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Lower plasma insulin levels during overnight closed-loop in school children with type 1 diabetes: Potential
Ulrike Schierloh1, Malgorzata E Wilinska2,3, Ineke M Pit-Ten Cate4
1Pediatric Clinic, Centre Hospitalier de Luxembourg, Luxembourg, GD de Luxembourg.
Insights
Overnight closed-loop insulin delivery in children with type 1 diabetes uses lower insulin doses and results in lower plasma insulin levels. Glucose control remained stable, suggesting improved insulin administration efficiency.
Area of Science:
- Pediatric Endocrinology
- Biomedical Engineering
- Metabolic Disorders
Background:
- Overnight closed-loop insulin delivery shows promise for improving glucose control and reducing hypoglycemia in children with type 1 diabetes.
- Previous research has not detailed insulin levels during closed-loop versus open-loop insulin delivery in pediatric populations.
- This study addresses the gap by measuring both glucose and plasma insulin levels to assess closed-loop system efficacy.
Purpose of the Study:
- To evaluate the efficacy of a model-based closed-loop insulin delivery algorithm compared to open-loop administration in children with type 1 diabetes.
- To measure and compare plasma insulin levels between closed-loop and open-loop insulin delivery systems.
- To assess the impact on blood glucose levels and administered insulin doses.
Main Methods:
- A randomized crossover design was employed with 15 children (6-12 years) with type 1 diabetes.
- Overnight closed-loop insulin delivery was compared with sensor-augmented pump therapy (open-loop) over two nights (in-patient and at home).
- Hourly plasma insulin and blood glucose levels were measured during in-patient stays.
Main Results:
- Plasma insulin levels were significantly lower with closed-loop delivery (p = .03).
- Administered insulin doses were significantly lower in the closed-loop condition (p = .02).
- Blood glucose levels did not significantly differ between closed-loop and open-loop conditions (p = .12).
Conclusions:
- Closed-loop insulin delivery resulted in lower insulin doses and plasma insulin levels without negatively impacting glucose control.
- This suggests that closed-loop systems are more targeted and potentially more effective for type 1 diabetes management in children.
- Further research can explore the long-term benefits and broader application of closed-loop systems.
Background:
Studies have shown that overnight closed-loop insulin delivery can improve glucose control and reduce the risk of hypoglycemia and hence may improve metabolic outcomes and reduce burden for children with type 1 diabetes and their families. However, research so far has not reported insulin levels while comparing closed-loop to open-loop insulin delivery in children. Therefore, in this study we obtained glucose levels as well as plasma insulin levels in children with type 1 diabetes to evaluate the efficacy of a model-based closed-loop algorithm compared to an open-loop administration.
Methods:
Fifteen children with type 1 diabetes, 6-12 years, participated in this open-label single center study. We used a randomized cross over design in which we compared overnight closed-loop insulin delivery with sensor augmented pump therapy for two nights in both the hospital and at home (i.e., 1 night in-patient stay and at home per treatment condition). Only during the in-patient stay, hourly plasma insulin and blood glucose levels were assessed and are reported in this paper.
Results:
Results of paired sample t-tests revealed that although plasma insulin levels were significantly lower during the closed-loop than in the open-loop (Mean difference 36.51 pmol/l; t(13) = 2.13, p = .03, effect size d = 0.57), blood glucose levels did not vary between conditions (mean difference 0.76 mmol/l; t(13) = 1.24, p = .12, d = 0.37). The administered dose of insulin was significantly lower during the closed-loop compared with the open-loop (mean difference 0.10 UI; t(12) = 2.45, p = .02, d = 0.68).
Conclusions:
Lower insulin doses were delivered in the closed-loop, resulting in lower plasma insulin levels, whereby glucose levels were not affected negatively. This suggests that the closed-loop administration is better targeted and hence could be more effective.
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