Molecular Detection of Venous Thrombosis in Mouse Models Using SPECT/CT

A. Dickhout, P. van de Vijver, N. Bitsch, S.J. van Hoof, S.L.G.D. Thomassen, S. Massberg, P. Timmerman, F. Verhaegen, R.R. Koenen, I. Dijkgraaf, T.M. Hackeng*

*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

The efficacy of thrombolysis is inversely correlated with thrombus age. During early thrombogenesis, activated factor XIII (FXIIIa) cross-links alpha 2-AP to fibrin to protect it from early lysis. This was exploited to develop an alpha 2-AP-based imaging agent to detect early clot formation likely susceptible to thrombolysis treatment. In this study, this imaging probe was improved and validated using In-111 SPECT/CT in a mouse thrombosis model. In vitro fluorescent- and In-111-labelled imaging probe-to-fibrin cross-linking assays were performed. Thrombus formation was induced in C57B1/6 mice by endothelial damage (FeCl3) or by ligation (stenosis) of the infrarenal vena cava (IVC). Two or six hours post-surgery, mice were injected with In-111-DTPA-A16 and ExiTron Nano 12000, and binding of the imaging tracer to thrombi was assessed by SPECT/CT. Subsequently, ex vivo IVCs were subjected to autoradiography and histochemical analysis for platelets and fibrin. Efficient in vitro cross-linking of A16 imaging probe to fibrin was obtained. In vivo IVC thrombosis models yielded stable platelet-rich thrombi with FeCl3 and fibrin and red cell-rich thrombi with stenosis. In the stenosis model, clot formation in the vena cava corresponded with a SPECT hotspot using an A16 imaging probe as a molecular tracer. The fibrin-targeting A16 probe showed specific binding to mouse thrombi in in vitro assays and the in vivo DVT model. The use of specific and covalent fibrin-binding probes might enable the clinical non-invasive imaging of early and active thrombosis.
Original languageEnglish
Article number829
Number of pages13
JournalBiomolecules
Volume12
Issue number6
DOIs
Publication statusPublished - 1 Jun 2022

Keywords

  • thrombosis
  • fibrin
  • molecular imaging
  • SPECT
  • thrombolysis
  • DEEP-VEIN THROMBOSIS
  • FACTOR-XIII
  • CONTRAST AGENT
  • FIBRIN
  • PROBES
  • MRI
  • THROMBOEMBOLISM
  • PLATELETS

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