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Published on: April 1, 2019
Impact of Thrombomodulin Polymorphism -33G>A on Acute Myocardial Infarction Risk and Circulating Inflammatory Markers
Sounira Mehri1, Raja Chaaba1, Josef Finsterer2
1Biochemistry Laboratory, LR12ES05 "Nutrition-Functional Foods, and Vascular Health", Faculty of Medicine, University of Monastir, Monastir, Tunisia.
Insights
The THBD -33G>A polymorphism, specifically the AA genotype, significantly increases the risk of acute myocardial infarction (AMI). This genetic marker, along with inflammatory markers, aids in stratifying AMI risk.
Area of Science:
- Cardiovascular Genetics
- Molecular Cardiology
- Biomarkers of Cardiovascular Disease
Background:
- Thrombomodulin (THBD) gene polymorphisms and inflammatory markers like C-reactive protein (CRP), fibrinogen, and albumin are implicated in acute myocardial infarction (AMI) risk.
- The THBD -33G>A polymorphism (rs1042579) warrants investigation as a potential risk marker for AMI.
Purpose of the Study:
- To evaluate the THBD -33G>A polymorphism as a marker for acute myocardial infarction (AMI) risk.
- To correlate the THBD -33G>A polymorphism with serum levels of key inflammatory markers.
Main Methods:
- A case-control study involving 277 AMI patients and 329 healthy controls.
- Binary logistic regression analysis was employed to assess the association between studied parameters and AMI risk.
- A backward stepwise logistic regression model identified predictive risk factors for AMI.
Main Results:
- The AA genotype of the THBD -33G>A polymorphism was significantly associated with increased AMI risk (OR = 2.011, P < .001).
- The A allele also showed a significant association with higher AMI risk (OR = 1.725, P < .001).
- Smoking, hypertension, albumin, fibrinogen, CRP, ACE activity, cardiac troponin-I, and the THBD AA genotype were identified as significant predictors of AMI.
Conclusions:
- The THBD -33G>A polymorphism, particularly the AA genotype, is a significant risk factor for acute myocardial infarction (AMI).
- This genetic polymorphism should be incorporated into the risk stratification protocols for AMI.
Background:
There is increasing evidence that thrombomodulin (THBD) polymorphisms, along with inflammatory markers [i.e., C-reactive protein (CRP), fibrinogen, albumin], may increase the risk of acute myocardial infarction (AMI). The aim of the study was to investigate the role of the THBD -33G>A polymorphism (rs1042579) as a marker of AMI risk and to correlate it with serum levels of inflammatory markers.
Methods:
Case-control study of 277 AMI patients and 329 healthy controls. A binary logistic regression analysis was performed to evaluate the association between the parameters studied and AMI risk.
Results:
The frequencies of genotypes AA, GA, and GG of the THBD -33G>A polymorphism were 31.4%, 45.5%, and 23.1% in patients and 21.6%, 44.1%, and 34.3% in controls. A significant association was found between the AA genotype of the THBD -33G>A polymorphism (AA: OR = 2.011, 95% CI 1.561-3.074, P < .001) or A allele (A: OR = 1.725, 95% CI 1.493-2.510, P < .001) and AMI risk. A backward stepwise logistic regression method combining AMI status as the dependent variable and conventional risk factors (age, smoking, arterial hypertension (HTA), diabetes, dyslipidemia, CRP, albumin, fibrinogen, serum angiotensin converting enzyme (ACE) activity, serum malondialdehyde, conjugated dienes, glutathione peroxidase, cardiac troponin-I (cTnI) and THBD AA genotype) as independent variables showed that the most predictive risk factors for AMI were smoking, HTA, albumin, fibrinogen, CRP, ACE activity, cTnI, and the THBD AA-genotype with odds ratios of 2.942, 2.203, 2.352, 1.323, 1.652, 1.014, 2.105, and 3.781 respectively. The AA genotype was associated with increased diastolic blood pressure, CRP, ACE activity, and albumin levels.
Conclusions:
The study shows that the THBD -33G>A polymorphism should be included in the stratification of AMI risk.
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