CMKLR1-targeting peptide tracers for PET/MR imaging of breast cancer

Sarah Erdmann1, Lars Niederstadt1, Eva Jolanthe Koziolek2,3,4

  • 1Department of Hepatology and Gastroenterology, Campus Virchow-Klinikum, Charité - Universitätsmedizin Berlin, Berlin, Germany.

Theranostics
|October 8, 2019
PubMed

Insights

Novel peptide tracers targeting chemokine-like receptor 1 (CMKLR1) show promise for imaging and treating breast cancer. These tracers enable specific visualization of CMKLR1-positive tumors using hybrid positron emission tomography/magnetic resonance (PET/MR) imaging.

Area of Science:

  • Oncology
  • Nuclear Medicine
  • Molecular Imaging

Background:

  • Molecular targeting is a key strategy in oncology.
  • Overexpression of G protein-coupled receptors (GPCRs) in cancers presents opportunities for targeted imaging and treatment.
  • Chemokine-like receptor 1 (CMKLR1) is a potential target in breast cancer.

Purpose of the Study:

  • To develop and evaluate novel chemerin-based peptide conjugates for targeting CMKLR1 in breast cancer.
  • To assess the efficacy of these tracers for hybrid positron emission tomography/magnetic resonance (PET/MR) imaging in a xenograft model.

Main Methods:

  • Five DOTA-conjugated peptide tracers were synthesized.
  • Tracer specificity and affinity were evaluated in vitro.
  • A breast cancer xenograft model (DU4475, CMKLR1-positive; A549, CMKLR1-negative) was used for in vivo imaging.
  • Small animal PET/MR imaging, ex vivo biodistribution, and blocking experiments were performed.

Main Results:

  • All five tracers showed high in vitro activity and affinity (EC50/IC50 < 2 nM).
  • Three tracers ([68Ga]Ga-DOTA-AHX-CG34, [68Ga]Ga-DOTA-KCap-CG34, [68Ga]Ga-DOTA-ADX-CG34) exhibited significant tumor uptake in CMKLR1-positive xenografts (5.1–6.2% IA/g at 1 h).
  • Uptake was confirmed as CMKLR1-specific through blocking experiments, showing 3.4–6.4-fold reduction.

Conclusions:

  • 68Ga-labeled peptide tracers effectively visualize CMKLR1-positive breast cancer xenografts using PET/MR imaging.
  • These tracers demonstrate potential for theranostic applications in breast cancer treatment.
  • Balanced hydrophilicity is crucial for potent receptor-mediated tumor targeting.

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