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Published on: June 11, 2012
Continuous glucose monitoring for children with hypoglycaemia: Evidence in 2023
Chris Worth1,2, Lucy Hoskyns1, Maria Salomon-Estebanez1
1Department of Paediatric Endocrinology, Royal Manchester Children's Hospital, Manchester, United Kingdom.
Insights
Continuous Glucose Monitoring (CGM) shows limited efficacy for non-diabetic childhood hypoglycemia, despite technological advances. Personalized management and understanding behavioral factors are key to reducing hypoglycemic episodes in these children.
Area of Science:
- Pediatrics
- Endocrinology
- Medical Technology
Background:
- Childhood hypoglycemia is a significant public health concern linked to adverse neurodevelopment.
- Continuous Glucose Monitoring (CGM) is crucial for managing glucose levels, particularly in type 1 diabetes.
- Evidence for CGM's widespread use in rare non-diabetic hypoglycemia disorders is still developing.
Purpose of the Study:
- To critically review the updated evidence on CGM use in non-diabetic childhood hypoglycemia disorders since 2020.
- To analyze the clinical application, accuracy, and benefits of CGM in this specific pediatric population.
- To provide recommendations for the qualified use of CGM in managing rare hypoglycemia conditions.
Main Methods:
- Systematic review and critical analysis of recent (post-2020) scientific literature and user feedback on CGM.
- Evaluation of CGM device accuracy, predictive capabilities of machine learning algorithms, and cost-effectiveness.
- Assessment of CGM's role in disease phenotyping, understanding natural history, and informing clinical management strategies.
Main Results:
- CGM point accuracy remains low in children with non-diabetic hypoglycemia, and simple device provision has not shown clear benefits.
- Machine learning for hypoglycemia prediction lacks sufficient real-world accuracy, even in diabetic populations.
- CGM facilitates disease phenotyping, aids diagnosis, and improves understanding of hypoglycemia natural history, despite cost barriers.
Conclusions:
- Current CGM technology and machine learning approaches have limitations for non-diabetic childhood hypoglycemia.
- An individualized approach focusing on behavioral determinants is effective in reducing hypoglycemia episodes.
- Further research and qualified application guidelines are needed for optimal CGM use in rare hypoglycemia disorders.
Abstract:
In 2023, childhood hypoglycaemia remains a major public health problem and significant risk factor for consequent adverse neurodevelopment. Irrespective of the underlying cause, key elements of clinical management include the detection, prediction and prevention of episodes of hypoglycaemia. These tasks are increasingly served by Continuous Glucose Monitoring (CGM) devices that measure subcutaneous glucose at near-continuous frequency. While the use of CGM in type 1 diabetes is well established, the evidence for widespread use in rare hypoglycaemia disorders is less than convincing. However, in the few years since our last review there have been multiple developments and increased user feedback, requiring a review of clinical application. Despite advances in device technology, point accuracy of CGM remains low for children with non-diabetes hypoglycaemia. Simple provision of CGM devices has not replicated the efficacy seen in those with diabetes and is yet to show benefit. Machine learning techniques for hypoglycaemia prevention have so far failed to demonstrate sufficient prediction accuracy for real world use even in those with diabetes. Furthermore, access to CGM globally is restricted by costs kept high by the commercially-driven speed of technical innovation. Nonetheless, the ability of CGM to digitally phenotype disease groups has led to a better understanding of natural history of disease, facilitated diagnoses and informed changes in clinical management. Large CGM datasets have prompted re-evaluation of hypoglycaemia incidence and facilitated improved trial design. Importantly, an individualised approach and focus on the behavioural determinants of hypoglycaemia has led to real world reduction in hypoglycaemia. In this state of the art review, we critically analyse the updated evidence for use of CGM in non-diabetic childhood hypoglycaemia disorders since 2020 and provide suggestions for qualified use.
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