Enhanced Metabolic Control in a Pediatric Population with Type 1 Diabetes Mellitus Using Hybrid Closed-Loop and Predictive Low-Glucose Suspend Insulin Pump Treatments.

IF 1.4 Q3 PEDIATRICS Pediatric Reports Pub Date : 2024-12-14 DOI:10.3390/pediatric16040100
Irina Bojoga, Sorin Ioacara, Elisabeta Malinici, Victor Chiper, Olivia Georgescu, Anca Elena Sirbu, Simona Fica
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Abstract

Background: Insulin pumps coupled with continuous glucose monitoring sensors use algorithms to analyze real-time blood glucose levels. This allows for the suspension of insulin administration before hypoglycemic thresholds are reached or for adaptive tuning in hybrid closed-loop systems. This longitudinal retrospective study aims to analyze real-world glycemic outcomes in a pediatric population transitioning to such devices.

Methods: We evaluated children with type 1 diabetes mellitus (T1D) admitted to the Pediatric Diabetes Department from a major University Hospital in Bucharest, Romania, who transitioned to hybrid closed-loop or predictive low-glucose suspend system from either non-automated insulin pumps or multiple daily injections. The primary outcome was assessing the change in glycated hemoglobin (HbA1c) after initiating these devices. Secondary outcomes analyzed changes in glucose metrics from the 90 days prior to the baseline and follow-up visit.

Results: 51 children were included (58.8% girls), the mean age was 10.3 ± 3.7 years, and the mean follow-up duration was 13.2 ± 4.5 months. The analyzed parameters, such as HbA1c (6.9 ± 0.7% vs. 6.7 ± 0.6%, p = 0.023), time in range (69.3 ± 11.2% vs. 76 ± 9.9%, p < 0.001), time in tight range (47.4 ± 10.9% vs. 53.7 ± 10.7%, p < 0.001), time below range (5.6 ± 2.9% vs. 3.5 ± 1.9%, p < 0.001), time above range (25 ± 11.2% vs. 20.4 ± 9.4%, p = 0.001), and coefficient of variation (37.9 ± 4.8% vs. 35.6 ± 4.6%, p = 0.001), showed significant improvements.

Conclusions: The application of these sensor-integrated insulin pumps can significantly enhance metabolic control in pediatric populations, minimizing glycemic variations to mitigate complications and enrich the quality of life.

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使用混合型闭环和预测性低糖暂停胰岛素泵治疗增强1型糖尿病儿童人群的代谢控制
背景:胰岛素泵与连续血糖监测传感器结合使用算法分析实时血糖水平。这允许在达到低血糖阈值之前暂停胰岛素给药或在混合闭环系统中进行自适应调整。这项纵向回顾性研究的目的是分析儿科人群过渡到这种装置的实际血糖结果。方法:我们评估了罗马尼亚布加勒斯特一所主要大学医院儿科糖尿病科收治的1型糖尿病(T1D)儿童,他们从非自动化胰岛素泵或多次每日注射过渡到混合型闭环或预测性低糖悬浮系统。主要结果是评估这些装置启动后糖化血红蛋白(HbA1c)的变化。次要结果分析了基线和随访前90天血糖指标的变化。结果:纳入51例患儿(女童58.8%),平均年龄10.3±3.7岁,平均随访时间13.2±4.5个月。分析参数,如糖化血红蛋白(6.9±0.7%和6.7±0.6%,p = 0.023),时间范围(69.3±11.2%和76±9.9%,p < 0.001),时间紧范围(47.4±10.9%和53.7±10.7%,p < 0.001),下面的时间范围(5.6±2.9%和3.5±1.9%,p < 0.001),上面的时间范围(25±11.2%和20.4±9.4%,p = 0.001),和变异系数(37.9±4.8%和35.6±4.6%,p = 0.001),有显著改善。结论:这些传感器集成胰岛素泵的应用可显著增强儿科人群的代谢控制,最大限度地减少血糖变化,减轻并发症,提高生活质量。
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来源期刊
Pediatric Reports
Pediatric Reports PEDIATRICS-
CiteScore
2.10
自引率
0.00%
发文量
55
审稿时长
11 weeks
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