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An Automated Radiosynthesis of [68Ga]Ga-FAPI-46 for Routine Clinical Use
Published on: May 24, 2024
Translational imaging of the fibroblast activation protein (FAP) using the new ligand [68Ga]Ga-OncoFAP-DOTAGA
P Backhaus1,2, F Gierse3, M C Burg4
1Department of Nuclear Medicine, University Hospital Münster, Albert-Schweitzer Campus 1, Building A1, 48149, Münster, Germany. Philipp.backhaus@ukmuenster.de.
Purpose:
The fibroblast activation protein (FAP) is an emerging target for molecular imaging and therapy in cancer. OncoFAP is a novel small organic ligand for FAP with very high affinity. In this translational study, we establish [68Ga]Ga-OncoFAP-DOTAGA (68Ga-OncoFAP) radiolabeling, benchmark its properties in preclinical imaging, and evaluate its application in clinical PET scanning.
Methods:
68Ga-OncoFAP was synthesized in a cassette-based fully automated labeling module. Lipophilicity, affinity, and serum stability of 68Ga-OncoFAP were assessed by determining logD7.4, IC50 values, and radiochemical purity. 68Ga-OncoFAP tumor uptake and imaging properties were assessed in preclinical dynamic PET/MRI in murine subcutaneous tumor models. Finally, biodistribution and uptake in a variety of tumor types were analyzed in 12 patients based on individual clinical indications that received 163 ± 50 MBq 68Ga-OncoFAP combined with PET/CT and PET/MRI.
Results:
68Ga-OncoFAP radiosynthesis was accomplished with high radiochemical yields. Affinity for FAP, lipophilicity, and stability of 68Ga-OncoFAP measured are ideally suited for PET imaging. PET and gamma counting-based biodistribution demonstrated beneficial tracer kinetics and high uptake in murine FAP-expressing tumor models with high tumor-to-blood ratios of 8.6 ± 5.1 at 1 h and 38.1 ± 33.1 at 3 h p.i. Clinical 68Ga-OncoFAP-PET/CT and PET/MRI demonstrated favorable biodistribution and kinetics with high and reliable uptake in primary cancers (SUVmax 12.3 ± 2.3), lymph nodes (SUVmax 9.7 ± 8.3), and distant metastases (SUVmax up to 20.0).
Conclusion:
Favorable radiochemical properties, rapid clearance from organs and soft tissues, and intense tumor uptake validate 68Ga-OncoFAP as a powerful alternative to currently available FAP tracers.
Insights
The novel [68Ga]Ga-OncoFAP-DOTAGA tracer demonstrates high affinity for fibroblast activation protein (FAP) and excellent tumor uptake. This makes [68Ga]Ga-OncoFAP a promising new tool for cancer imaging.
Area of Science:
- Oncology
- Radiochemistry
- Molecular Imaging
Background:
- Fibroblast activation protein (FAP) is a key target for cancer imaging and therapy.
- Developing high-affinity ligands for FAP is crucial for effective molecular imaging.
Purpose of the Study:
- To establish radiolabeling of [68Ga]Ga-OncoFAP-DOTAGA ([68Ga]Ga-OncoFAP).
- To evaluate the preclinical and clinical performance of [68Ga]Ga-OncoFAP for FAP-targeted PET imaging.
Main Methods:
- Automated radiosynthesis of [68Ga]Ga-OncoFAP.
- Assessment of lipophilicity, affinity, and stability.
- Preclinical PET/MRI in murine tumor models.
- Clinical PET/CT and PET/MRI in 12 patients.
Main Results:
- Successful radiosynthesis with high yields.
- Favorable lipophilicity and stability for PET imaging.
- High tumor uptake and tumor-to-blood ratios in preclinical models.
- Reliable high uptake in primary cancers, lymph nodes, and metastases in patients.
Conclusions:
- [68Ga]Ga-OncoFAP exhibits excellent radiochemical properties and rapid clearance.
- Intense tumor uptake validates [68Ga]Ga-OncoFAP as a potent FAP-targeting tracer.
- [68Ga]Ga-OncoFAP is a promising alternative to existing FAP imaging agents.
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