CGM and Insulin Pump
DeviceDexcom G4 Platinum CGM with Share AP Receiver Roche Accu-Chek insulin pump.
NCT Number: NCT02705053
This clinical trial is a study to assess the performance of an automated glucose control system (Artificial Pancreas, AP) device in home settings for subjects with type 1 diabetes. Specifically, the investigators will test zone model predictive control AP that will be enhanced by run-to-run optimizations of basal rates (BR) and insulin to carbohydrate ratios (CR).
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Notify Me21 year–65 year
All sexes
Interventional
Phase 3
William Sansum Diabetes Center, Santa Barbara, California, United States
This clinical trial is a study to assess the performance of an automated glucose control system (Artificial Pancreas, AP) device in home settings for subjects with type 1 diabetes. Specifically, the investigators will test zone model predictive control AP that will be enhanced by run-to-run optimizations of basal rates (BR) and insulin to carbohydrate ratios (CR). This protocol builds on the investigators previously validated Zone-MPC and Health Monitoring System (HMS) algorithms (ClinicalTrials.gov: NCT01929798) integrated into the Diabetes Assistant (DiAs) system (ClinicalTrials.gov: NCT02463682). The same AP system used in NCT02463682 will now be used with algorithmic adjustment of CR's prior to closed-loop initiation, and continued BR and CR algorithmic optimization during closed-loop use for a longer duration.
The system will be evaluated on up to 12 subjects per site (n=36 subjects) for 15 weeks at 3 different sites (William Sansum Diabetes Center, University of Virginia, and Mayo Clinic, Rochester, MN).
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Dexcom G4 Platinum CGM with Share AP Receiver Roche Accu-Chek insulin pump.
The devices that will be used in the Closed-Loop Control System include the following components:
DiAs - a smart-phone medical platform; Dexcom G4 Platinum connected to DiAs via Bluetooth CGM receiver; Roche Accu-Chek insulin pump connected to DiAs via wireless Bluetooth; Remote Monitoring Server connected to DiAs via 3G or local Wi-Fi network, and Zone-MPC and HMS algorithms running on DiAs (MPC and HMS)
Time frame: 13 Weeks
The primary endpoint is change in HbA1c from baseline (end of week 2) to end of week 15 (end of study). HbA1c will be measured at weeks 7 and 11 as well following each adaptation period, so the overall design of the study includes 4 repeated measures and a baseline-end of study contrast.
Time frame: 1 week
Time within the target range for glucose 70-180 mg/dl overall, compared between sensor-augmented pump use (open loop care, week 2) and adapted closed-loop control (final week of each month) to determine the feasibility of long-term system use.
Time frame: 1 week
Time within the tight target range for glucose 80-140 mg/dl overnight, compared between sensor-augmented pump use (open loop care, week 2) and adapted closed-loop control (final week of each month) to determine the feasibility of long-term system use.
Time frame: 1 week
Time within the target range for glucose 70-150 mg/dl postprandial within 5 hours following meals, compared between sensor-augmented pump use (open loop care, week 2) and adapted closed-loop control (final week of each month) to determine the feasibility of long-term system use.
Time frame: 1 week
Markers of hypo- and hyperglycemia, compared between sensor-augmented pump use (open loop care, week 2) and adapted closed-loop control (final week of each month) to determine the feasibility of long-term system use. These markers include LBGI (Low blood glucose index) and HBGI (High blood glucose index.
Time frame: 1 week
Change in insulin doses given, compared between sensor-augmented pump use (open loop care, week 2) and adapted closed-loop control (final week of each month) to determine the feasibility of long-term system use.
Time frame: 1 week
Treatments for hypoglycemia between the open and closed-loop phases of the study, compared between sensor-augmented pump use (open loop care, week 2) and adapted closed-loop control (final week of each month) to determine the feasibility of long-term system use.
Time frame: 12 weeks
Number of alerts given by the HMS to prevent hypoglycemia during closed-Loop control.
Time frame: 12 weeks
Outside interventions needed to aid with treatment during closed-Loop control.
Time frame: 12 weeks
Failure analysis of the devices/connectivity issues that may occur during closed-Loop control. This includes number of CGM communication losses with 3 or more missed points, and number of times the entire system required a restart
Time frame: 1 week
Time with glucose ≤ 70 mg/dL, compared between sensor-augmented pump use (open loop care, week 2) and adapted closed-loop control (final week of each month) to determine the feasibility of long-term system use.
Sansum Diabetes Research Institute
Other
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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