PET of EGFR antibody distribution in head and neck squamous cell carcinoma models

Gang Niu1, Zibo Li, Jin Xie

  • 1Molecular Imaging Program at Stanford (MIPS), Department of Radiology and Bio-X Program, Stanford University School of Medicine, Stanford, California 94305-5484, USA.

Abstract

Insights

Tumor vascularity, not just EGFR levels, impacts antibody delivery. This study used PET imaging to show that low vessel density and permeability limit anti-EGFR antibody uptake in head and neck cancers.

Area of Science:

  • Oncology
  • Radiochemistry
  • Immunotherapy

Background:

  • Epidermal growth factor receptor (EGFR) is a protooncogene driving tumor progression in solid cancers.
  • Clinical efficacy of EGFR-targeting monoclonal antibodies (mAbs) like cetuximab and panitumumab varies, independent of EGFR expression levels.
  • Understanding in vivo antibody delivery and localization is crucial for optimizing anti-EGFR therapies.

Purpose of the Study:

  • To investigate the in vivo kinetics of antibody delivery and localization using positron emission tomography (PET).
  • To assess the impact of tumor characteristics on the accumulation of (64)Cu-labeled panitumumab in human head and neck squamous cell carcinoma (HNSCC) xenografts.

Main Methods:

  • Small-animal PET imaging of nude mice bearing HNSCC xenografts with varying EGFR expression levels using (64)Cu-DOTA-panitumumab.
  • Ex vivo immunostaining with panitumumab and fluorescein isothiocyanate (FITC)-panitumumab to confirm antibody distribution.
  • CD31 immunostaining and Evans blue assay to evaluate tumor vascular density and permeability.

Main Results:

  • UM-SCC-22B tumors with low EGFR expression showed the highest (64)Cu-DOTA-panitumumab accumulation.
  • SQB20 tumors with high EGFR expression exhibited the lowest antibody accumulation, despite high EGFR levels on cells.
  • Low tumor uptake in high-EGFR SQB20 tumors was attributed to poor vascularization, reduced permeability, and binding site barriers.

Conclusions:

  • Tumor vascular density and permeability, rather than solely EGFR expression, influence anti-EGFR mAb uptake.
  • These findings offer a potential explanation for the variable clinical efficacy of cetuximab and panitumumab in HNSCC.
  • This research may inform strategies for improving anti-EGFR mAb therapy in HNSCC and other malignancies.

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