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An Automated Radiosynthesis of [68Ga]Ga-FAPI-46 for Routine Clinical Use
Published on: May 24, 2024
Fibroblast Activation Protein Inhibitor-Based Radionuclide Therapies: Current Status and Future Directions
Manish Ora1, Neetu Soni2, Aftab Hasan Nazar3
1Department of Nuclear Medicine, SGPGIMS, Lucknow, India; drmanishora@yahoo.com.
Abstract:
Metastatic malignancies have limited management strategies and variable treatment responses. Cancer cells develop beside and depend on the complex tumor microenvironment. Cancer-associated fibroblasts, with their complex interaction with tumor and immune cells, are involved in various steps of tumorigenesis, such as growth, invasion, metastasis, and treatment resistance. Prooncogenic cancer-associated fibroblasts emerged as attractive therapeutic targets. However, clinical trials have achieved suboptimal success. Fibroblast activation protein (FAP) inhibitor-based molecular imaging has shown encouraging results in cancer diagnosis, making them innovative targets for FAP inhibitor-based radionuclide therapies. This review summarizes the results of preclinical and clinical FAP-based radionuclide therapies. We will describe advances and FAP molecule modification in this novel therapy, as well as its dosimetry, safety profile, and efficacy. This summary may guide future research directions and optimize clinical decision-making in this emerging field.
Insights
Fibroblast Activation Protein (FAP) targeted radionuclide therapies show promise for treating metastatic cancers by targeting cancer-associated fibroblasts. This review details advances, safety, and efficacy, guiding future research and clinical decisions.
Area of Science:
- Oncology
- Radiochemistry
- Cancer Biology
Background:
- Metastatic malignancies present challenges in management and treatment response due to complex tumor microenvironments.
- Cancer-associated fibroblasts (CAFs) are key players in tumorigenesis, invasion, metastasis, and treatment resistance.
- Targeting pro-oncogenic CAFs is a promising strategy, but clinical trials have yielded suboptimal results.
Conclusions:
- FAP-targeted radionuclide therapies represent a novel and evolving treatment modality for metastatic cancers.
- Further research and optimization of FAP molecule modification are crucial for enhancing efficacy.
- This review provides insights to guide future research and clinical decision-making in FAP-based therapies.

