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Updated: Jan 7, 2026
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Automated Preparation of [68Ga]Ga-3BP-3940 on a Synthesis Module for PET Imaging of the Tumor Microenvironment
Published on: April 25, 2025
Therapeutic Applications of Fibroblast Activation Protein (FAP)-Binding Radiopharmaceuticals: Review of Opportunities
Justine Maes1,2, Bernard Pôlet1, Janke Kleynhans3
1Nuclear Medicine and Molecular Imaging, Imaging and Pathology, KU Leuven, 3000 Leuven, Belgium.
Abstract:
Fibroblast activation protein (FAP)-binding radiopharmaceuticals have emerged as promising candidates for both diagnostic and therapeutic applications in oncology due to their selective targeting of cancer-associated fibroblasts (CAFs). This review evaluates the current literature on the therapeutic use of FAP-targeted radiopharmaceuticals in human studies, with a focus on their safety, efficacy, and clinical applicability. Data on radionuclide type, clinical outcome, radiological and metabolic response and adverse events were extracted and summarized. The included studies demonstrated that lutetium-177,yttrium-90 and actinium-225 (in combination therapy) labeled FAP inhibitors exhibit high tumor uptake, with varying but mostly sufficient retention and a favorable safety profile. While mild adverse events such as fatigue, nausea and grade 1 or 2 hematotoxicity were observed, severe toxicities were rare. FAPI-based radionuclide therapies generally show high disease control rates, with promising results from tandem and combination strategies. The heterogeneity of tumor types and small sample sizes limited the generalizability of findings. FAP-targeted radioligand therapy appears to be a promising treatment option for patients with advanced cancer who have exhausted standard therapies. However, further large-scale, prospective clinical trials are necessary to determine optimal dosing strategies, long-term safety and efficacy across different tumor types. Emerging approaches, such as covalently binding FAP-targeted radiopharmaceuticals and the use of alpha-emitters such as actinium-225, lead-212 and bismuth-213, may further enhance treatment outcomes and warrant future investigation.
Insights
Fibroblast activation protein (FAP)-targeted radiopharmaceuticals show promise for cancer therapy, demonstrating good tumor uptake and a favorable safety profile in human studies. Further trials are needed to optimize this FAP-targeted therapy for advanced cancers.
Area of Science:
- Oncology
- Radiopharmaceutical Therapy
- Medical Imaging
Background:
- Fibroblast activation protein (FAP) is highly expressed on cancer-associated fibroblasts (CAFs).
- FAP-targeted radiopharmaceuticals offer selective delivery to the tumor microenvironment.
- CAFs play a crucial role in tumor progression and metastasis.
Purpose of the Study:
- To review the therapeutic applications of FAP-targeted radiopharmaceuticals in human oncology studies.
- To evaluate the safety, efficacy, and clinical applicability of these agents.
- To identify emerging strategies and future research directions.
Main Methods:
- Systematic literature review of human studies involving FAP-targeted radiopharmaceuticals.
- Extraction and summarization of data on radionuclide type, clinical outcomes, response, and adverse events.
- Analysis of safety and efficacy data for FAP-binding agents.
Main Results:
- FAP inhibitors labeled with Lutetium-177, Yttrium-90, and Actinium-225 showed high tumor uptake and a generally favorable safety profile.
- Mild adverse events were common, but severe toxicities were rare.
- High disease control rates were observed, particularly with combination strategies.
Conclusions:
- FAP-targeted radioligand therapy is a promising option for advanced cancers, especially when standard therapies fail.
- Further large-scale clinical trials are essential to establish optimal dosing and long-term outcomes.
- Novel approaches, including alpha-emitters and covalent FAP-binding agents, warrant further investigation.
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