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Published on: September 15, 2018
Risk of Premature Atherosclerotic Disease in Patients With Monogenic Versus Polygenic Familial Hypercholesterolemia
Mark Trinder1, Xuan Li2, Maria Liza DeCastro2
1Centre for Heart Lung Innovation, University of British Columbia, Vancouver, British Columbia, Canada; Experimental Medicine Program, University of British Columbia, Vancouver, British Columbia, Canada.
Insights
Monogenic familial hypercholesterolemia (FH) significantly increases cardiovascular disease (CVD) risk. Combining monogenic FH with a polygenic risk score for high low-density lipoprotein cholesterol (LDL-C) confers the highest premature CVD risk.
Area of Science:
- Genetics
- Cardiology
- Molecular Biology
Background:
- Familial hypercholesterolemia (FH) can stem from single gene mutations (monogenic) or multiple genes (polygenic).
- The comparative cardiovascular disease (CVD) risk between monogenic and polygenic FH is not well understood.
- Genetic factors account for a significant portion of clinically diagnosed FH cases.
Purpose of the Study:
- To assess the impact of monogenic versus polygenic causes of FH on premature CVD events.
- To investigate the combined effect of genetic predisposition and polygenic risk scores on CVD risk in FH patients.
Main Methods:
- Targeted gene sequencing and polygenic score calculation in 626 FH patients.
- Classification of polygenic FH based on the 80th percentile of polygenic scores.
- Analysis of premature CVD events including unstable angina, myocardial infarction, coronary revascularization, and stroke.
Main Results:
- Monogenic FH significantly elevated CVD risk (aHR 1.96).
- Polygenic FH did not show a significantly increased CVD risk compared to controls.
- An elevated polygenic risk score amplified CVD risk in monogenic FH patients (aHR 3.06).
Conclusions:
- Patients with monogenic FH and high polygenic LDL-C risk scores face the highest risk of premature CVD.
- Genetic testing for FH offers prognostic insights beyond LDL-C levels.
- Understanding genetic contributions to FH is crucial for risk stratification.
Background:
A pathogenic variant in LDLR, APOB, or PCSK9 can be identified in 30% to 80% of patients with clinically-diagnosed familial hypercholesterolemia (FH). Alternatively, ∼20% of clinical FH is thought to have a polygenic cause. The cardiovascular disease (CVD) risk associated with polygenic versus monogenic FH is unclear.
Objectives:
This study evaluated the effect of monogenic and polygenic causes of FH on premature (age <55 years) CVD events in patients with clinically diagnosed FH.
Methods:
Targeted sequencing of genes known to cause FH as well as common genetic variants was performed to calculate polygenic scores in patients with "possible," "probable," or "definite" FH, according to Dutch Lipid Clinic Network Criteria (n = 626). Patients with a polygenic score ≥80th percentile were considered to have polygenic FH. We examined the risk of unstable angina, myocardial infarction, coronary revascularization, or stoke.
Results:
A monogenic cause of FH was associated with significantly greater risk of CVD (adjusted hazard ratio: 1.96; 95% confidence interval: 1.24 to 3.12; p = 0.004), whereas the risk of CVD in patients with polygenic FH was not significantly different compared with patients in whom no genetic cause of FH was identified. However, the presence of an elevated low-density lipoprotein cholesterol (LDL-C) polygenic risk score further increased CVD risk in patients with monogenic FH (adjusted hazard ratio: 3.06; 95% confidence interval: 1.56 to 5.99; p = 0.001).
Conclusions:
Patients with monogenic FH and superimposed elevated LDL-C polygenic risk scores have the greatest risk of premature CVD. Genetic testing for FH provides important prognostic information that is independent of LDL-C levels.
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