PET Imaging of HER2-Positive Tumors with Cu-64-Labeled Affibody Molecules

Shibo Qi1,2, Susan Hoppmann2, Yingding Xu2

  • 1School of Environmental and Chemical Engineering, Tianjin Polytechnic University, Tianjin, 300387, China.

Abstract

Insights

This study optimized Cu-64 radiolabeling of HER2-affibody probes for cancer imaging. [64Cu]DOTA-Cys-ZHER2:342 demonstrated superior affinity and stability for effective PET imaging of HER2-positive tumors.

Area of Science:

  • Oncology
  • Radiochemistry
  • Molecular Imaging

Background:

  • Human epidermal growth factor receptor type 2 (HER2) is a key target for cancer imaging and therapy.
  • Affibody proteins offer high binding affinity for targets like HER2.
  • Copper-64 (Cu-64) is a suitable radioisotope for positron emission tomography (PET) imaging due to its properties.

Purpose of the Study:

  • To optimize Cu-64 radiolabeling of the HER2-targeting affibody ZHER2:342.
  • To develop and evaluate novel PET probes for HER2-positive cancer imaging.
  • To compare the in vivo performance of different radiolabeling strategies.

Main Methods:

  • Synthesis of three anti-HER2 affibody analogues (Ac-Cys-ZHER2:342, Ac-ZHER2:342(Cys39), Ac-ZHER2:342-Cys) via solid-phase peptide synthesis.
  • Site-specific conjugation of affibodies with a maleimide-functionalized DOTA chelator.
  • Radiolabeling of DOTA-affibody conjugates with Cu-64.
  • In vitro cell uptake assays, binding affinity studies (Kd), and metabolic stability tests.
  • In vivo small-animal PET imaging, biodistribution, and tumor uptake studies in mice bearing HER2-positive SKOV3 tumors.

Main Results:

  • All three Cu-64 labeled affibody probes ([64Cu]DOTA-Cys-ZHER2:342, [64Cu]DOTA-ZHER2:342(Cys39), [64Cu]DOTA-ZHER2:342-Cys) showed high and specific uptake in HER2-positive SKOV3 cells.
  • Binding affinities (Kd) were in the low nanomolar range, with [64Cu]DOTA-Cys-ZHER2:342 exhibiting the highest affinity (25.2 ± 9.2 nM).
  • All probes demonstrated good in vivo stability and tumor targeting, with comparable tumor uptake at 24h (around 4% ID/g).
  • [64Cu]DOTA-Cys-ZHER2:342 showed the highest in vitro and in vivo stability.

Conclusions:

  • The three optimized Cu-64 labeled ZHER2:342 affibody analogues effectively target HER2 and provide high-quality PET imaging.
  • While all probes showed good performance, [64Cu]DOTA-Cys-ZHER2:342 is the most superior PET probe due to its highest binding affinity and enhanced in vivo stability.
  • These findings support the clinical translation of [64Cu]DOTA-Cys-ZHER2:342 for PET imaging of HER2-positive cancers.

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