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PET of EGFR antibody distribution in head and neck squamous cell carcinoma models
1Molecular Imaging Program at Stanford (MIPS), Department of Radiology and Bio-X Program, Stanford University School of Medicine, Stanford, California 94305-5484, USA.
Unlabelled:
Epidermal growth factor receptor (EGFR) is a well-characterized protooncogene that has been shown to promote tumor progression in solid cancers. Clinical results for EGFR targeting with specific monoclonal antibodies (mAbs) such as cetuximab and panitumumab are promising; however, most studies indicate that only a subgroup of patients receiving the mAbs benefit from the immunotherapy, independent of EGFR expression level. To understand the in vivo kinetics of antibody delivery and localization, we performed small-animal PET studies with (64)Cu-labeled panitumumab in xenografts derived from 3 cell lines of human head and neck squamous cell carcinoma (HNSCC).
Methods:
Nude mice bearing HNSCC tumors with different levels of EGFR expression were imaged with small-animal PET using (64)Cu-1,4,7,10-tetraazacyclododecane-N,N',N'',N'''-tetraacetic acid (DOTA)-panitumumab. Antibody distribution in the tumors was confirmed by ex vivo immunostaining using panitumumab and fluorescein 5(6)-isothiocyanate (FITC) panitumumab. CD31 immunostaining and Evans blue assay were also performed to assess the tumor vascular density and permeability.
Results:
Among these 3 tumor models, UM-SCC-22B tumors with the lowest EGFR protein expression showed the highest (64)Cu-DOTA-panitumumab accumulation, whereas SQB20 tumors with the highest EGFR expression showed the lowest (64)Cu-DOTA-panitumumab accumulation. Ex vivo staining demonstrated that SQB20 cells still had extremely high EGFR expression after forming tumors in nude mice, indicating that the low uptake of (64)Cu-DOTA-panitumumab in SQB20 tumors was not due to the loss of EGFR expression. The results from CD31 immunostaining and Evans blue permeability assay suggest that the low vessel density, poor vascular permeability, and binding site barrier are likely responsible for the overall low tumor uptake of the highly EGFR-expressing SQB20 tumors.
Conclusion:
The results from this study provide a possible explanation for the lack of an observed correlation between therapeutic efficacy of cetuximab and panitumumab and EGFR expression level as determined by immunohistochemistry or fluorescent in situ hybridization and may shed new light on the complications of anti-EGFR mAb therapy for HNSCC and other malignancies.
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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