The Hypothesis of Trace Elements Involvement in the Coronary Arteries Atherosclerotic Plaques' Location
Tomasz Urbanowicz1, Anetta Hanć2, Julia Frąckowiak2
1Cardiac Surgery and Transplantology Department, Poznan University of Medical Sciences, 61-701 Poznan, Poland.
Insights
Scalp hair trace elements like magnesium and zinc may predict coronary artery disease location in men. Diabetes mellitus is linked to left descending artery disease, while low magnesium is associated with circumflex artery plaque.
Area of Science:
- Cardiology
- Trace Element Analysis
- Atherosclerosis Pathophysiology
Background:
- Coronary artery disease (CAD) remains a leading cause of mortality despite improvements in classical risk factor control.
- Atherosclerosis pathophysiology and specific plaque locations require further investigation.
- Novel biomarkers, such as trace elements in scalp hair, may offer insights into CAD development.
Purpose of the Study:
- To investigate the association between scalp hair trace element concentrations and the location of coronary atherosclerotic plaque in male patients.
- To identify potential predictors for plaque localization in the left descending artery (LAD), circumflex artery (Cx), and right coronary artery (RCA).
Main Methods:
- Analysis of 133 male patients with anginal symptoms undergoing cine-angiography.
- Comparison of angiographic results with demographic, clinical, laboratory data, and scalp-hair trace element analysis.
- Multivariable analysis to determine predictors for CAD location in specific coronary arteries.
Main Results:
- Significant differences in scalp-hair magnesium, calcium, chromium, and copper concentrations were observed between CAD and normal groups.
- Diabetes mellitus was a significant factor for LAD plaque location (OR: 2.94).
- Low scalp-hair magnesium predicted Cx artery plaque (OR: 0.98), while scalp-hair zinc and serum HDL predicted RCA plaque (OR: 0.99 and 0.61, respectively).
Conclusions:
- Distinct pathomechanisms may influence coronary artery involvement in atherosclerosis among men.
- Diabetes mellitus is a primary factor for LAD disease.
- Scalp-hair magnesium, zinc, and serum HDL levels show potential as predictive factors for specific coronary artery plaque locations.
Abstract:
Background: Coronary artery disease (CAD) is a chronic inflammatory disease with multiple well-known risk factors. Although epidemiological studies report improvements in classical CAD risk-factor control, except for diabetes and obesity, cardiovascular diseases remain the leading causes of morbidity and mortality in the current population. The question regarding the atherosclerotic plaque location in particular arteries remains unanswered. Research on novel possible aspects that could help to properly understand atherosclerosis pathophysiology is essential. This study was based on a body trace-elements analysis, measured in scalp hair samples, as possible co-factors of various enzymes that may be crucial for CAD development. Methods: A total of 133 consecutive male patients with a median age of 71 (65-75) years, who presented with anginal symptoms of CCS class 2.0 (0.3) without previous heart-related interventions, were included in the analysis. The results of the cine-angiography were compared with the demographical, clinical, and laboratory results, followed by scalp-hair trace analysis. The possible predictors for coronary disease locations in the left descending artery (LAD), the circumflex artery (Cx), and the right coronary artery (RCA) were the subjects of this study. Results: Statistically significant differences in the scalp-hair trace elements concentration between the CAD and normal angiogram groups were noticed for magnesium (p = 0.003), calcium (p < 0.001), chromium (p = 0.011), and copper (p = 0.043). The multivariable analysis for epicardial atherosclerotic disease revealed the co-existence of diabetes mellitus (OR: 2.94, 95% CI: 1.27-6.79, p = 0.012) as a possible causative factor for the LAD location. The multivariable analysis for the atherosclerosis location in the Cx artery presented scalp-hair magnesium as a possible predictive factor (OR: 0.98, 95% CI: 0.96-1.00, p = 0.024). The multivariable model for the RCA location of atherosclerotic plaque indicated scalp-hair Zn concentration (0.99, 95% CI: 0.98-1.00, p = 0.002) and serum HDL (OR: 0.61, 95% CI: 0.04-0.09, p = 0.016). Conclusions: Possible hypothetical distinctive pathomechanisms, in particular, coronary artery involvement, in atherosclerosis processes are presented in the male group. Diabetes mellitus was found to be the primary factor for left descending artery disease. The low scalp-hair magnesium concentration was found to be a possible risk factor involved in the circumflex artery atherosclerotic plaque location. The inverse relation between serum high-density lipoprotein, the scalp hair zinc concentration, and right coronary disease was noticed.
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