Literature DB >> 14563342

A polymorphism of the cholesteryl ester transfer protein gene predicts cardiovascular events in non-smokers in the West of Scotland Coronary Prevention Study.

Dilys J Freeman1, Nilesh J Samani, Valerie Wilson, Alex D McMahon, Peter S Braund, Suzanne Cheng, Muriel J Caslake, Chris J Packard, Dairena Gaffney.   

Abstract

AIM: The association of cholesteryl ester transfer protein (CETP) gene polymorphisms with risk of a cardiovascular event and whether any association was explained by an influence on high-density lipoprotein (HDL) levels or low-density lipoprotein (LDL) size was tested in the West of Scotland Coronary Prevention Study (WOSCOPS). Gene-smoking and gene-treatment interactions were investigated. METHODS AND
RESULTS: Cases (n=498) and controls (n=1108) were typed for TaqIB, C(-631)A, C(-629)A, I405V and D442G CETP polymorphisms. Homozygotes for the TaqIB2 allele (B2B2) had a 30% reduced risk of a cardiovascular event (odds ratio [OR] 0.70, CI(95)0.51-0.96, P=0.03) compared to B1B1 homozygotes. Inclusion of HDL or LDL diameter in multivariate analysis only marginally attenuated the relationships. Non-smokers, but not smokers, showed a dose-dependent association of risk with TaqIB genotype. Treatment benefit was not significantly different in B1B1 (OR 0.71, pravastatin vs placebo), B1B2 (OR 0.68) and B2B2 (OR 0.61) individuals. The other CETP polymorphisms studied had no significant association with cardiovascular risk. Haplotype analysis did not add to the information given by the individual polymorphisms.
CONCLUSION: The association between CETP TaqIB genotype and cardiovascular risk is primarily in non-smokers, is not fully explained by effects on HDL levels or LDL size, and the benefit of pravastatin treatment was not influenced by this polymorphism.

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Year:  2003        PMID: 14563342     DOI: 10.1016/j.ehj.2003.07.001

Source DB:  PubMed          Journal:  Eur Heart J        ISSN: 0195-668X            Impact factor:   29.983


  24 in total

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Review 3.  Coronary heart disease and polymorphisms in genes affecting lipid metabolism and inflammation.

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8.  Validation study of genetic associations with coronary artery disease on chromosome 3q13-21 and potential effect modification by smoking.

Authors:  Benjamin D Horne; Elizabeth R Hauser; Liyong Wang; Joseph B Muhlestein; Jeffrey L Anderson; John F Carlquist; Svati H Shah; William E Kraus
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9.  Association of CETP and LIPC Gene Polymorphisms with HDL and LDL Sub-fraction Levels in a Group of Indian Subjects: A Cross-Sectional Study.

Authors:  Seema P Todur; Tester F Ashavaid
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10.  Interaction effects of high-density lipoprotein metabolism gene variation and alcohol consumption on coronary heart disease risk: the atherosclerosis risk in communities study.

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