Biodistribution and retargeting of FX-binding ablated adenovirus serotype 5 vectors

Author:

Alba Raul1,Bradshaw Angela C.1,Coughlan Lynda1,Denby Laura1,McDonald Robert A.1,Waddington Simon N.2,Buckley Suzanne M. K.2,Greig Jenny A.1,Parker Alan L.1,Miller Ashley M.3,Wang Hongjie4,Lieber Andre4,van Rooijen Nico5,McVey John H.6,Nicklin Stuart A.1,Baker Andrew H.1

Affiliation:

1. British Heart Foundation Glasgow Cardiovascular Research Centre, University of Glasgow, Glasgow, United Kingdom;

2. Department of Haematology, Haemophilia Centre and Haemostasis Unit, Royal Free and University College Medical School, London, United Kingdom;

3. Division of Immunology, Infection and Inflammation, Glasgow Biomedical Research Centre, University of Glasgow, Glasgow, United Kingdom;

4. Division of Medical Genetics, University of Washington, Seattle, WA;

5. Department of Molecular Cell Biology, Vrije Universiteit Medical Center (VUMC), Amsterdam, The Netherlands; and

6. Thrombosis Research Institute, London, United Kingdom

Abstract

AbstractA major limitation for adenoviral transduction in vivo is the profound liver tropism of adenovirus type 5 (Ad5). Recently, we demonstrated that coagulation factor X (FX) binds to Ad5-hexon protein at high affinity to mediate hepatocyte transduction after intravascular delivery. We developed novel genetically FX-binding ablated Ad5 vectors with lower liver transduction. Here, we demonstrate that FX-binding ablated Ad5 predominantly localize to the liver and spleen 1 hour after injection; however, they had highly reduced liver transduction in both control and macrophage-depleted mice compared with Ad5. At high doses in macrophage-depleted mice, FX-binding ablated vectors transduced the spleen more efficiently than Ad5. Immunohistochemical studies demonstrated transgene colocalization with CD11c+, ER-TR7+, and MAdCAM-1+ cells in the splenic marginal zone. Systemic inflammatory profiles were broadly similar between FX-binding ablated Ad5 and Ad5 at low and intermediate doses, although higher levels of several inflammatory proteins were observed at the highest dose of FX-binding ablated Ad5. Subsequently, we generated a FX-binding ablated virus containing a high affinity Ad35 fiber that mediated a significant improvement in lung/liver ratio in macrophage-depleted CD46+ mice compared with controls. Therefore, this study documents the biodistribution and reports the retargeting capacity of FX binding-ablated Ad5 vectors in vitro and in vivo.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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