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Published on: August 28, 2018
The relation between coronary lesion distribution and risk factors in young adults
Cem Köz1, Hüseyin Celebi, Mehmet Yokuşoğlu
1Department of Cardiology, Gülhane Military Medical Academy, Ankara, Turkey.
Insights
Young patients with severe coronary artery disease (CAD) exhibit a distinct risk profile, including higher rates of smoking and elevated levels of lipoprotein (a) and homocysteine. Homocysteine is a key predictor of both severe CAD and specific coronary lesion distribution in this population.
Area of Science:
- Cardiology
- Vascular Biology
- Preventive Medicine
Background:
- Coronary artery disease (CAD) typically affects older individuals, but its occurrence in young patients (<45 years) presents unique challenges.
- Understanding the specific risk factors and lesion patterns in young CAD patients is crucial for early detection and intervention.
Purpose of the Study:
- To evaluate classical and novel risk factors in young patients with severe CAD.
- To determine the relationship between identified risk factors and the distribution of coronary lesions, particularly in the left main artery (LMA) and proximal or mid left anterior descending (LAD) artery.
Main Methods:
- A cross-sectional, case-controlled study involving 53 young patients with severe CAD (Group A) and 60 controls with normal or non-critical stenosis (Group B).
- Comparison of conventional (smoking, family history, diabetes, hypertension) and novel risk factors (lipoprotein (a), homocysteine) between groups.
- Logistic regression and ROC curve analyses were employed to identify predictors of severe CAD and lesion distribution, and to determine optimal cut-off values.
Main Results:
- Young patients with severe CAD showed a higher prevalence of smoking and significantly elevated levels of lipoprotein (a) and homocysteine compared to controls.
- Smoking and homocysteine were identified as independent predictors of severe CAD in young individuals.
- Homocysteine was the sole independent predictor of lesion distribution in the LMA or proximal/mid LAD, with a cut-off value of 12 micromol/L demonstrating high sensitivity and specificity.
Conclusions:
- Young patients with severe CAD possess a distinct risk profile characterized by increased smoking frequency and higher lipoprotein (a) and homocysteine levels.
- Homocysteine is a significant predictor of both severe CAD and specific coronary lesion localization (LMA/proximal LAD) in young individuals.
- These findings highlight the importance of assessing homocysteine levels in young patients presenting with or at risk for CAD.
Objective:
In this cross-sectional, case-controlled study, we aimed to evaluate classical and novel risk factors in young patients with coronary artery disease (CAD), and the relation between coronary risk factors and coronary lesion distribution.
Methods:
Fifty-three patients under age of 45 years with severe coronary artery stenosis on angiography (group A) and age matched sixty patients having normal or non-critical stenosis on coronary angiography (group B) comprised the study groups. Conventional (smoking, family history, diabetes, hypertension) and novel risk factors (lipoprotein (a), homocysteine) were compared between the groups. Moreover, the relation between risk factors, and coronary lesions distribution, including left main artery (LMA) or proximal or mid left anterior descending (LAD) artery and remaining coronary lesions was investigated. Logistic regression analysis was used to define confounding factors predicting severe CAD and coronary lesion distribution and ROC curve analysis was performed to determine the cut-off value of independent factors, which were assessed by logistic regression analysis.
Results:
Smoking was more prevalent in group A compared to group B. Lipoprotein (a) and homocysteine levels were also higher in group A than group B. For group A and B median (max-min) values of lipoprotein (a) were 34 (2-174) mg/dl and 38 (2-203) mg/dl (p=0.038), respectively and homocysteine levels were 12.3 (5-56.6) micromol/L and 9 (1.4-19) micromol/L (p=0.012), respectively. Smoking and homocysteine were independent predictors of severe CAD in young patients according to logistic regression analysis with an Odds ratio of 3.7 (95% CI=1.572-8.763; p=0.002) and 1.2 (95% CI=1.045-1.341; p=0.008), respectively. For predicting significant CAD the cut-off value of homocysteine was 11.6 micromol/L with a sensitivity and specificity of 53% and 77%, respectively (AUC=0.637; 95% CI=0.542-0.725; p=0.008). Within group analysis in group A patients revealed that only homocysteine was an independent predictor of LMA or proximal or mid-LAD lesion presence with an odds ratio of 1.2 (95% CI=1.011-1.465; p=0.016). ROC curve analysis revealed a cut-off value of 12 micromol/L in predicting LMA or proximal or mid-LAD lesions with a sensitivity and specificity of 65% and 91%, respectively (AUC=0.735; 95% CI=0.594-0.850; p=0.002).
Conclusion:
In our study, we found that young patients with severe CAD had different risk profile with higher frequency of smoking and increased levels of lipoprotein (a) and homocysteine. While smoking status and homocysteine may be used for prediction of severe CAD in young individuals, only homocysteine predicted coronary lesion distribution in LMA and proximal or mid-LAD.
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