Glycemic Variability and Diabetes Complications: Does It Matter? Simply Put, There Are Better Glycemic Markers!
1International Diabetes Center at Park Nicollet, Minneapolis, MN richard.bergenstal@parknicollet.com.
Insights
Glycemic control using HbA1c reduces diabetes complications. However, glycemic variability (GV) may offer additional insights, sparking debate on its role as a primary treatment target beyond HbA1c.
Area of Science:
- Endocrinology and Metabolism
- Diabetes Research
- Clinical Therapeutics
Background:
- Glycated hemoglobin (HbA1c) is the standard for assessing glycemic control and reducing diabetes complications.
- Some studies show HbA1c targets don't always improve outcomes in long-standing type 2 diabetes.
- The effectiveness of glycemic control strategies beyond HbA1c is debated.
Purpose of the Study:
- To explore the controversy surrounding glycemic metrics beyond HbA1c for assessing diabetes complication risk.
- To present a point-counterpoint debate on the clinical utility of glycemic variability (GV).
Main Methods:
- Review of existing clinical trial observations and scientific literature.
- Presentation of expert opinions on the role of HbA1c versus GV in diabetes management.
- Discussion of the definition and assessment of glycemic variability.
Main Results:
- Universal agreement exists that HbA1c is the gold standard for glycemic control.
- There is no consensus on whether other metrics, like GV, provide additional clinical data or should be additional targets.
- Expert opinions differ on whether GV control should be a primary treatment target.
Conclusions:
- The role of glycemic variability (GV) as a clinical target alongside HbA1c remains controversial.
- Further research is needed to determine if GV metrics offer superior risk assessment for diabetes complications compared to HbA1c alone.
- The debate highlights the need for comprehensive strategies in diabetes management.
Abstract:
There is no argument that improving mean levels of glycemic control as judged by assays for glycated hemoglobin (HbA(1c)) reduces the risks of microvascular complications and cardiovascular disease events in patients with type 1 and type 2 diabetes. However, observations in some trials have suggested that targeting HbA(1c) to suggested targets may not always result in improved outcomes for people with long-standing type 2 diabetes. The reasons why the glycemic control strategies that primarily use HbA(1c) in these studies did not have predicted outcomes are not clear. Thus, controversy remains as to whether there are glycemic metrics beyond HbA(1c) that can be defined as effective measures that can be used in addition to HbA(1c) to help in assessing the risk of an individual developing diabetes complications. In this regard, the concept of "glycemic variability" (GV) is one metric that has attracted a lot of attention. GV can be simply defined as the degree to which a patient's blood glucose level fluctuates between high (peaks) and low (nadir) levels. The best and most precise way to assess GV is also one that is still debated. Thus, while there is universal agreement that HbA(1c) is the current gold standard for the primary clinical target, there is no consensus as to whether other proposed glycemic metrics hold promise to provide additional clinical data or whether there should be additional targets beyond HbA(1c). Therefore, given the current controversy, we provide a Point-Counterpoint debate on this issue. In the preceding point narrative, Dr. Hirsch provides his argument that fluctuations in blood glucose as assessed by GV metrics are deleterious and control of GV should be a primary treatment target. In the counterpoint narrative below, Dr. Bergenstal argues that there are better markers to assess the risk of diabetes than GV and provides his consideration of other concepts.
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