👤 Mark Roest

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2
Articles
2
Name variants
Also published as: Steve Vander Roest
articles
Andrea D Thompson, Marcus J Wagner, Juliani Rodriguez +12 more · 2023 · JACC. Basic to translational science · Elsevier · added 2026-04-24
Variants in the gene myosin-binding protein C3 (
📄 PDF DOI: 10.1016/j.jacbts.2023.04.009
MYBPC3
Jun Wan, Nadira Vadaq, Joke Konings +9 more · 2022 · Journal of thrombosis and haemostasis : JTH · Blackwell Publishing · added 2026-04-24
Genetics play a significant role in coagulation phenotype and venous thromboembolism risk. Resistance to the anticoagulant activated protein C (APC) is an established risk for thrombosis. Herein, we e Show more
Genetics play a significant role in coagulation phenotype and venous thromboembolism risk. Resistance to the anticoagulant activated protein C (APC) is an established risk for thrombosis. Herein, we explored the genetic determinants of thrombin generation (TG) and thrombomodulin (TM)-modulated TG using plasma from the Human Functional Genomics Project. Calibrated TG was measured both in absence and presence of TM using tissue factor as trigger. Genetic determinants of TG parameters and protein C pathway function were assessed using genome-wide single-nucleotide polymorphism (SNP) genotyping. Plasma samples were supplemented with purified apolipoprotein A-IV, prekallikrein, or kallikrein to test their influence on the anticoagulant function of TM and APC in TG. Thrombin generation data from 392 individuals were analyzed. Genotyping showed that the KLKB1 gene (top SNP: rs4241819) on chromosome 4 was associated with the normalized sensitivity ratio of endogenous thrombin potential to TM at genome-wide level (nETP-TMsr, P = 4.27 × 10 Our results suggest that kallikrein plays a role in the regulation of the anticoagulant protein C pathway in TG, which may provide a novel mechanism for the previously observed association between the KLKB1 gene and venous thrombosis. Show less
📄 PDF DOI: 10.1111/jth.15530
APOA4