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(1 - 20 of 31)

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DNA methylation signature of chronic low-grade inflammation and its role in cardio-respiratory diseases
Multi-ancestry genome-wide gene-sleep interactions identify novel loci for blood pressure
Discovery of rare variants associated with blood pressure regulation through meta-analysis of 1.3 million individuals
Multi-ancestry GWAS of the electrocardiographic PR interval identifies 202 loci underlying cardiac conduction
Gene-educational attainment interactions in a multi-ancestry genome-wide meta-analysis identify novel blood pressure loci
Association of dietary folate and vitamin B-12 intake with genome-wide DNA methylation in blood: a large-scale epigenome-wide association analysis in 5841 individuals
A multi-ancestry genome-wide study incorporating gene-smoking interactions identifies multiple new loci for pulse pressure and mean arterial pressure
An integrative cross-omics analysis of DNA methylation sites of glucose and insulin homeostasis
Proteomic Bioprofiles and Mechanistic Pathways of Progression to Heart Failure The HOMAGE Study
Associations of Mitochondrial and Nuclear Mitochondrial Variants and Genes with Seven Metabolic Traits
Genetic analysis of over 1 million people identifies 535 new loci associated with blood pressure traits
Exome Chip Analysis Identifies Low-Frequency and Rare Variants in MRPL38 for White Matter Hyperintensities on Brain Magnetic Resonance Imaging
Novel genetic associations for blood pressure identified via gene-alcohol interaction in up to 570K individuals across multiple ancestries
A Large-Scale Multi-ancestry Genome-wide Study Accounting for Smoking Behavior Identifies Multiple Significant Loci for Blood Pressure
DNA Methylation Analysis Identifies Loci for Blood Pressure Regulation
Genetically defined elevated homocysteine levels do not result in widespread changes of DNA methylation in leukocytes
Novel Blood Pressure Locus and Gene Discovery Using Genome-Wide Association Study and Expression Data Sets From Blood and the Kidney
Genome-wide association analysis identifies novel blood pressure loci and offers biological insights into cardiovascular risk
SOS2 and ACP1 Loci Identified through Large-Scale Exome Chip Analysis Regulate Kidney Development and Function
Genome-wide Trans-ethnic Meta-analysis Identifies Seven Genetic Loci Influencing Erythrocyte Traits and a Role for RBPMS in Erythropoiesis

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