The Effect of Control IQ Hybrid Closed Loop Technology on Glycemic Control in Adolescents and Adults with Cystic Fibrosis-Related Diabetes.
Kevin J ScullyGurunanthan PalaniHui ZhengAmir MoheetMelissa S PutmanPublished in: Diabetes technology & therapeutics (2022)
Background: Cystic fibrosis-related diabetes (CFRD) is associated with pulmonary decline, compromised nutritional status, and earlier mortality. Although diabetes technology is increasingly being used in individuals with CFRD, there is a paucity of data investigating the impact of hybrid closed loop (HCL) technology on glycemia in this patient population. Materials and Methods: In this multicenter retrospective study of 13 adults and adolescents with CFRD, 14 days of continuous glucose monitor data were analyzed at baseline, 1 and 3 months after transition to the Tandem t:slim X2 pump with Control IQ™ technology, a HCL system. Results: Control IQ initiation was associated with a significant increase in % time in target range (70-180 mg/dL), as well as decreases in average glucose, % time in hyperglycemic ranges (% time >180 mg/dL, % time >250 mg/dL), and glycemic variability (standard deviation, coefficient of variation). There was no significant change in % time in hypoglycemia ranges (% time <54 mg/dL, % time <70 mg/dL). Conclusions: To our knowledge, this is the first study to report a beneficial effect of Food and Drug Administration (FDA)-approved HCL technology on glycemia in adults and adolescents with CFRD to date. Future studies are needed to understand the potential long-term glycemic benefits of HCL devices and to explore the impact of this technology on heath-related quality of life, pulmonary function, nutritional status, and mortality.
Keyphrases
- glycemic control
- type diabetes
- blood glucose
- young adults
- cystic fibrosis
- drug administration
- physical activity
- cardiovascular disease
- insulin resistance
- cardiovascular events
- risk factors
- electronic health record
- magnetic resonance
- pseudomonas aeruginosa
- magnetic resonance imaging
- climate change
- computed tomography
- lung function
- machine learning
- current status
- cross sectional
- air pollution
- diffusion weighted imaging