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Published on: November 10, 2017
Pharmacogenetic predictors of statin-mediated low-density lipoprotein cholesterol reduction and dose response
Deepak Voora1, Svati H Shah, Carol R Reed
1Division of Cardiovascular Medicine, the Institute for Genome & Science Policy, and the Center for Human Genetics, Duke University, Durham, NC 27708, USA.
Insights
Genetic variations in ABCA1 and APOE influence how well statins lower LDL cholesterol. Certain gene variants indicate reduced effectiveness, identifying patients who may not achieve maximal LDL cholesterol reduction with statin therapy.
Area of Science:
- Pharmacogenomics
- Cardiovascular Medicine
- Lipid Metabolism
Background:
- Interindividual variability exists in statin efficacy for lowering low-density lipoprotein cholesterol (LDLc).
- Limited research has explored the genetic factors influencing dose-dependent LDLc reduction by statins.
Purpose of the Study:
- To investigate the association between genetic variations in key metabolic genes and the dose-dependent LDLc lowering effects of statins.
- To identify specific single nucleotide polymorphisms (SNPs) that predict differential responses to statin therapy.
Main Methods:
- A randomized study involving 509 hyperlipidemia patients assigned to low and high doses of atorvastatin, simvastatin, or pravastatin.
- Sequencing of 31 genes involved in cholesterol and lipoprotein metabolism.
- Association analysis of 489 SNPs with percentage LDLc lowering at low and high doses.
Main Results:
- The ABCA1 rs12003906 polymorphism was significantly associated with attenuated LDLc reduction at low statin doses (P=0.0001).
- The APOE epsilon3 allele was also linked to reduced LDLc lowering.
- While LDLc reduction improved at high doses for carriers of these variants, it remained diminished compared to non-carriers.
Conclusions:
- An intronic SNP in the ABCA1 gene and the APOE epsilon3 allele are associated with reduced LDLc lowering by statins.
- These genetic markers can identify individuals who may exhibit resistance to maximal LDLc reduction with statin treatment.
Background:
There is interindividual variation in low-density lipoprotein cholesterol (LDLc) lowering by statins and limited study into the genetic associations of the dose dependant LDLc lowering by statins.
Methods And Results:
Five hundred nine patients with hyperlipidemia were randomly assigned atorvastatin 10 mg, simvastatin 20 mg, or pravastatin 10 mg (low-dose phase) followed by 80 mg, 80 mg, and 40 mg (high-dose phase), respectively. Thirty-one genes in statin, cholesterol, and lipoprotein metabolism were sequenced and 489 single nucleotide polymorphisms with minor allele frequencies >2% were tested for associations with percentage LDLc lowering at low doses using multivariable adjusted general linear regression. Significant associations from the analysis at low dose were then repeated at high-dose statins. At low doses, only 1 single nucleotide polymorphism met our experiment-wide significance level, ABCA1 rs12003906. Twenty-six subjects carried the minor allele of rs12003906, which was associated with an attenuated LDLc reduction (LDLc reduction in carriers versus noncarriers -24.1+/-2.6% versus -32.2+/-1.5%; P=0.0001). In addition, we replicated the association with the APOE epsilon3 allele and a reduced LDLc reduction. At high doses, carriers of the minor allele of ABCA1 rs12003906 and the APOE epsilon3 allele improved their LDLc reduction but continued to have a diminished LDLc reduction compared with noncarriers (-30.5+/-4.0% versus -42.0+/-2.4%; P=0.005) and (-38.5+/-1.9% versus -45.3+/-2.8%; P=0.009), respectively.
Conclusions:
An intronic single nucleotide polymorphism in ABCA1 and the APOE epsilon3 allele are associated with reduced LDLc lowering by statins and identify individuals who may be resistant to maximal LDLc lowering by statins.
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