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The interleukin-1 cluster, dyslipidaemia and risk of myocardial infarction
1BHF Professor of Cardiology, Institute of Human Genetics, Newcastle University, Newcastle, UK. b.d.keavney@newcastle.ac.uk
Insights
Genetic variations in the Interleukin-1 (IL-1) gene cluster are associated with coronary heart disease (CHD) risk. This finding may inform the development of novel anti-inflammatory therapies for CHD prevention.
Area of Science:
- Genetics
- Cardiology
- Immunology
Background:
- Coronary heart disease (CHD) is a major global health concern.
- Inflammation is a key factor in CHD development.
- Genetic factors influencing inflammation's role in CHD risk require further investigation.
Purpose of the Study:
- To investigate the association between genetic polymorphisms in inflammatory genes and CHD risk.
- To explore the potential causal link between inflammatory gene expression and CHD.
- To identify potential therapeutic targets for CHD prevention.
Main Methods:
- A family-based case-control association study design was employed.
- 51 mainly coding single nucleotide polymorphisms (SNPs) were genotyped in CHD cases and healthy sibling controls.
- Haplotype analysis was performed on the Interleukin-1 (IL-1) gene cluster.
Main Results:
- A common haplotype at the IL-1 gene cluster was associated with CHD risk.
- This association was more pronounced in younger CHD cases without hypercholesterolaemia.
- Suggestive evidence indicated an association between the IL-1 haplotype and hypercholesterolaemia.
Conclusions:
- Genetic variation in the IL-1 gene cluster may influence CHD risk.
- These findings support the role of inflammation in CHD pathogenesis.
- Further replication in diverse cohorts is needed to confirm the clinical significance of these genetic associations for CHD.
Abstract:
Coronary heart disease (CHD) is among the most serious worldwide health problems. Recent genetic studies have robustly identified a number of polymorphic loci throughout the genome that are associated with disease risk but it is certain that more remain to be discovered. It is well established that inflammation plays a key role in the pathophysiology of CHD. Determining whether or not polymorphisms in genes involved in the inflammatory cascade affect the risk of CHD is of considerable interest with respect to understanding the direction of the causal arrow between increased expression of inflammatory genes and CHD. Establishing an association between the variation in inflammatory genes and CHD would provide conceptual support for the use of appropriately specific anti-inflammatory agents in CHD prevention and, potentially, suggest new therapeutic targets. This month in BMC Medicine, Benjamin Brown and colleagues adopt a family-based case-control association study design to address this question. In a large number of CHD cases and healthy sibling controls genotyped for 51 mainly coding single nucleotide polymorphisms (SNPs), they find evidence for the association of a common haplotype at the Interleukin-1 (IL-1) cluster with CHD which appears to be stronger in younger cases without hypercholesterolaemia. They also find suggestive evidence for an association between this same haplotype and hypercholesterolaemia. If replicated in other cohorts, these results could be of substantial importance in advancing the understanding of the way in which inflammatory genes affect coronary heart disease risk.See the associated research paper by Brown et al: http://www.biomedcentral.com/1741-7015/8/5.
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