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Genetic risk factors in myocardial infarction at young age
E Incalcaterra1, E Hoffmann, M R Averna
1Cardiology Section, University of Palermo, Palermo, Italy.
Insights
Genetic susceptibility plays a key role in early-onset coronary artery disease (CAD). Specific gene polymorphisms, particularly in prothrombin and ApoE, are linked to increased risk of acute myocardial infarction (AMI) in young individuals.
Area of Science:
- Cardiovascular Genetics
- Molecular Medicine
- Thrombosis and Hemostasis
Background:
- Genetic susceptibility is increasingly recognized as a significant factor in the development of coronary artery disease (CAD), especially in younger patients.
- Polymorphisms in genes affecting coagulation, fibrinolysis, platelet function, lipid metabolism, and inflammation are under investigation for their role in early-onset acute myocardial infarction (AMI).
- The interplay between atherosclerosis and thrombosis varies with age, necessitating a focused examination of genetic predispositions in young individuals.
Purpose of the Study:
- To review and synthesize current research on the association between various genetic polymorphisms and the risk of acute myocardial infarction (AMI) in young populations.
- To highlight specific gene variants implicated in prothrombotic states, lipid metabolism, vascular function, and inflammatory pathways that may contribute to early-onset CAD.
- To identify areas of consensus and discordance in the literature regarding the genetic underpinnings of young AMI.
Main Methods:
- Systematic review and meta-analysis of published studies investigating genetic polymorphisms and their association with young AMI.
- Analysis of polymorphisms in genes including, but not limited to, prothrombin, Factor V, Factor VII, plasminogen activator inhibitor (PAI), GP IIIa, GP IIb, GP Ib, thrombopoietin, renin-angiotensin-aldosterone system components, eNOS, MTHFR, Apo B, and ApoE.
- Examination of genetic variations related to inflammatory markers such as CD14, E Selectin, and PECAM1.
Main Results:
- The G20210A polymorphism in the prothrombin gene is consistently associated with an increased risk of AMI in young individuals, particularly when other risk factors are present.
- Factor V Leiden (activated protein C resistance) shows a potential association with AMI risk in specific subgroups (e.g., smokers, women), though results are debated.
- Polymorphisms in the ApoE gene (e4 variant) and PAI gene (4G allele) are linked to increased AMI risk and reduced fibrinolytic activity, respectively, in younger populations. Associations for other genes (Factor VII, GP IIIa, eNOS, MTHFR, Apo B) are often contradictory or inconclusive.
Conclusions:
- Genetic factors, particularly prothrombotic gene variants like prothrombin G20210A and lipid-related variants like ApoE e4, significantly contribute to the risk of AMI in young individuals.
- The role of certain polymorphisms (e.g., Factor V Leiden) may be modulated by environmental factors or other genetic interactions.
- Further research is needed to clarify the complex genetic landscape of early-onset CAD and to explore the interplay between genetic predisposition and environmental triggers.
Abstract:
The role of genetic susceptibility to coronary artery disease (CAD) seems to be quite important in young patients. In the last years the attention has been focused on polymorphisms influencing some biological functions (coagulation and fibrinolysis, platelets, vascular function, lipid metabolism, inflammation). The study of prothrombotic polymorphisms has kindled a deep interest. The role of atherosclerosis and thrombosis is different in the different ages. In all the studies we examined, the polymorphism G20210A in the prothrombin gene was associated with an increased risk of acute myocardial infarction (AMI) in young people, especially when other risk factors were present. Contradictory results have been found in the studies on Factor V Leiden: according to many authors the activated protein C resistance (APCR) is associated with an increased risk of AMI only in smokers, above all if women. On the other hand, some polymorphisms of the Factor VII gene seem to be protective. Young AMI could be also caused by a reduction of the fibrinolytic activity, as it was found when the allele 4G in the promoter of plasminogen activator inhibitor (PAI) gene is present. The attention has also been focused on the effects of variations in genes that influence platelet functions. According to a metanalysis of studies published up to 1999, there is no association between the polymorphism PlA1/A2 of the GP IIIa gene and young AMI, whereas there is doubt about the role of the polymorphism in the GP IIb e GP Ib genes. Moreover, it seems to be present an association with the polymorphisms in the thrombopoietin gene (C4830A and A5713G). Also the role of some genes coding for proteins influencing the vascular functions has been valued. Few studies were performed on genetics of the renin-angiotensin-aldosterone system and the results are insufficient and contradictory, such as those about the association between the polymorphism G894T in the eNOS gene or the polymorphism C677T in the MTHFR gene and young AMI. Genes coding for proteins involved in the lipid metabolism have been closely examined. Many polymorphisms were discovered in the Apo B gene: the variant C-516T was found to be associated with increased LDL levels, whereas the results about the association between this and other polymorphisms in the same gene (I/D of LAL sequence, PvuII, MspI, Asp4311Ser) and young AMI are discordant. On the other hand, the variant e4 of the ApoE gene was associated with an increased risk of AMI at young age in many works. In the last years, a particular interest has kindled the study of the relationship between inflammation, atherosclerosis and CAD. Even if the studies performed are few, it was found an association between young AMI and polymorphism C-260T in the CD14 gene, between coronarics atherosclerosis and polymorphism A516C in the E Selectin gene or polymorphisms Leu125Val and Ser563Asn in the PECAM1 gene.
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