A bivariate genome-wide approach to metabolic syndrome: STAMPEED consortium. |
A genome wide association study identifies common variants associated with lipid levels in the Chinese population. |
A genome-wide association study of the metabolic syndrome in Indian Asian men. |
Amerindian-specific regions under positive selection harbour new lipid variants in Latinos. |
An atlas of genetic influences on human blood metabolites. |
Biological, clinical and population relevance of 95 loci for blood lipids. |
Common genetic variation near MC4R is associated with waist circumference and insulin resistance. |
Common variants at 30 loci contribute to polygenic dyslipidemia. |
Common variants near FRK/COL10A1 and VEGFA are associated with advanced age-related macular degeneration. |
Discovery and refinement of loci associated with lipid levels. |
Eight genetic loci associated with variation in lipoprotein-associated phospholipase A2 mass and activity and coronary heart disease: meta-analysis of genome-wide association studies from five community-based studies. |
Forty-three loci associated with plasma lipoprotein size, concentration, and cholesterol content in genome-wide analysis. |
Genetic association with lipids in Filipinos: waist circumference modifies an APOA5 effect on triglyceride levels. |
Genetic variants in LPL, OASL and TOMM40/APOE-C1-C2-C4 genes are associated with multiple cardiovascular-related traits. |
Genetic variants influencing circulating lipid levels and risk of coronary artery disease. |
Genome-wide association analysis identifies loci for type 2 diabetes and triglyceride levels. |
Genome-wide association analysis of high-density lipoprotein cholesterol in the population-based KORA study sheds new light on intergenic regions. |
Genome-wide association analysis of metabolic traits in a birth cohort from a founder population. |
Genome-wide association study evaluating lipoprotein-associated phospholipase A2 mass and activity at baseline and after rosuvastatin therapy. |
Genome-wide association study identifies multiple loci influencing human serum metabolite levels. |
Genome-wide association study of biochemical traits in Korcula Island, Croatia. |
Genome-wide association study of coronary heart disease and its risk factors in 8,090 African Americans: the NHLBI CARe Project. |
Genome-wide association study of hematological and biochemical traits in a Japanese population. |
Genome-wide characterization of shared and distinct genetic components that influence blood lipid levels in ethnically diverse human populations. |
Genome-wide screen for metabolic syndrome susceptibility Loci reveals strong lipid gene contribution but no evidence for common genetic basis for clustering of metabolic syndrome traits. |
Genomic study in Mexicans identifies a new locus for triglycerides and refines European lipid loci. |
Identification of genetic markers associated with high-density lipoprotein-cholesterol by genome-wide screening in a Japanese population: the Suita study. |
Large-scale genome-wide association studies in East Asians identify new genetic loci influencing metabolic traits. |
Loci influencing lipid levels and coronary heart disease risk in 16 European population cohorts. |
Longitudinal genome-wide association of cardiovascular disease risk factors in the Bogalusa heart study. |
Modeling of environmental effects in genome-wide association studies identifies SLC2A2 and HP as novel loci influencing serum cholesterol levels. |
Newly identified loci that influence lipid concentrations and risk of coronary artery disease. |
Novel Loci for metabolic networks and multi-tissue expression studies reveal genes for atherosclerosis. |
Polymorphism in the CETP gene region, HDL cholesterol, and risk of future myocardial infarction: Genomewide analysis among 18 245 initially healthy women from the Women's Genome Health Study. |
Seven new loci associated with age-related macular degeneration. |
Six new loci associated with blood low-density lipoprotein cholesterol, high-density lipoprotein cholesterol or triglycerides in humans. |
THOC5: a novel gene involved in HDL-cholesterol metabolism. |