This study will compare bone mineral density in patients with severe hemophilia A receiving prophylaxis with emicizumab or efanesoctocog alfa. Participants will undergo assessments of bone mineral density, bone remodeling biomarkers, thrombin generation, plasmin generation, and joint health over a five-year period. The study aims to evaluate whether differences in prophylactic therapy are associated with differences in bone health outcomes.
Reduced bone mineral density, osteoporosis, and fractures are increasingly recognized in persons with severe hemophilia A. The mechanisms underlying impaired bone health in hemophilia are multifactorial and may include reduced physical activity, chronic joint disease, inflammation, and abnormalities in coagulation-related pathways involved in bone remodeling. Thrombin has been shown to play an important role in bone metabolism through activation of protease-activated receptor-1 (PAR-1) signaling pathways that influence osteoblast and osteoclast activity. Reduced thrombin generation in severe hemophilia A may contribute to decreased bone formation and increased bone resorption. Efanesoctocog alfa is an extended half-life factor VIII replacement therapy that maintains higher circulating factor VIII levels and supports thrombin generation. Emicizumab is a non-factor prophylactic therapy that effectively prevents bleeding but does not replace factor VIII. The comparative effects of these therapies on long term bone health have not been well established. This prospective observational study will compare longitudinal changes in bone mineral density among patients with severe hemophilia A receiving prophylaxis with emicizumab or efanesoctocog alfa over 5 years. Participants will undergo serial dual-energy X-ray absorptiometry (DXA) assessments and evaluation of bone remodeling biomarkers, inflammatory cytokines, thrombin generation, plasmin generation, and joint health over a five-year period.
Study Type
OBSERVATIONAL
Enrollment
50
Longitudinal change in femoral neck bone mineral density (g/cm²)
Bone mineral densitometry
Time frame: Baseline and annually through 5 years.
Longitudinal change in Lumbar spine (L1-L4) bone mineral density (g/cm²)
Bone mineral densitometry
Time frame: Baseline and annually through 5 years.
Longitudinal change in total hip bone mineral density (g/cm²)
Bone mineral densitometry
Time frame: Baseline and annually through 5 years.
Longitudinal Change in Bone Remodeling Biomarkers and Cytokines
PINP, CTX-I, OPG, RANKL, IL-1β, IL-6, and TNF-α
Time frame: Baseline and annually through 5 years.
Change in Thrombin Generation and Plasmin Generation Parameters
Simultaneous Thrombin and Plasmin Generation Assay
Time frame: Baseline and annually through 5 years
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