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Blood· 2026Q1

Enhanced factor VIII activation accelerates thrombin generation and hemostatic potency in mice

Lacramioara Ivanciu, Mettine H.A. Bos, Sudharsan Parthasarathy, Raffaella Toso et al.

Short summary

A novel Factor VIII variant (FVIII-2RKR), engineered to require only one cleavage site (Arg372) for activation, demonstrated significantly faster thrombin and Factor Xa generation and improved hemostatic function in mouse models compared to standard B-domain-deleted FVIII.

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Key points

  • Engineered FVIII-2RKR variant requires only Arg372 cleavage for activation, unlike wild-type FVIII.
  • FVIII-2RKR exhibited faster thrombin and Factor Xa generation in plasma assays.
  • FVIII-2RKR improved hemostatic function and efficacy at lower doses in multiple mouse bleeding models.
  • FVIII-2RKR function was independent of von Willebrand factor binding in vWF-deficient mice.

AI-generated from the title and abstract; the full text is not read.

Abstract

Factor VIII (FVIII) circulates as an inactive procofactor and is converted to its active form (FVIIIa) by proteolytic cleavage at Arg372, Arg740, and Arg1689. Although these cleavage events are well characterized, their individual contributions to FVIII activation and hemostatic function remain incompletely defined. To address this, we engineered a FVIII variant (FVIII-2RKR) in which the B-domain and acidic region 3 region were replaced with a PACE/furin processing site, generating a molecule that requires only cleavage at Arg372 for conversion to FVIIIa. FVIII-2RKR exhibited markedly increased apparent activity in plasma-based assays, shortened thrombin generation lag time, and enhanced factor Xa (FXa) generation compared with B-domain-deleted FVIII, whereas both proteins were functionally equivalent following thrombin activation. FVIII-2RKR was cleaved more rapidly at Arg372 by thrombin and FXa, demonstrating that processing at Arg740 and Arg1689 regulates the rate of Arg372 cleavage rather than directly contributing to cofactor activity. In hemophilia A mice, FVIII-2RKR consistently enhanced early hemostatic function across ferric chloride, laser injury, and tail bleeding models, achieving improved efficacy at lower doses. Despite reduced half-life due to impaired von Willebrand factor (vWF) binding, FVIII-2RKR remained effective in vWF-deficient mice, indicating that vWF is not required for local FVIII function at sites of vascular injury. Together, these findings define distinct roles for FVIII activation cleavage sites and demonstrate that processing at Arg740 and Arg1689 regulates activation through Arg372, linking the rate of FVIII activation to hemostatic efficacy in vivo.

The authors' abstract, as published at the source. Blood, 2026 · DOI ↗

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Field: Hematology

HematologyMedicine