A Mendelian randomization of γ′ and total fibrinogen levels in relation to venous thromboembolism and ischemic stroke
Author(s) -
Jillian Maners,
Dipender Gill,
Nathan Pankratz,
Michael Laffan,
Alisa S. Wolberg,
Moniek P.M. de Maat,
Symen Ligthart,
Weihong Tang,
Cavin WardCaviness,
Myriam Fornage,
Stéphanie Debette,
Martin Dichgans,
Barbara McKnight,
Eric Boerwinkle,
CHARGE Inflammation Working Group,
Nicholas L. Smith,
Alanna C. Morrison,
Abbas Dehghan,
Paul S. de Vries
Publication year - 2020
Publication title -
blood
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.515
H-Index - 465
eISSN - 1528-0020
pISSN - 0006-4971
DOI - 10.1182/blood.2019004781
Subject(s) - mendelian randomization , medicine , stroke (engine) , fibrinogen , ischemic stroke , randomization , venous thromboembolism , cardiology , surgery , clinical trial , thrombosis , ischemia , biology , genetics , gene , genotype , mechanical engineering , engineering , genetic variants
Fibrinogen is a key component of the coagulation cascade, and variation in its circulating levels may contribute to thrombotic diseases, such as venous thromboembolism (VTE) and ischemic stroke. Gamma prime (γ′) fibrinogen is an isoform of fibrinogen that has anticoagulant properties. We applied 2-sample Mendelian randomization (MR) to estimate the causal effect of total circulating fibrinogen and its isoform, γ′ fibrinogen, on risk of VTE and ischemic stroke subtypes using summary statistics from genome-wide association studies. Genetic instruments for γ′ fibrinogen and total fibrinogen were selected, and the inverse-variance weighted MR approach was used to estimate causal effects in the main analysis, complemented by sensitivity analyses that are more robust to the inclusion of pleiotropic variants, including MR-Egger, weighted median MR, and weighted mode MR. The main inverse-variance weighted MR estimates based on a combination of 16 genetic instruments for γ′ fibrinogen and 75 genetic instruments for total fibrinogen indicated a protective effect of higher γ′ fibrinogen and higher total fibrinogen on VTE risk. There was also a protective effect of higher γ′ fibrinogen levels on cardioembolic and large artery stroke risk. Effect estimates were consistent across sensitivity analyses. Our results provide evidence to support effects of genetically determined γ′ fibrinogen on VTE and ischemic stroke risk. Further research is needed to explore mechanisms underlying these effects and their clinical applications.
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