Zirconium-89 labeled panitumumab: a potential immuno-PET probe for HER1-expressing carcinomas

Sibaprasad Bhattacharyya1, Karen Kurdziel, Ling Wei

  • 1ADRD, SAIC-Frederick, Frederick National Laboratory for Cancer Research, Frederick, MD 21702, USA. bhattacharyyas2@mail.nih.gov

Abstract

Insights

This study demonstrates that (89)Zr-DFO-panitumumab PET/CT imaging can non-invasively visualize epidermal growth factor receptor (EGFR, HER1) expression in vivo. The immuno-PET tracer showed high tumor uptake and a strong correlation with HER1 levels, suggesting clinical feasibility.

Area of Science:

  • Nuclear Medicine
  • Oncology
  • Radiopharmaceutical Chemistry

Background:

  • Panitumumab (Vectibix) is an FDA-approved anti-HER1 monoclonal antibody for colorectal cancers.
  • Combining panitumumab with Positron Emission Tomography (PET) offers quantitative in vivo imaging of HER1 expression.
  • This study evaluates (89)Zr-DFO-panitumumab for PET/CT imaging and human dosimetry.

Purpose of the Study:

  • To assess the feasibility of using (89)Zr-DFO-panitumumab for non-invasive in vivo imaging of HER1 expression.
  • To perform comparative biodistribution and dosimetry studies of (89)Zr-DFO-panitumumab and (111)In-CHX-A"-DTPA-panitumumab.
  • To estimate human radiation dose for (89)Zr-DFO-panitumumab.

Main Methods:

  • Panitumumab was radiolabeled with (89)Zr and (111)In using DFO and CHX-A"-DTPA chelators, respectively.
  • Comparative biodistribution and dosimetry were performed in non-tumor-bearing athymic nude mice.
  • Micro-PET/CT imaging was conducted in mice bearing HER1-expressing human breast cancer xenografts.

Main Results:

  • (89)Zr-DFO-panitumumab was prepared with high radiochemical yield (>70%) and purity (>98%).
  • Biodistribution studies showed similar uptake patterns for both tracers in mice, with lymph node accumulation.
  • Immuno-PET imaging demonstrated high tumor uptake in HER1-expressing xenografts, correlating strongly with HER1 levels (R(2)=0.857).

Conclusions:

  • (89)Zr-DFO-panitumumab can be effectively prepared with high quality for immuno-PET imaging.
  • PET/CT imaging with (89)Zr-DFO-panitumumab accurately reflects HER1 expression levels in tumors.
  • Despite initial dosimetry suggesting low-dose use, high tumor uptake indicates potential clinical feasibility.

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