Non-invasive in vivo imaging of acute thrombosis: development of a novel factor XIIIa radiotracer

Author:

Andrews Jack P M1ORCID,Portal Christophe2,Walton Tashfeen3,Macaskill Mark G1,Hadoke Patrick W F1,Alcaide Corral Carlos1,Lucatelli Christophe3,Wilson Simon1,Wilson Ian4,MacNaught Gillian3,Dweck Marc R1,Newby David E1,Tavares Adriana A S1

Affiliation:

1. BHF Centre for Cardiovascular Science, University of Edinburgh, 49 Little France Crescent, Edinburgh, UK

2. Edinburgh Molecular Imaging Ltd., 9 Little France Road, Edinburgh, UK

3. Edinburgh Imaging facility QMRI, University of Edinburgh, 47 Little France Crescent, Edinburgh, UK

4. ImaginAb, Inc. U.S. 43 Hindry Avenue, Suite D, Inglewood, California, USA

Abstract

Abstract Aims Cardiovascular thrombosis is responsible a quarter of deaths annually worldwide. Current imaging methods for cardiovascular thrombosis focus on anatomical identification of thrombus but cannot determine thrombus age or activity. Molecular imaging techniques hold promise for identification and quantification of thrombosis in vivo. Our objective was to assess a novel optical and positron-emitting probe targeting Factor XIIIa (ENC2015) as biomarker of active thrombus formation. Methods and results Optical and positron-emitting ENC2015 probes were assessed ex vivo using blood drawn from human volunteers and passed through perfusion chambers containing denuded porcine aorta as a model of arterial injury. Specificity of ENC2015 was established with co-infusion of a factor XIIIa inhibitor. In vivo18F-ENC2015 biodistribution, kinetics, radiometabolism, and thrombus binding were characterized in rats. Both Cy5 and fluorine-18 labelled ENC2015 rapidly and specifically bound to thrombi. Thrombus uptake was inhibited by a factor XIIIa inhibitor. 18F-ENC2015 remained unmetabolized over 8 h when incubated in ex vivo human blood. In vivo, 42% of parent radiotracer remained in blood 60 min post-administration. Biodistribution studies demonstrated rapid clearance from tissues with elimination via the urinary system. In vivo,18F-ENC2015 uptake was markedly increased in the thrombosed carotid artery compared to the contralateral patent artery (mean standard uptake value ratio of 2.40 vs. 0.74, P < 0.0001). Conclusion  ENC2015 rapidly and selectively binds to acute thrombus in both an ex vivo human translational model and an in vivo rodent model of arterial thrombosis. This probe holds promise for the non-invasive identification of thrombus formation in cardiovascular disease.

Funder

British Heart Foundation

Wellcome Trust Senior Investigator Award

Sir Jules Thorn Biomedical Research Award 2015

National Health Service Research Scotland

NRS

National Health Service Lothian Health Board

Publisher

Oxford University Press (OUP)

Subject

Cardiology and Cardiovascular Medicine,Radiology, Nuclear Medicine and imaging,General Medicine

Reference34 articles.

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