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Does HbA1cc Play a Role in the Development of Cardiovascular Diseases?
1Department of Physiology, College of Medicine, University of Saskatchewan, Saskatoon, Canada.
Insights
Hemoglobin A1c (HbA1c) is a key marker for diabetes management. Elevated HbA1c levels are linked to cardiovascular diseases (CVD) by increasing risk factors like dyslipidemia and hypertension.
Area of Science:
- Endocrinology
- Cardiology
- Biochemistry
Background:
- Cardiovascular diseases (CVD) are often linked to increased cardiovascular risk factors.
- Hemoglobin A1c (HbA1c), a measure of glycated hemoglobin, is crucial for diabetes diagnosis and management.
- HbA1c has known adverse effects on the cardiovascular system.
Purpose of the Study:
- To review the synthesis and cardiovascular effects of HbA1c.
- To examine factors influencing HbA1c serum levels.
- To evaluate the association between HbA1c and cardiovascular disease (CVD).
Main Methods:
- Literature review on HbA1c synthesis, influencing factors, and CVD associations.
- Analysis of correlations between HbA1c, serum glucose, and advanced glycation end products (AGE).
- Examination of HbA1c's role in modulating CVD risk factors.
Main Results:
- HbA1c levels correlate positively with serum glucose and AGE, but AGE does not correlate with serum glucose.
- HbA1c cannot replace HbA1c for diabetes diagnosis due to differing half-lives.
- HbA1c is associated with atherosclerosis, ischemic heart disease, ischemic stroke, and hypertension.
Conclusions:
- HbA1c is a valuable marker for diabetes diagnosis and management.
- Advanced glycation end products (AGE) are not suitable replacements for HbA1c in diabetes care.
- HbA1c is associated with CVD, potentially mediated by its effects on risk factors like dyslipidemia, hyperhomocysteinemia, and hypertension.
Abstract:
Cardiovascular diseases (CVD) may be mediated through increases in the cardiovascular risk factors. Hemoglobin A1c (HbA1c) also called glycated hemoglobin is presently used for the diagnosis and management of diabetes. It has adverse effects on cardiovascular system. This review deals with its synthesis and effects on the cardiovascular system. The serum levels of HbA1c have been reported to be affected by various factors including, the lifespan of erythrocytes, factors affecting erythropoiesis, agents interfering glycation of Hb, destruction of erythrocytes, drugs that shift the formation of Hb, statins, and drugs interfering the HbA1c assay. Levels of HbA1c are positively correlated with serum glucose and advanced glycation end products ( AGE), but no correlation between AGE and serum glucose. AGE cannot replace HbA1c for the diagnosis and management of diabetes because there is no correlation of AGE with serum glucose, and because the half-life of protein with which glucose combines is only 14-20 days as compared to erythrocytes which have a half-life of 90-120 days. HbA1c is positively associated with CVD such as the carotid and coronary artery atherosclerosis, ischemic heart disease, ischemic stroke and hypertension.HbA1c induces dyslipidemia, hyperhomocysteinemia, and hypertension, and increases C-reactive protein, oxidative stress and blood viscosity that would contribute to the development of cardiovascular diseases. In conclusion, HbA1c serves as a useful marker for the diagnosis and management of diabetes. AGE cannot replace HbA1c in the diagnosis and management of diabetes. There is an association of HbA1c with CVD which be mediated through modulation of CVD risk factors.
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