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

Plos One
|October 2, 2012
PubMed

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.