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Elevated HbA1c Levels Are Associated with the Blunted Autonomic Response Assessed by Heart Rate Variability during
Miho Kamakura1, Ryoko Maruyama
1Health Sciences, Tohoku University Graduate School of Medicine.
Insights
Elevated hemoglobin A1c (HbA1c) levels impair autonomic responses during blood donation. Individuals with higher HbA1c showed a blunted cardiovascular autonomic regulation when blood volume was reduced.
Area of Science:
- Cardiology
- Endocrinology
- Autonomic Neuroscience
Background:
- High glycemic status is linked to autonomic dysfunction and cardiovascular issues.
- Understanding the impact of glycemic control on autonomic response during physiological stress is crucial.
Purpose of the Study:
- To examine how blood volume reduction affects autonomic response and cardiovascular dynamics.
- To investigate the association between hemoglobin A1c (HbA1c) levels and autonomic response during blood donation.
Main Methods:
- 26 preoperative participants undergoing autologous blood donation were studied.
- Participants were grouped by HbA1c levels (<6.5% vs. ≥6.5%).
- Blood pressure and heart rate variability (HRV) were measured to assess autonomic regulation.
Main Results:
- In participants with HbA1c <6.5%, parasympathetic activity (HF component) decreased and sympathetic activity (LF/HF ratio) increased with blood loss.
- In participants with HbA1c ≥6.5%, these HRV changes were significantly blunted or delayed.
- Time-dependent HRV changes correlated with blood volume reduction only in the lower HbA1c group.
Conclusions:
- Elevated HbA1c levels are associated with a diminished autonomic response to blood volume reduction.
- Glycemic control may influence the body's ability to adapt cardiovascularly to acute blood loss.
Abstract:
A high glycemic status increases the risk for autonomic dysfunction and cardiovascular failure. The aim of this study was to investigate time-dependent changes in the autonomic response and cardiovascular dynamics and the association between the level of hemoglobin A1c (HbA1c) and autonomic response during blood volume reduction. The study population consisted of 26 preoperative participants who were scheduled for autologous blood donation (200-400 mL of whole blood) for intraoperative or postoperative use. These participants without circulatory, respiratory, or brain disease and diabetes mellitus were grouped according to their HbA1c levels: < 6.5% (n = 18) and ≥ 6.5% (n = 8). We measured blood pressure (BP) and analyzed heart rate variability (HRV) to quantify cardiac autonomic regulation throughout blood donation. During blood volume reduction, which was about 10% of the circulating blood volume, the BP and heart rate varied within normal ranges in both groups. The high-frequency (HF) component, an index of parasympathetic nerve activity, and the ratio of low-frequency (LF) to HF components (LF/HF), an index of sympathetic nerve activity, significantly decreased and increased with the progression of blood volume reduction, respectively, in the HbA1c < 6.5% group. In contrast, in the HbA1c ≥ 6.5% group, the HF component did not significantly change, and the increase in the LF/HF ratio was delayed. Time-dependent changes in HRV were related to blood volume reduction only in the HbA1c < 6.5% group. Thus, elevated HbA1c levels are associated with the decrease in the autonomic response induced by blood volume reduction.
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