This project is part of several studies exploring situations, where glucagon potential has lesser glucose elevating effect. Exercise can be one of these situations as exercise may reduce liver glycogen depots. The investigators aims are: 1. To compare the increase in plasma glucose after 200µg glucagon given either after exercise or after resting for 45 minutes. 2. To determine whether a subcutaneous glucagon injection just before exercise has a greater impact on hepatic glucose production and thereby is superior to an injection after exercise in preventing hypoglycemia during and two hours after exercise. 3. To compare the accuracy of two Dexcom G4 continuous glucose monitors, (CGM) placed at either the abdominal wall or on the upper arm.
Design: A randomized placebo-controlled single-blinded study will be conducted. The subjects do not know if they get glucagon or placebo but the investigator know if the subject get glucagon or placebo. Study participants have to complete three study days and serve as their own controls. After participants have given an informed consent, they will go through three steps: 1. Screening day 2. Run-in period 3. Three study days in a random order: * Exercise and glucagon injected after cycling/or during cycling in case of hypoglycemia * Resting and glucagon after resting * Exercise and glucagon subcutaneous before cycling 47-49 hours before the study visits one CGM device is placed on the abdominal wall on the participant at least 7 cm from the site of the insulin pump infusion set. One CGM is placed on the non-dominant upper arm between 10 cm from elbow and 10 cm from shoulder on the posterior/lateral side on the arm. The CGMs will be in place for seven days. The CGM readings on the CGM placed at the abdominal wall are not blinded for the participant. The CGM readings on the CGM placed on the arm is blinded for the participant. In the period from the study visits to 4 days after the study visits the participant will do self-monitoring of blood glucose 8 times a day on standardized times.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
PREVENTION
Masking
SINGLE
Enrollment
14
Isabelle Steineck
Hvidovre, Denmark
The primary endpoint is peak plasma glucose achieved within 2 hours after the 200 μg subcutaneous glucagon injection. In the primary analysis, the investigators will compare the peak plasma glucose after exercise and after resting.
Time frame: 2 hours
The time-to-peak value after glucagon injection.
Time frame: 2 hours
Duration of the glucagon effect; equal to the time point from glucagon injection to when plasma glucose is below baseline.
Time frame: 2 hours
The glycaemic effect, calculated as the total area under the curve (tAUC) after each glucagon injection.
Time frame: 2 hours
Changes in plasma ketone bodies after each glucagon injection.
Time frame: 2 hours
Changes in plasma lactic acid after each glucagon injection
Time frame: 2 hours
Changes in plasma glucagon after each glucagon injection
Time frame: 2 hours
Changes in serum free fatty acid (FFA) after each glucagon injection
Time frame: 2 hours
Changes in serum triglycerides after each glucagon injection
Time frame: 2 hours
Number of events of hypoglycemia (plasma glucose ≤3.9 mmol/l) in the three study days.
Time frame: 3 hours
Number of re-events of hypoglycemia (plasma glucose ≤3.9 mmol/l) 30 minutes after first event in the three study groups.
Time frame: 30 minutes
Number of rebound hyperglycemia (plasma glucose ≥10.0 mmol/l).
Time frame: 4 hours
Mean absolute difference (MARD) in the two CGM sites during the four days after the study day using the daily 8 prespecified plasma glucose measurements by Bayer Contour Link as the reference value.
Time frame: 4 days
Mean absolute relative difference (MARD) during the study visits between the two sensor sites with the YSI 2300 STAT PLUS as the reference value.
Time frame: 6 hours
MARD during the hypoglycemia range (≤3.9 mmol/l) of the study visits between the two sensor sites (CGMarm vs. CGMabdomen) with the YSI 2300 STAT PLUS as the reference value.
Time frame: 6 hours
MARD during the euglycemia range (>3.9 mmol/l and < 10.0 mmol/l) of the study visits between the two sensor sites (CGMarm vs. CGMabdomen) with the YSI 2300 STAT PLUS as the reference.
Time frame: 6 hours
MARD during the hyperglycemia range (≥10.0 mmol/l) of the study visits for the two Dexcom G4 sensor sites (CGMarm vs. CGMabdomen) with the YSI 2300 STAT PLUS as the reference value
Time frame: 6 hours
MARD for the two sensor sites (CGMarm and CGMabdomen) from day 1- 7 with the Bayer Contour Link as the reference value.
Time frame: 7 days
The rate-of change (ROC) of the two sensors.
Time frame: 6 hours
The rate-of change (ROC) of plasma glucose measured by the YSI 2300 STAT PLUS.
Time frame: 6 hours
The Precision Absolute Relative Difference (=CGM readings of one system will be subtracted from CGM readings of the other system, and this difference will be divided by the average of the CGM readings of the abdominal sensors.)
Time frame: 7 days
The sensors' sensitivity and specificity to detect a hypoglycemic event.
Time frame: 7 days
The point accuracy of both sensors with the Clarke error grid analysis
Time frame: 7 days
The pressure induced sensor attenuation (PISA) by using a recent fault detection algorithm that can detect non-physiologic anomalous low sensor readings.
Time frame: 7 days
The fused data from the two sensors.
Fused data will be compared with data from individual sensors
Time frame: 7 days
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