory measures of function related to changes in exercise capacity. The Investigators primary hypothesis is that exenatide will improve functional exercise capacity in people with type 2 diabetes. Having a drug that improves exercise capacity could motivate patients to exercise more and hence be a significant benefit.

Detailed description

Subjects will come for a total of seven testing visits, including two screening visits, during which evaluations will take place. Visits are structured as follows: Visits 1, 2 and 3 will be completed over a four-week period. 1. After subjects review the study and give consent for study participation, a history and physical exam will be performed. In addition, the Low-level Physical Activity Recall (LoPAR) questionnaire, pulmonary function testing, and vital signs will be performed. 2. Subjects will be asked to fast prior to visit 2. Blood and urine samples will be collected for measurement of glycosylated hemoglobin(HbA1C), fasting glucose, fasting insulin, free fatty acids and microalbuminuria (these measures will be covariates in the analyses). A dietary survey will be administered for food preferences for the three day study diet administered prior to visits 3, 4, 6 and 7. Dual Energy X-ray Absorptiometry (DXA) and body composition tests will be done to ensure that groups are weight similar (using fat-free mass). Autonomic nervous system testing, a resting electrocardiogram (EKG) and familiarization bicycle test will be performed. 3. Subjects will receive a three day study diet prior to visit 3. A resting and exercise EKG will be performed on the day of the visit. Patients will have measures made of cardiac function and endothelial function on visit 3 as well using plethysmography and cardiac echo. The peak aerobic capacity (VO2max) test will be performed. Vital signs will be taken at rest. 4. Randomization: Subjects will receive a three day study diet prior to visit 4. During visit four, arterial stiffness/endothelial function will be non-invasively measured by the Sphygmocor system. Subjects will have three constant-load tests to measure oxygen (VO2) kinetics where oxygen saturation (StO2) will be measured during exercise. A resting and exercise EKG and vital signs will be performed during the visit. Subjects will be randomized to either taking exenatide or placebo and all must have been taking metformin (1-2 grams /d) for at least 3 months. Exenatide will be titrated starting at 5 mcg twice per day for two weeks then moving to 10 mcg twice per day as tolerated and the placebo dose will match this titration. During the treatment phase subjects will be given a log to keep track of their blood glucose each day. Study coordinators will contact each subject weekly to obtain these values which will be checked by the study doctors and shared with the subject's primary care physician if adjustments in other medications need to be made. 5. Week 4: Visit 5 will consist of a physical exam with a clinician as well as a blood draw and check of vital signs during exenatide treatment. 6. Week 12: After 3 months of exenatide or placebo administration, the procedures of Visit 3 will be repeated as Visit 6. Additional testing to be performed during visit 6 include a physical exam performed by a study physician, DXA scan and body composition tests to monitor any changes in body composition (fat-free mass), blood work for lab tests listed in Visit 2 and the LoPAR questionnaire. 7. Week 13: During visit 7, the testing performed during visit 4 will be repeated after 3 months of exenatide or placebo administration. Subjects will continue exenatide or placebo treatment while completing exit testing during Weeks 12 and 13.

Interventions

DRUGExenatide

Subcutaneous injection 2.5 micrograms (mcg) to 10 mcg twice per day (BID)

DRUGPlacebo

Subcutaneous injection 2.5 mcg-10 mcg BID

Sponsors

Amylin Pharmaceuticals, LLC.
CollaboratorINDUSTRY
Eli Lilly and Company
CollaboratorINDUSTRY
University of Colorado, Denver
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
OTHER
Masking
DOUBLE (Subject, Investigator)

Eligibility

Sex/Gender
ALL
Age
45 Years to 70 Years
Healthy volunteers
No

Inclusion criteria

* Men and women between the ages of 45 and 70 years of age * Diagnosed with uncomplicated type 2 diabetes * Sedentary persons (exercising not more than one time per week) * Females who are post-menopausal * BMI must be less than 35 * Subjects must be taking metformin for diabetes control and may also be on sulfonylurea drugs or meglitinides * Glycosylated hemoglobin (HbA1C) \<9% * Non-smokers or former smokers who have quit for at least 1 year * Absence of comorbid conditions * Resting systolic blood pressure \< 190, Resting diastolic blood pressure \< 95

Exclusion criteria

* People with type 2 diabetes (T2D) taking oral medications, other than metformin or sulfonylurea drugs or meglitinides, to control their diabetes. * Persons treated with insulin will be excluded * People who are currently smoking or have not quit for at least one year * Peripheral neuropathy * Regional wall motion abnormalities * Left ventricular systolic dysfunction * Ischemic heart disease (abnormal resting or exercise electrocardiogram) * Presence of angina that would limit exercise performance * Pulmonary problems that would limit exercise performance * Systolic blood pressure \>190 mmHg at rest or \>250 mmHg with exercise or diastolic pressure \>95 mmHg at rest or \>115 mmHg with exercise * Persons with autonomic dysfunction (\>20 mm fall in upright BP without a change in heart rate) * Proteinuria (urine protein \>200 mg/dl) or a creatinine \> 2.0 mg/dl * Renal disease * Persons with peripheral arterial disease * Persons with a history of pancreatitis

Design outcomes

Primary

MeasureTime frameDescription
Peak Oxygen Consumption (VO2 Peak)Baseline and 3 monthsSubjects' peak oxygen consumption (VO2 peak) will be tested on a stationary bike before and after 3 months of study medication or placebo.

Secondary

MeasureTime frameDescription
Oxygen Uptake Kinetics Steady State TauBaseline and 3 monthsTime to steady state oxygen consumption will be assessed in subject before and after 3 months of study medication or placebo.
Change From Baseline in Arterial StiffnessBaseline and 3 monthsPulse wave velocity will be measured via sphygmocor before and after 3 months of study medication or placebo.
Change From Baseline in Peak Dilation of Brachial Artery DiameterBaseline and 3 monthsChange in the response of the brachial artery to hyperemia will be assessed before and after 3 months of study medication or placebo.
Change in (Non-invasively Measured) Deoxygenated Hemoglobin Concentration in the Vastus Lateralis During ExerciseBaseline and 3 monthsDeoxygenated hemoglobin concentration will be measured using near-infrared spectroscopy during sub-maximal exercise before and after 3 months of study drug administration.
Echocardiographic Measures - Circumferential StrainBaseline and 3 monthsPotential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.
Echocardiographic Measures - Longitudinal StrainBaseline and 3 monthsPotential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.
Echocardiographic Measures - Stroke VolumeBaseline and 3 monthsPotential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.
Echocardiographic Measures - Mitral Valve E Wave VelocityBaseline and 3 monthsPotential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.
Echocardiographic Measures - Mitral Valve E:A Wave VelocityBaseline and 3 monthsPotential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.
Echocardiographic Measures - Mitral Valve Deceleration TimeBaseline and 3 monthsPotential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.
Echocardiographic Measures - Lateral E'Baseline and 3 monthsPotential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.
Echocardiographic Measures - Lateral E:E'Baseline and 3 monthsPotential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.
Echocardiographic Measures - Septal E'Baseline and 3 monthsPotential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.
Echocardiographic Measures - Septal E:E'Baseline and 3 monthsPotential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.

Countries

United States

Participant flow

Participants by arm

ArmCount
Exenatide
Pre-dosed injectable pen (an automatic device which injects under the skin) 10 mcg twice a day of exenatide for 2.5 months Exenatide: Subcutaneous injection 2.5 micrograms (mcg) to 10 mcg twice per day (BID)
11
Placebo
Pre-dosed injectable pen (an automatic device which injects under the skin) 10 mcg twice a day of placebo for 2.5 months Placebo: Subcutaneous injection 2.5 mcg-10 mcg BID
12
Total23

Baseline characteristics

CharacteristicPlaceboTotalExenatide
Age, Continuous64 years
STANDARD_DEVIATION 1
64 years
STANDARD_DEVIATION 4
64 years
STANDARD_DEVIATION 7
Body Fat (%)35.7 percentage
STANDARD_DEVIATION 2.2
36.7 percentage
STANDARD_DEVIATION 7.15
37.7 percentage
STANDARD_DEVIATION 2.3
Body Mass Index (kg/m2)31.3 kilograms per meter squared
STANDARD_DEVIATION 1.2
32.3 kilograms per meter squared
STANDARD_DEVIATION 3.9
33.9 kilograms per meter squared
STANDARD_DEVIATION 1
Body Mass (kg)87.9 kilograms
STANDARD_DEVIATION 3.3
93.4 kilograms
STANDARD_DEVIATION 16.1
101.7 kilograms
STANDARD_DEVIATION 5.3
Circumferential Strain-23.5 percentage difference in circumferences
STANDARD_DEVIATION 5
-23.6 percentage difference in circumferences
STANDARD_DEVIATION 5.3
-23.7 percentage difference in circumferences
STANDARD_DEVIATION 5.5
Fasting Glucose (mg/dl)127.9 milligrams per deciliter
STANDARD_DEVIATION 8
147.6 milligrams per deciliter
STANDARD_DEVIATION 59.9
170.5 milligrams per deciliter
STANDARD_DEVIATION 24.2
Fasting Insulin (μU/ml)34.6 microunits per milliliter
STANDARD_DEVIATION 6.4
31.0 microunits per milliliter
STANDARD_DEVIATION 15.1
29.0 microunits per milliliter
STANDARD_DEVIATION 3.7
Free Fatty Acids (mmol/L)500.5 millimoles per liter
STANDARD_DEVIATION 67.8
546.3 millimoles per liter
STANDARD_DEVIATION 228.2
580.8 millimoles per liter
STANDARD_DEVIATION 76.3
Glycerol (mg/dl)1.14 milligrams per deciliter
STANDARD_DEVIATION 0.5
1.16 milligrams per deciliter
STANDARD_DEVIATION 0.5
1.21 milligrams per deciliter
STANDARD_DEVIATION 0.5
HbA1c (%)7.2 percentage of glycated hemoglobin
STANDARD_DEVIATION 0.4
7.2 percentage of glycated hemoglobin
STANDARD_DEVIATION 1.1
7.3 percentage of glycated hemoglobin
STANDARD_DEVIATION 1.1
LDL Cholesterol (mg/dl)97.6 milligrams per deciliter
STANDARD_DEVIATION 7.4
94.4 milligrams per deciliter
STANDARD_DEVIATION 22.1
93.8 milligrams per deciliter
STANDARD_DEVIATION 6.2
Lean Mass (kg)55.8 kilograms
STANDARD_DEVIATION 2.8
58.1 kilograms
STANDARD_DEVIATION 11.6
61.9 kilograms
STANDARD_DEVIATION 3.9
Longitudinal Strain-19.3 percentage difference in lengths
STANDARD_DEVIATION 2.3
-18.2 percentage difference in lengths
STANDARD_DEVIATION 3.4
-17.1 percentage difference in lengths
STANDARD_DEVIATION 3.9
Region of Enrollment
United States
12 Participants23 Participants11 Participants
Sex: Female, Male
Female
7 Participants11 Participants4 Participants
Sex: Female, Male
Male
5 Participants12 Participants7 Participants
Stroke Volume (ml/beat)82.5 milliliters per beat
STANDARD_DEVIATION 23.1
81.5 milliliters per beat
STANDARD_DEVIATION 23.1
79.2 milliliters per beat
STANDARD_DEVIATION 22.7
Total Cholesterol (mg/dl)175.3 milligrams per deciliter
STANDARD_DEVIATION 11.7
165.2 milligrams per deciliter
STANDARD_DEVIATION 34.9
156.3 milligrams per deciliter
STANDARD_DEVIATION 9.8
Triglycerides (mg/dl)217.8 milligrams per deciliter
STANDARD_DEVIATION 58
190.1 milligrams per deciliter
STANDARD_DEVIATION 136.9
156.8 milligrams per deciliter
STANDARD_DEVIATION 18.3
VO2 kinetics tau (sec)63.3 seconds
STANDARD_DEVIATION 5.9
71.9 seconds
STANDARD_DEVIATION 19.1
78.2 seconds
STANDARD_DEVIATION 6.8
VO2peak (ml/kg/min)15.4 milliliters per kilogram per minute
STANDARD_DEVIATION 0.9
16.4 milliliters per kilogram per minute
STANDARD_DEVIATION 3.1
17.5 milliliters per kilogram per minute
STANDARD_DEVIATION 1
VO2peak (ml/min)1363 milliliters per minute
STANDARD_DEVIATION 95
1554 milliliters per minute
STANDARD_DEVIATION 415
1783 milliliters per minute
STANDARD_DEVIATION 129

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
— / —— / —
other
Total, other adverse events
0 / 110 / 12
serious
Total, serious adverse events
3 / 110 / 12

Outcome results

Primary

Peak Oxygen Consumption (VO2 Peak)

Subjects' peak oxygen consumption (VO2 peak) will be tested on a stationary bike before and after 3 months of study medication or placebo.

Time frame: Baseline and 3 months

ArmMeasureValue (MEAN)Dispersion
ExenatidePeak Oxygen Consumption (VO2 Peak)16.6 milliliters per kilogram per minuteStandard Deviation 1.1
PlaceboPeak Oxygen Consumption (VO2 Peak)16.1 milliliters per kilogram per minuteStandard Deviation 1.1
Secondary

Change From Baseline in Arterial Stiffness

Pulse wave velocity will be measured via sphygmocor before and after 3 months of study medication or placebo.

Time frame: Baseline and 3 months

Population: Data unable to be collected on all participants, hence the difference between the overall number of participants analyzed here and the actual number of participants who completed the study

ArmMeasureValue (MEAN)Dispersion
ExenatideChange From Baseline in Arterial Stiffness-1.23 meters/secondStandard Deviation 1.27
PlaceboChange From Baseline in Arterial Stiffness0.37 meters/secondStandard Deviation 0.89
Secondary

Change From Baseline in Peak Dilation of Brachial Artery Diameter

Change in the response of the brachial artery to hyperemia will be assessed before and after 3 months of study medication or placebo.

Time frame: Baseline and 3 months

ArmMeasureGroupValue (MEAN)Dispersion
ExenatideChange From Baseline in Peak Dilation of Brachial Artery DiameterPre-Intervention (Baseline)0.193 millimetersStandard Deviation 0.045
ExenatideChange From Baseline in Peak Dilation of Brachial Artery DiameterPost-Intervention (3 months)0.226 millimetersStandard Deviation 0.057
PlaceboChange From Baseline in Peak Dilation of Brachial Artery DiameterPre-Intervention (Baseline)0.192 millimetersStandard Deviation 0.046
PlaceboChange From Baseline in Peak Dilation of Brachial Artery DiameterPost-Intervention (3 months)0.151 millimetersStandard Deviation 0.026
Secondary

Change in (Non-invasively Measured) Deoxygenated Hemoglobin Concentration in the Vastus Lateralis During Exercise

Deoxygenated hemoglobin concentration will be measured using near-infrared spectroscopy during sub-maximal exercise before and after 3 months of study drug administration.

Time frame: Baseline and 3 months

Population: Data not collected

Secondary

Echocardiographic Measures - Circumferential Strain

Potential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.

Time frame: Baseline and 3 months

ArmMeasureValue (MEAN)Dispersion
ExenatideEchocardiographic Measures - Circumferential Strain-25.6 % difference in circumferencesStandard Deviation 1.78
PlaceboEchocardiographic Measures - Circumferential Strain-22.6 % difference in circumferencesStandard Deviation 1.4
Secondary

Echocardiographic Measures - Lateral E'

Potential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.

Time frame: Baseline and 3 months

ArmMeasureValue (MEAN)Dispersion
ExenatideEchocardiographic Measures - Lateral E'0.09 centimeters/secondStandard Deviation 0.01
PlaceboEchocardiographic Measures - Lateral E'0.09 centimeters/secondStandard Deviation 0.01
Secondary

Echocardiographic Measures - Lateral E:E'

Potential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.

Time frame: Baseline and 3 months

ArmMeasureValue (MEAN)Dispersion
ExenatideEchocardiographic Measures - Lateral E:E'6.7 ratioStandard Deviation 0.6
PlaceboEchocardiographic Measures - Lateral E:E'8.4 ratioStandard Deviation 1.2
Secondary

Echocardiographic Measures - Longitudinal Strain

Potential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.

Time frame: Baseline and 3 months

ArmMeasureValue (MEAN)Dispersion
ExenatideEchocardiographic Measures - Longitudinal Strain-18.5 % difference in lengthsStandard Deviation 1.2
PlaceboEchocardiographic Measures - Longitudinal Strain-18.3 % difference in lengthsStandard Deviation 0.8
Secondary

Echocardiographic Measures - Mitral Valve Deceleration Time

Potential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.

Time frame: Baseline and 3 months

ArmMeasureValue (MEAN)Dispersion
ExenatideEchocardiographic Measures - Mitral Valve Deceleration Time234.6 millisecondsStandard Deviation 17
PlaceboEchocardiographic Measures - Mitral Valve Deceleration Time239.8 millisecondsStandard Deviation 14.6
Secondary

Echocardiographic Measures - Mitral Valve E:A Wave Velocity

Potential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.

Time frame: Baseline and 3 months

ArmMeasureValue (MEAN)Dispersion
ExenatideEchocardiographic Measures - Mitral Valve E:A Wave Velocity0.85 centimeters/secondStandard Deviation 0.09
PlaceboEchocardiographic Measures - Mitral Valve E:A Wave Velocity0.82 centimeters/secondStandard Deviation 0.06
Secondary

Echocardiographic Measures - Mitral Valve E Wave Velocity

Potential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.

Time frame: Baseline and 3 months

ArmMeasureValue (MEAN)Dispersion
ExenatideEchocardiographic Measures - Mitral Valve E Wave Velocity0.61 centimeters/secondStandard Deviation 0.06
PlaceboEchocardiographic Measures - Mitral Valve E Wave Velocity0.78 centimeters/secondStandard Deviation 0.06
Secondary

Echocardiographic Measures - Septal E'

Potential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.

Time frame: Baseline and 3 months

ArmMeasureValue (MEAN)Dispersion
ExenatideEchocardiographic Measures - Septal E'0.08 centimeters/secondStandard Deviation 0.01
PlaceboEchocardiographic Measures - Septal E'0.07 centimeters/secondStandard Deviation 0.01
Secondary

Echocardiographic Measures - Septal E:E'

Potential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.

Time frame: Baseline and 3 months

ArmMeasureValue (MEAN)Dispersion
ExenatideEchocardiographic Measures - Septal E:E'8.3 ratioStandard Deviation 0.9
PlaceboEchocardiographic Measures - Septal E:E'12.6 ratioStandard Deviation 1.4
Secondary

Echocardiographic Measures - Stroke Volume

Potential change in cardiac function will be assessed by echocardiography before and after 3 months of study medication or placebo.

Time frame: Baseline and 3 months

ArmMeasureValue (MEAN)Dispersion
ExenatideEchocardiographic Measures - Stroke Volume93.3 mL/beatStandard Deviation 2.8
PlaceboEchocardiographic Measures - Stroke Volume80.7 mL/beatStandard Deviation 1.9
Secondary

Oxygen Uptake Kinetics Steady State Tau

Time to steady state oxygen consumption will be assessed in subject before and after 3 months of study medication or placebo.

Time frame: Baseline and 3 months

ArmMeasureValue (MEAN)Dispersion
ExenatideOxygen Uptake Kinetics Steady State Tau71.4 secondsStandard Deviation 8.5
PlaceboOxygen Uptake Kinetics Steady State Tau67.2 secondsStandard Deviation 2.7

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026