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Continuous glucose monitoring and metrics for clinical trials: an international consensus statement
Tadej Battelino1, Charles M Alexander2, Stephanie A Amiel3
1Department of Pediatric Endocrinology, Diabetes and Metabolism, University Children's Hospital, University Medical Centre Ljubljana, and Faculty of Medicine, University of Ljubljana, Ljubljana, Slovenia.
Insights
Continuous glucose monitoring (CGM) provides detailed glucose insights beyond HbA1c in diabetes clinical trials. Standardized CGM data collection and reporting are recommended to enhance understanding of glucose control and inform treatment decisions.
Area of Science:
- Endocrinology
- Metabolic Diseases
- Clinical Trials Methodology
Background:
- Traditionally, HbA1c has been the primary measure for blood glucose control in diabetes clinical trials.
- HbA1c correlates with diabetes complications but offers limited insight into glucose variability and asymptomatic events.
- Continuous Glucose Monitoring (CGM) is increasingly used, providing high-frequency data on glucose profiles.
Purpose of the Study:
- To recommend standardized methods for utilizing CGM data in prospective diabetes clinical studies.
- To propose CGM data as either primary endpoints or supportive metrics in clinical trials.
- To enhance the interpretability and utility of CGM-derived metrics for stakeholders.
Main Methods:
- This consensus statement outlines recommendations for optimizing CGM data collection in clinical studies.
- It specifies key glucose metrics derived from CGM for evaluation.
- Recommendations are endorsed by major international diabetes organizations.
Main Results:
- CGM data offers granular insights into glycaemic excursions, hypoglycemia, and hyperglycemia, not captured by HbA1c alone.
- Standardized reporting of CGM metrics can improve data interpretability.
- CGM data can complement HbA1c in assessing therapeutic interventions.
Conclusions:
- Standardized use of CGM data in clinical trials is crucial for comprehensive glucose assessment.
- CGM-derived metrics provide valuable information beyond HbA1c for treatment decisions.
- Adoption of these recommendations will advance diabetes research and patient care.
Abstract:
Randomised controlled trials and other prospective clinical studies for novel medical interventions in people with diabetes have traditionally reported HbA1c as the measure of average blood glucose levels for the 3 months preceding the HbA1c test date. The use of this measure highlights the long-established correlation between HbA1c and relative risk of diabetes complications; the change in the measure, before and after the therapeutic intervention, is used by regulators for the approval of medications for diabetes. However, with the increasing use of continuous glucose monitoring (CGM) in clinical practice, prospective clinical studies are also increasingly using CGM devices to collect data and evaluate glucose profiles among study participants, complementing HbA1c findings, and further assess the effects of therapeutic interventions on HbA1c. Data is collected by CGM devices at 1-5 min intervals, which obtains data on glycaemic excursions and periods of asymptomatic hypoglycaemia or hyperglycaemia (ie, details of glycaemic control that are not provided by HbA1c concentrations alone that are measured continuously and can be analysed in daily, weekly, or monthly timeframes). These CGM-derived metrics are the subject of standardised, internationally agreed reporting formats and should, therefore, be considered for use in all clinical studies in diabetes. The purpose of this consensus statement is to recommend the ways CGM data might be used in prospective clinical studies, either as a specified study endpoint or as supportive complementary glucose metrics, to provide clinical information that can be considered by investigators, regulators, companies, clinicians, and individuals with diabetes who are stakeholders in trial outcomes. In this consensus statement, we provide recommendations on how to optimise CGM-derived glucose data collection in clinical studies, including the specific glucose metrics and specific glucose metrics that should be evaluated. These recommendations have been endorsed by the American Association of Clinical Endocrinologists, the American Diabetes Association, the Association of Diabetes Care and Education Specialists, DiabetesIndia, the European Association for the Study of Diabetes, the International Society for Pediatric and Adolescent Diabetes, the Japanese Diabetes Society, and the Juvenile Diabetes Research Foundation. A standardised approach to CGM data collection and reporting in clinical trials will encourage the use of these metrics and enhance the interpretability of CGM data, which could provide useful information other than HbA1c for informing therapeutic and treatment decisions, particularly related to hypoglycaemia, postprandial hyperglycaemia, and glucose variability.
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