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Novel therapeutic approach for hemophilia using gene delivery of an engineered secreted activated Factor VII
Paris Margaritis, Valder R. Arruda, Majed Aljamali, Rodney M. Camire, Alexander Schlachterman, Katherine A. High
Paris Margaritis, Valder R. Arruda, Majed Aljamali, Rodney M. Camire, Alexander Schlachterman, Katherine A. High
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Article Genetics

Novel therapeutic approach for hemophilia using gene delivery of an engineered secreted activated Factor VII

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Abstract

Hemophilia is a bleeding disorder caused by mutations in the genes encoding coagulation Factor VIII (FVIII) or FIX. Current treatment is through intravenous infusion of the missing protein. The major complication of treatment is the development of neutralizing Ab’s to the clotting factor. Infusion of recombinant activated human Factor VII (rhFVIIa), driving procoagulant reactions independently of human FVIII (hFVIII) or hFIX, has been successful in such patients and could in theory provide hemostasis in all hemophilia patients. However, its high cost and short half-life have limited its use. Here, we report a novel treatment strategy with a recombinant adeno-associated virus vector delivering a modified FVII transgene that can be intracellularly processed and secreted as activated FVII (FVIIa). We show long-term expression, as well as phenotypic correction of hemophilia B mice following gene transfer of the murine FVIIa homolog, with no evidence of thrombotic complications at these doses. These data hold promise for a potential treatment for hemophilia and other bleeding disorders.

Authors

Paris Margaritis, Valder R. Arruda, Majed Aljamali, Rodney M. Camire, Alexander Schlachterman, Katherine A. High

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Figure 4

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In vitro characterization and purification of mFVII-HPC4 and mFVII-2RKR-...
In vitro characterization and purification of mFVII-HPC4 and mFVII-2RKR-HPC4. (A) PAGE gel of 4 μg of purified proteins, under reducing conditions. Numbers on the left side of the gel denote size in kDa, whereas arrows on the right point to the zymogen form, heavy chain, and light chain. The light chain does not stain as intensely as the heavy chain, a previously noted finding (19). (B) In vitro activity based on PT as indicated on top of each bar (mean %), relative to rhFVIIa (100%): left, mFVII-HPC4, and right, mFVII-2RKR-HPC4. Error bars denote mean ± 1 SD, *P < 0.001.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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