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GRPR Expression in Metastatic Cancers: A Review of Potential Application of GRPR-Radioligand Therapy
Aurélien Callaud1, Heying Duan2, Elif Hindié3
1CHU de Bordeaux, Department of Nuclear Medicine & Radiopharmacy, Bordeaux, France; University of Bordeaux, CNRS, EPHE, INCIA, UMR 5287, Bordeaux, France.
Abstract:
Gastrin-Releasing Peptide Receptor (GRPR) represents a promising molecular target for radionuclide therapy (TRT) across a variety of malignancies due to its overexpression in several tumor types, including prostate, breast, lung, melanoma, cervix, neuroblastoma, head and neck, and colon cancers. While expression patterns vary-with high GRPR expression notably observed in cervix and neuroblastoma cancers-tumor heterogeneity and metastatic profiles remain challenges for patient selection and therapy optimization. Recent advances in GRPR-targeted radiopharmaceutical development have focused on overcoming peptide instability and enhancing tumor uptake, exemplified by novel compounds such as AMTG with improved proteolytic resistance and albumin binding domains to extend circulatory half-life. Furthermore, innovative radionuclides like terbium-161, lead-212, copper-67, cobalt-58 m, and arsenic-77 offer enhanced therapeutic potential beyond the current standard of lutetium-177 through favorable decay characteristics including Auger electron emission and alpha-particle therapy. Preclinical and early clinical studies demonstrate encouraging tumor targeting and therapeutic efficacy with manageable toxicity profiles, particularly in prostate and cervix cancers. However, further investigation into GRPR expression heterogeneity, metastatic distribution, and safety is necessary to refine patient stratification and maximize clinical benefit. This evolving landscape positions GRPR-TRT as a versatile and potent approach, with the potential to expand targeted radionuclide therapy to a broader range of malignancies and improve outcomes in advanced cancers with limited treatment options.
Insights
Gastrin-Releasing Peptide Receptor (GRPR) targeted radionuclide therapy shows promise for various cancers. Advances in radiopharmaceuticals and radionuclides enhance efficacy and broaden treatment potential for advanced malignancies.
Area of Science:
- Oncology
- Nuclear Medicine
- Radiopharmaceutical Science
Background:
- Gastrin-Releasing Peptide Receptor (GRPR) is overexpressed in multiple cancers, including prostate, breast, lung, and cervix.
- Tumor heterogeneity and metastatic profiles present challenges for GRPR-targeted radionuclide therapy (TRT).
- Current GRPR-TRT faces limitations due to peptide instability and suboptimal pharmacokinetics.
Purpose of the Study:
- To review recent advances in GRPR-targeted radiopharmaceutical development.
- To explore the potential of novel radionuclides for enhanced therapeutic efficacy.
- To assess the current status and future directions of GRPR-TRT in oncology.
Main Methods:
- Review of preclinical and early clinical studies on GRPR-targeted agents.
- Analysis of novel radiopharmaceutical compounds designed for improved stability and tumor uptake.
- Evaluation of emerging radionuclides with favorable decay characteristics for targeted therapy.
Main Results:
- Novel GRPR-targeting agents demonstrate improved proteolytic resistance and extended half-life.
- Emerging radionuclides (e.g., Tb-161, Pb-212, Cu-67) offer enhanced therapeutic potential over Lu-177.
- Preclinical and early clinical data show promising tumor targeting and efficacy, particularly in prostate and cervix cancers, with manageable toxicity.
Conclusions:
- GRPR-TRT is a versatile and potent therapeutic strategy for a range of malignancies.
- Further research is needed to address GRPR expression heterogeneity and metastatic distribution for optimal patient selection.
- GRPR-TRT holds significant potential to expand treatment options for advanced cancers with limited therapeutic alternatives.

