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Genomic correlates of glatiramer acetate adverse cardiovascular effects lead to a novel locus mediating coronary risk
Journal article   Open access

Genomic correlates of glatiramer acetate adverse cardiovascular effects lead to a novel locus mediating coronary risk

Robert Roberts
PLoS ONE, Vol.12(8)
2017

Abstract

alpha beta omega interferon receptor chemokine receptor CCR5 glatiramer HLA DRB1 antigen interferon receptor transforming growth factor beta1 unclassified drug allele Article cardiovascular disease cardiovascular risk CCR5 gene chromosome 19 chromosome analysis coronary artery disease correlation analysis gene gene identification gene interaction gene linkage disequilibrium gene locus gene product genetic association genetic variability genome-wide association study HLA DRB1 gene human IFNAR1 gene in vitro study in vivo study multiple sclerosis risk assessment single nucleotide polymorphism TGFB1 gene case control study chemically induced genetic predisposition genetics Cardiovascular Diseases Case-Control Studies Genetic Predisposition to Disease Glatiramer Acetate Humans Linkage Disequilibrium Polymorphism, Single Nucleotide
url
https://doi.org/10.1371/journal.pone.0182999View
Published (Version of record) Open

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