Increased proportion of time in hybrid closed-loop "Auto Mode" is associated with improved glycaemic control for adolescent and young patients with adult type 1 diabetes using the MiniMed 670G insulin pump.
Citation | Duffus, Sara H, et al. “Increased Proportion of Time in Hybrid Closed-Loop ‘Auto Mode’ Is Associated With Improved Glycaemic Control for Adolescent and Young Patients With Adult Type 1 Diabetes Using the MiniMed 670G Insulin Pump”. 2020. Diabetes, Obesity & Metabolism, vol. 22, no. 4, 2020, pp. 688–693. |
Center | Vanderbilt University |
Author | Sara H Duffus, Zain Al Ta'ani, James C Slaughter, Kevin D Niswender, Justin M Gregory |
Abstract |
The Medtronic MiniMed 670G system delivers insulin to patients with type 1 diabetes mellitus (T1DM) using either its hybrid closed-loop (HCL) "Auto Mode" feature or an open-loop mode. In this retrospective, cross-sectional analysis, we quantified the association between time in Auto Mode and both haemoglobin A1c (HbA1c) and time in range (TIR, sensor glucose 70-180 mg/dL) among 96 paediatric and young adult patients with T1DM. The median percentage time in Auto Mode was 38.5% (interquartile range 0%-64%). The percentage time in Auto Mode significantly correlated with HbA1c after adjustment for covariables (β = -0.008, P = 0.014). Each daily 3.4-h increase in Auto Mode time was associated with a 0.1% decrease in HbA1c. Auto Mode time was also correlated with TIR after adjustment for covariables (β = 0.14, P = 0.02): for each daily 8.6-h increase in Auto Mode time, TIR increased by 5%. While Auto Mode use was low, increased time in Auto Mode was associated with a significantly lower HbA1c and increased TIR. These findings emphasize the importance of identifying strategies to improve the ease of use of HCL systems. |
Year of Publication |
2020
|
Journal |
Diabetes, obesity & metabolism
|
Volume |
22
|
Issue |
4
|
Number of Pages |
688-693
|
Date Published |
04/2020
|
ISSN Number |
1463-1326
|
DOI |
10.1111/dom.13912
|
Alternate Journal |
Diabetes Obes Metab
|
PMID |
31709736
|
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