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Updated: Jun 20, 2026

Computed Tomography-guided Time-domain Diffuse Fluorescence Tomography in Small Animals for Localization of Cancer Biomarkers
Published on: July 17, 2012
In Vivo Comparison of Site-Specific and Site-Selective Methods for Pretargeted Imaging in a Murine Model of
Merlin Zabrocki1, Samantha Delaney1, Lars Hvass2
1Drug Design and Pharmacology, Faculty of Health and Medical Sciences, University of Copenhagen, Jagtvej 160, Copenhagen 2100, Denmark.
Abstract:
Pretargeting based on the inverse electron-demand Diels-Alder reaction between a tetrazine and a trans-cyclooctene-modified (TCO) antibody has emerged as a powerful approach to the imaging and therapy of cancer. However, poorly constructed immunoconjugates with TCOs in ill-defined places often leads to suboptimal image contrast in pretargeted immune-PET and SPECT. To address these limitations, site-specific and site-selective approaches to antibody bioconjugation may be used for pretargeted imaging. Herein, we present a comparative study between stochastically, site-specifically, and site-selectively modified immunoconjugates for pretargeted SPECT. First, a trio of immunoconjugates─TCO-CC49, TCO-Gly(Az)CC49, TCO-PFP(Az)CC49─were produced with active TCO moieties sufficient for tetrazine ligation. All immunoconjugates retained high affinity for their target antigen, TAG-72, in enzyme-linked immunosorbent assay experiments and in antigen-expressing tumor tissue. A DOTA-modified tetrazine was labeled with indium-111 in high radiochemical yield and used for in vivo experiments. Then, mice bearing subcutaneous LS 174T xenografts received either TCO-CC49, TCO-Gly(Az)CC49, TCO-PFP(Az)CC49 followed 72 h later by [111In]In-DOTA-Tz (16-20 MBq). SPECT scans were acquired at 1 and 24 h postinjection of radiotracer, and all three constructs produced clear tumor delineation. Ex vivo biodistribution data at 24 h showed [111In]In-DOTA-Tz-TCO-CC49 with the highest tumoral uptake (10.4 ± 1.2% ID/g) probably due to the highest TCO loading, but [111In]In-DOTA-Tz-TCO-Gly(Az)CC49 and [111In]In-DOTA-Tz-TCO-PFP(Az)CC49 increased tumor-to-blood and tumor-to-lung ratios. Ultimately, this comparative study serves as a critical step toward identifying the optimal bioconjugation strategy that may be used in pretargeted systems.
Insights
Site-specific antibody modification improves pretargeted SPECT imaging contrast for cancer. This study compared stochastic, site-specific, and site-selective methods, finding improved tumor-to-blood ratios with specific conjugation strategies.
Area of Science:
- Bioconjugation Chemistry
- Radiopharmaceutical Science
- Molecular Imaging
Background:
- Pretargeting strategies using inverse electron-demand Diels-Alder reactions enhance cancer imaging and therapy.
- Suboptimal image contrast in pretargeted SPECT and PET imaging is often due to poorly constructed immunoconjugates with undefined trans-cyclooctene (TCO) positions.
Purpose of the Study:
- To compare stochastic, site-specific, and site-selective antibody bioconjugation strategies for pretargeted SPECT imaging.
- To evaluate the impact of TCO moiety placement on tumor delineation and biodistribution in pretargeted SPECT.
Main Methods:
- Three immunoconjugates (TCO-CC49, TCO-Gly(Az)CC49, TCO-PFP(Az)CC49) were synthesized and characterized for antigen affinity.
- A DOTA-modified tetrazine labeled with indium-111 was used as the radiotracer.
- SPECT imaging and ex vivo biodistribution studies were performed in mice bearing TAG-72 expressing xenografts.
Main Results:
- All immunoconjugates showed high affinity for TAG-72 and enabled clear tumor delineation via SPECT.
- Stochastic TCO-CC49 exhibited the highest tumoral uptake, likely due to higher TCO loading.
- Site-specific and site-selective conjugates (TCO-Gly(Az)CC49, TCO-PFP(Az)CC49) significantly improved tumor-to-blood and tumor-to-lung ratios.
Conclusions:
- Site-specific and site-selective bioconjugation strategies offer improved image quality in pretargeted SPECT compared to stochastic methods.
- Optimizing antibody bioconjugation is crucial for enhancing the efficacy of pretargeted imaging and therapeutic applications.
- This comparative study provides critical insights for selecting optimal bioconjugation strategies in pretargeted systems.
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