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Open-Source Technology for Real-Time Continuous Glucose Monitoring in the Neonatal Intensive Care Unit: Case Study in
Katarina Braune1,2, Mandy Wäldchen3, Klemens Raile1
1Charité - Universitätsmedizin Berlin, Department of Paediatric Endocrinology and Diabetes, Berlin, Germany.
Insights
This case study shows real-time continuous glucose monitoring (rtCGM) effectively managed hypoglycemia in a newborn. Off-label rtCGM use improved glycemic control and reduced invasive procedures for infants.
Area of Science:
- Neonatal Medicine
- Endocrinology
- Medical Device Technology
Background:
- Real-time continuous glucose monitoring (rtCGM) is established for diabetes management but limited in infants and non-diabetic conditions.
- Transient congenital hyperinsulinism can cause prolonged hypoglycemia in newborns, requiring careful glucose management.
Observation:
- A case study details the off-label use of a Dexcom G6 rtCGM system and the open-source xDrip+ app in a newborn with hypoglycemia.
- The rtCGM system was initiated early, with an open-source app added for customizable alerts and improved hypoglycemia detection.
Findings:
- The newborn maintained over 90% time in range (45-180 mg/dL) with rtCGM, significantly reducing time in hypoglycemia (<45 mg/dL).
- Mean glucose levels were consistently maintained above 70 mg/dL, with decreasing glucose fluctuations over time.
Implications:
- Off-label rtCGM use in neonates can enhance glycemic pattern understanding and improve control, preventing severe hypoglycemia and reducing invasive procedures.
- Greater customizability of rtCGM alerts is needed for hospitalized newborns and other populations with glycemic instability.
- Further research on personal/off-label rtCGM use, accuracy at low glucose levels, and algorithm differences is warranted.
Background:
Use of real-time continuous glucose monitoring (rtCGM) systems has been shown to be a low-pain, safe, and effective method of preventing hypoglycemia and hyperglycemia in people with diabetes of various age groups. Evidence on rtCGM use in infants and in patients with conditions other than diabetes remains limited.
Objective:
This case study describes the off-label use of rtCGM and the use of an open-source app for glucose monitoring in a newborn with prolonged hypoglycemia secondary to transient congenital hyperinsulinism during the perinatal period.
Methods:
The Dexcom G6 rtCGM system (Dexcom, Inc) was introduced at 39 hours of age. Capillary blood glucose checks were performed regularly. In order to benefit from customizable alert settings and detect hypoglycemic episodes, the open-source rtCGM app xDrip+ was introduced at 9 days of age.
Results:
Time in range (45-180 mg/dL) for interstitial glucose remained consistently above 90%, whereas time in hypoglycemia (<45 mg/dL) decreased. Mean glucose was maintained above 70 mg/dL at 72 hours of life and thereafter. Daily sensor glucose profiles showed cyclic fluctuations that were less pronounced over time.
Conclusions:
While off-label use of medication is both common practice and a necessity in newborn infants, there are few examples of off-label uses of medical devices, rtCGM being a notable exception. Real-time information allowed us to better understand glycemic patterns and to improve the quality of glycemic control accordingly. Severe hypoglycemia was prevented, and measurement of serum levels of insulin and further lab diagnostics were performed much faster, while the patient's individual burden caused by invasive procedures was reduced. Greater customizability of threshold and alert settings would be beneficial for user groups with glycemic instability other than people with diabetes, and for hospitalized newborn infants in particular. Further research in the field of personal and off-label rtCGM use, efficacy studies evaluating the accuracy of low glucose readings, and studies on the differences between algorithms in translating raw sensor data, as well as customization of commercially available rtCGM systems, is needed.
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