Literature DB >> 16409171

Congenital factor VII deficiency: therapy with recombinant activated factor VII -- a critical appraisal.

G Mariani1, B A Konkle, J Ingerslev.   

Abstract

Congenital factor VII (FVII) deficiency is a rare bleeding disorder with high phenotypic variability, and optimal management has yet to be determined. Treatment has traditionally involved FVII replacement therapy using fresh frozen plasma, prothrombin complex concentrates or plasma-derived FVII concentrates. Recombinant activated FVII (rFVIIa, NovoSeven(R)), the first recombinant treatment option, has recently been approved in the European Union for use in congenital FVII deficiency, but has been available on an emergency and compassionate use basis since 1988. In FVII deficiency, rFVIIa serves as substitution therapy as it provides the physiological ligand (FVIIa) for tissue factor, its receptor exposed at the site of vascular injury. This paper provides an overview of published and unpublished experience with rFVIIa in patients with congenital FVII deficiency from the NovoSeven compassionate and emergency use programmes (1988-99) and of independent reports in the literature. Recombinant FVIIa has been reported to provide effective haemostasis in patients of all ages and in a range of bleeding situations, including acute central nervous system/life-threatening bleeding episodes (15 episodes in 12 patients), non-life-threatening bleeding episodes (>32 episodes in 17 patients), surgery (>40 interventions in 25 patients) and childbirth (three women). Preliminary reports suggest that it may also be effective prophylactically. The risk of thrombosis in FVII-deficient patients treated with rFVIIa is unknown, as is the occurrence of inhibiting antibodies. A postlicensure pharmacovigilance registry (Seven Treatment Evaluation Registry) has been set up to continue to monitor the efficacy and safety (including alloantibody development) of rFVIIa in patients with FVII deficiency.

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Year:  2006        PMID: 16409171     DOI: 10.1111/j.1365-2516.2006.01180.x

Source DB:  PubMed          Journal:  Haemophilia        ISSN: 1351-8216            Impact factor:   4.287


  16 in total

1.  7 Procoagulators.

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2.  Pediatric cardiac intervention in a case of congenital factor VII deficiency: a challenge to overcome.

Authors:  Dibyendu De; Hemant Kumar Nayak; Suvro Sankha Datta; Nurul Islam; Sandeepan Halder
Journal:  Indian J Hematol Blood Transfus       Date:  2017-06-06       Impact factor: 0.900

3.  Human platelets express endothelial protein C receptor, which can be utilized to enhance localization of factor VIIa activity.

Authors:  A M Fager; K R Machlus; M Ezban; M Hoffman
Journal:  J Thromb Haemost       Date:  2018-06-27       Impact factor: 5.824

Review 4.  Is prophylaxis required for delivery in women with factor VII deficiency?

Authors:  L M Baumann Kreuziger; Colleen T Morton; Mark T Reding
Journal:  Haemophilia       Date:  2013-04-22       Impact factor: 4.287

5.  Successful treatment of canine hemophilia by continuous expression of canine FVIIa.

Authors:  Paris Margaritis; Elise Roy; Majed N Aljamali; Harre D Downey; Urs Giger; Shangzhen Zhou; Elizabeth Merricks; Aaron Dillow; Mirella Ezban; Timothy C Nichols; Katherine A High
Journal:  Blood       Date:  2008-12-23       Impact factor: 22.113

6.  Prophylaxis in congenital factor VII deficiency: indications, efficacy and safety. Results from the Seven Treatment Evaluation Registry (STER).

Authors:  Mariasanta Napolitano; Muriel Giansily-Blaizot; Alberto Dolce; Jean F Schved; Guenter Auerswald; Jørgen Ingerslev; Jens Bjerre; Carmen Altisent; Pimlak Charoenkwan; Lisa Michaels; Ampaiwan Chuansumrit; Giovanni Di Minno; Umran Caliskan; Guglielmo Mariani
Journal:  Haematologica       Date:  2013-02-12       Impact factor: 9.941

Review 7.  Recombinant activated factor VII in clinical practice: a 2014 update.

Authors:  Massimo Franchini; Silvia Crestani; Francesco Frattini; Cinzia Sissa; Carlo Bonfanti
Journal:  J Thromb Thrombolysis       Date:  2015-02       Impact factor: 2.300

8.  Sustained correction of FVII deficiency in dogs using AAV-mediated expression of zymogen FVII.

Authors:  Oscar A Marcos-Contreras; Shannon M Smith; Dwight A Bellinger; Robin A Raymer; Elizabeth Merricks; Armida Faella; Giulia Pavani; Shangzhen Zhou; Timothy C Nichols; Katherine A High; Paris Margaritis
Journal:  Blood       Date:  2015-12-23       Impact factor: 22.113

9.  In vitro characterization of CT-001-a short-acting factor VIIa with enhanced prohemostatic activity.

Authors:  Derek S Sim; Cornell R Mallari; John M Teare; Richard I Feldman; Maxine Bauzon; Terry W Hermiston
Journal:  Res Pract Thromb Haemost       Date:  2021-06-30

10.  A triple-transgenic immunotolerant mouse model.

Authors:  Nina Brenden; Katja Madeyski-Bengtson; Klara Martinsson; Rebecka Svärd; Sara Albery-Larsdotter; Britta Granath; Hanna Lundgren; Ann Lövgren
Journal:  J Pharm Sci       Date:  2013-01-11       Impact factor: 3.534

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