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Updated: May 18, 2026

Harnessing the Bioorthogonal Inverse Electron Demand Diels-Alder Cycloaddition for Pretargeted PET Imaging
Published on: February 3, 2015
Evolution of bombesin conjugates for targeted PET imaging of tumors
Hanwen Zhang1, Keelara Abiraj, Daniel L J Thorek
1Division of Radiological Chemistry, Department of Radiology, University Hospital Basel, Basel, Switzerland. zhangh1@mskcc.org
Abstract:
Bombesin receptors are under intense investigation as molecular targets since they are overexpressed in several prevalent solid tumors. We rationally designed and synthesized a series of modified bombesin (BN) peptide analogs to study the influence of charge and spacers at the N-terminus, as well as amino acid substitutions, on both receptor binding affinity and pharmacokinetics. This enabled development of a novel (64/67)Cu-labeled BN peptide for PET imaging and targeted radiotherapy of BN receptor-positive tumors. Our results show that N-terminally positively charged peptide ligands had significantly higher affinity to human gastrin releasing peptide receptor (GRPr) than negatively charged or uncharged ligands (IC(50): 3.2±0.5 vs 26.3±3.5 vs 41.5±2.5 nM). The replacement of Nle(14) by Met, and deletion of D-Tyr(6), further resulted in 8-fold higher affinity. Contrary to significant changes to human GRPr binding, modifications at the N-terminal and at the 6(th), 11(th), and 14(th) position of BN induced only slight influences on affinity to mouse GRPr. [Cu(II)]-CPTA-[βAla(11)] BN(7-14) ([Cu(II)]-BZH7) showed the highest internalization rate into PC-3 cells with relatively slow efflux because of its subnanomolar affinity to GRPr. Interestingly, [(64/67)Cu]-BZH7 also displayed similar affinities to the other 2 human BN receptor subtypes. In vivo studies showed that [(64/67)Cu]-BZH7 had a high accumulation in PC-3 xenografts and allowed for clear-cut visualization of the tumor in PET imaging. In addition, a CPTA-glycine derivative, forming a hippurane-type spacer, enhanced kidney clearance of the radiotracer. These data indicate that the species variation of BN receptor plays an important role in screening radiolabeled BN. As well, the positive charge from the metallated complex at the N-terminal significantly increases affinity to human GRPr. Application of these observations enabled the novel ligand [(64/67)Cu]-BZH7 to clearly visualize PC-3 tumors in vivo. This study provides a strong starting point for optimizing radiopeptides for targeting carcinomas that express any of the BN receptor subtypes.
Insights
Positively charged bombesin (BN) peptide analogs show higher affinity for human gastrin releasing peptide receptors (GRPr), enabling development of (64/67)Cu-BZH7 for PET imaging and radiotherapy of GRPr-positive tumors.
Area of Science:
- Oncology
- Radiochemistry
- Molecular Imaging
Background:
- Bombesin (BN) receptors are overexpressed in several common solid tumors, making them attractive molecular targets.
- Developing targeted therapies and imaging agents for BN receptor-positive cancers is a significant area of research.
Purpose of the Study:
- To design and synthesize modified BN peptide analogs to optimize binding affinity and pharmacokinetic properties.
- To develop a novel (64/67)Cu-labeled BN peptide for Positron Emission Tomography (PET) imaging and targeted radiotherapy.
- To investigate the influence of N-terminal charge, spacers, and amino acid substitutions on BN receptor binding.
Main Methods:
- Rational design and synthesis of a series of modified BN peptide analogs.
- Evaluation of receptor binding affinity to human and mouse gastrin releasing peptide receptors (GRPr).
- In vitro studies of peptide internalization and efflux in PC-3 cells.
- In vivo PET imaging studies in PC-3 xenograft models.
Main Results:
- N-terminally positively charged BN analogs exhibited significantly higher affinity to human GRPr compared to uncharged or negatively charged ligands.
- Specific modifications, including replacement of Nle(14) by Met and deletion of D-Tyr(6), further increased binding affinity.
- The novel (64/67)Cu-labeled BN peptide, [Cu(II)]-BZH7, demonstrated high affinity, efficient internalization, and slow efflux in PC-3 cells.
- In vivo studies successfully visualized PC-3 tumors using [(64/67)Cu]-BZH7 PET imaging.
- A CPTA-glycine derivative enhanced kidney clearance of the radiotracer.
Conclusions:
- Positive charge at the N-terminus significantly enhances affinity to human GRPr.
- Species variation in BN receptor affinity is an important consideration for radiolabeled BN development.
- [(64/67)Cu]-BZH7 is a promising radiotracer for PET imaging and potential targeted radiotherapy of BN receptor-positive carcinomas.
- This study provides a foundation for optimizing radiopeptides targeting BN receptor subtypes.
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