Literature DB >> 27496751

Targeting factor VIII expression to platelets for hemophilia A gene therapy does not induce an apparent thrombotic risk in mice.

C K Baumgartner1, J G Mattson1, H Weiler1, Q Shi1,2,3,4, R R Montgomery1,2,3.   

Abstract

Essentials Platelet-Factor (F) VIII gene therapy is a promising treatment in hemophilia A. This study aims to evaluate if platelet-FVIII expression would increase the risk for thrombosis. Targeting FVIII expression to platelets does not induce or elevate thrombosis risk. Platelets expressing FVIII are neither hyper-activated nor hyper-responsive.
SUMMARY: Background Targeting factor (F) VIII expression to platelets is a promising gene therapy approach for hemophilia A, and is successful even in the presence of inhibitors. It is well known that platelets play important roles not only in hemostasis, but also in thrombosis and inflammation. Objective To evaluate whether platelet-FVIII expression might increase thrombotic risk and thereby compromise the safety of this approach. Methods In this study, platelet-FVIII-expressing transgenic mice were examined either in steady-state conditions or under prothrombotic conditions induced by inflammation or the FV Leiden mutation. Native whole blood thrombin generation assay, rotational thromboelastometry analysis and ferric chloride-induced vessel injury were used to evaluate the hemostatic properties. Various parameters associated with thrombosis risk, including D-dimer, thrombin-antithrombin complexes, fibrinogen, tissue fibrin deposition, platelet activation status and activatability, and platelet-leukocyte aggregates, were assessed. Results We generated a new line of transgenic mice that expressed 30-fold higher levels of platelet-expressed FVIII than are therapeutically required to restore hemostasis in hemophilic mice. Under both steady-state conditions and prothrombotic conditions induced by lipopolysaccharide-mediated inflammation or the FV Leiden mutation, supratherapeutic levels of platelet-expressed FVIII did not appear to be thrombogenic. Furthermore, FVIII-expressing platelets were neither hyperactivated nor hyperactivatable upon agonist activation. Conclusion We conclude that, in mice, more than 30-fold higher levels of platelet-expressed FVIII than are required for therapeutic efficacy in hemophilia A are not associated with a thrombotic predilection.
© 2016 International Society on Thrombosis and Haemostasis.

Entities:  

Keywords:  factor VIII; gene therapy; hemophilia A; platelet; thrombosis

Mesh:

Substances:

Year:  2016        PMID: 27496751      PMCID: PMC5280575          DOI: 10.1111/jth.13436

Source DB:  PubMed          Journal:  J Thromb Haemost        ISSN: 1538-7836            Impact factor:   5.824


  49 in total

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Journal:  Arterioscler Thromb Vasc Biol       Date:  2001-09       Impact factor: 8.311

3.  Factor VIII ectopically targeted to platelets is therapeutic in hemophilia A with high-titer inhibitory antibodies.

Authors:  Qizhen Shi; David A Wilcox; Scot A Fahs; Hartmut Weiler; Clive W Wells; Brian C Cooley; Drashti Desai; Patricia A Morateck; Jack Gorski; Robert R Montgomery
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4.  Nonviral transfer of the gene encoding coagulation factor VIII in patients with severe hemophilia A.

Authors:  D A Roth; N E Tawa; J M O'Brien; D A Treco; R F Selden
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6.  Evaluation of D-dimer in the diagnosis of suspected deep-vein thrombosis.

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7.  Platelet gene therapy corrects the hemophilic phenotype in immunocompromised hemophilia A mice transplanted with genetically manipulated human cord blood stem cells.

Authors:  Qizhen Shi; Erin L Kuether; Yingyu Chen; Jocelyn A Schroeder; Scot A Fahs; Robert R Montgomery
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8.  A conditional knockout mouse model reveals endothelial cells as the principal and possibly exclusive source of plasma factor VIII.

Authors:  Scot A Fahs; Matthew T Hille; Qizhen Shi; Hartmut Weiler; Robert R Montgomery
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9.  Analysis of the spatial and temporal characteristics of platelet-delivered factor VIII-based clots.

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10.  Causal relationship between hyperfibrinogenemia, thrombosis, and resistance to thrombolysis in mice.

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2.  Infused factor VIII-expressing platelets or megakaryocytes as a novel therapeutic strategy for hemophilia A.

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Review 4.  Platelet-Targeted Gene Therapy for Hemophilia.

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5.  The severe spontaneous bleeding phenotype in a novel hemophilia A rat model is rescued by platelet FVIII expression.

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6.  Thromboelastometry assessment of hemostatic properties in various murine models with coagulopathy and the effect of factor VIII therapeutics.

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