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Published on: June 11, 2012
Utility of different glycemic control metrics for optimizing management of diabetes
Klaus-Dieter Kohnert1, Peter Heinke1, Lutz Vogt1
1Klaus-Dieter Kohnert, Peter Heinke, Eckhard Salzsieder, Institute of Diabetes "Gerhardt Katsch", D-17495 Karlsburg, Germany.
Insights
Glycated hemoglobin (HbA1c) has limitations in assessing diabetes control. New methods like continuous glucose monitoring (CGM) and assessing glycemic variability offer improved insights for personalized diabetes management.
Area of Science:
- Endocrinology and Metabolism
- Diabetes Care and Research
Background:
- Glycated hemoglobin (HbA1c) is the current standard for long-term glycemic control but has limitations.
- Recent studies question the link between HbA1c and cardiovascular outcomes in long-standing diabetes.
- There is a need for alternative biomarkers and advanced monitoring for better diabetes management.
Purpose of the Study:
- To discuss the advantages and limitations of various glycemic control metrics.
- To explore the evaluation of glucose data, focusing on glycemic variability.
- To highlight the application of continuous glucose monitoring (CGM) in improving diabetes management.
Main Methods:
- Review of recent clinical trials and studies on glycemic control markers.
- Discussion of traditional metrics (HbA1c, self-monitoring of blood glucose) and emerging biomarkers (glycated albumin, fructosamine, 1,5-anhydroglucitol).
- Analysis of advanced glucose monitoring methods, including continuous glucose sensing (CGM) systems.
Main Results:
- HbA1c has limitations in reflecting complex glycemic messages and predicting cardiovascular outcomes.
- Glycemic variability is identified as a predictor of hypoglycemia and may contribute to vascular complications.
- Continuous glucose monitoring (CGM) offers detailed glucose dynamics but lacks standardized reporting measures.
Conclusions:
- Alternative biomarkers and advanced monitoring are crucial for comprehensive diabetes assessment.
- Assessing glycemic variability is important for optimizing diabetes treatment and preventing complications.
- Continuous glucose monitoring (CGM) holds promise for personalized diabetes management, pending standardization.
Abstract:
The benchmark for assessing quality of long-term glycemic control and adjustment of therapy is currently glycated hemoglobin (HbA1c). Despite its importance as an indicator for the development of diabetic complications, recent studies have revealed that this metric has some limitations; it conveys a rather complex message, which has to be taken into consideration for diabetes screening and treatment. On the basis of recent clinical trials, the relationship between HbA1c and cardiovascular outcomes in long-standing diabetes has been called into question. It becomes obvious that other surrogate and biomarkers are needed to better predict cardiovascular diabetes complications and assess efficiency of therapy. Glycated albumin, fructosamin, and 1,5-anhydroglucitol have received growing interest as alternative markers of glycemic control. In addition to measures of hyperglycemia, advanced glucose monitoring methods became available. An indispensible adjunct to HbA1c in routine diabetes care is self-monitoring of blood glucose. This monitoring method is now widely used, as it provides immediate feedback to patients on short-term changes, involving fasting, preprandial, and postprandial glucose levels. Beyond the traditional metrics, glycemic variability has been identified as a predictor of hypoglycemia, and it might also be implicated in the pathogenesis of vascular diabetes complications. Assessment of glycemic variability is thus important, but exact quantification requires frequently sampled glucose measurements. In order to optimize diabetes treatment, there is a need for both key metrics of glycemic control on a day-to-day basis and for more advanced, user-friendly monitoring methods. In addition to traditional discontinuous glucose testing, continuous glucose sensing has become a useful tool to reveal insufficient glycemic management. This new technology is particularly effective in patients with complicated diabetes and provides the opportunity to characterize glucose dynamics. Several continuous glucose monitoring (CGM) systems, which have shown usefulness in clinical practice, are presently on the market. They can broadly be divided into systems providing retrospective or real-time information on glucose patterns. The widespread clinical application of CGM is still hampered by the lack of generally accepted measures for assessment of glucose profiles and standardized reporting of glucose data. In this article, we will discuss advantages and limitations of various metrics for glycemic control as well as possibilities for evaluation of glucose data with the special focus on glycemic variability and application of CGM to improve individual diabetes management.
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