Genetic determinants of VWF clearance and FVIII binding modify FVIII pharmacokinetics in pediatric hemophilia A patients

Author:

Swystun Laura L.1,Ogiwara Kenichi1,Rawley Orla1,Brown Christine1,Georgescu Ilinca1,Hopman Wilma2,Labarque Veerle3,Male Christoph4,Thom Katharina4,Blanchette Victor S.5,Carcao Manuel D.5,Lillicrap David1

Affiliation:

1. Department of Pathology and Molecular Medicine and

2. Department of Public Health Sciences, Queen’s University, Kingston, ON, Canada;

3. Department of Pediatric Hemato-Oncology, University Hospitals Leuven, Leuven, Belgium;

4. Department of Pediatrics, Medical University of Vienna, Vienna, Austria; and

5. Department of Pediatrics, University of Toronto and Division of Hematology/Oncology, Hospital for Sick Children, Toronto, ON, Canada

Abstract

Abstract Factor VIII (FVIII) pharmacokinetic (PK) properties show high interpatient variability in hemophilia A patients. Although previous studies have determined that age, body mass index, von Willebrand factor antigen (VWF:Ag) levels, and ABO blood group status can influence FVIII PK, they do not account for all observed variability. In this study, we aim to describe the genetic determinants that modify the FVIII PK profile in a population of 43 pediatric hemophilia A patients. We observed that VWF:Ag and VWF propeptide (VWFpp)/VWF:Ag, but not VWFpp, were associated with FVIII half-life. VWFpp/VWF:Ag negatively correlated with FVIII half-life in patients with non-O blood type, but no correlation was observed for type O patients, suggesting that von Willebrand factor (VWF) half-life, as modified by the ABO blood group, is a strong regulator of FVIII PK. The FVIII-binding activity of VWF positively correlated with FVIII half-life, and the rare or low-frequency nonsynonymous VWF variants p.(Arg826Lys) and p.(Arg852Glu) were identified in patients with reduced VWF:FVIIIB but not VWF:Ag. Common variants at the VWF, CLEC4M, and STAB2 loci, which have been previously associated with plasma levels of VWF and FVIII, were associated with the FVIII PK profile. Together, these studies characterize the mechanistic basis by which VWF clearance and ABO glycosylation modify FVIII PK in a pediatric population. Moreover, this study is the first to identify non-VWF and non-ABO variants that modify FVIII PK in pediatric hemophilia A patients.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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