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Updated: Jan 2, 2026

An Orthotopic Mouse Model of Anaplastic Thyroid Carcinoma
Published on: April 17, 2013
HER2-targeted multimodal imaging of anaplastic thyroid cancer
Weijun Wei1,2, Dawei Jiang2, Zachary T Rosenkrans3
1Department of Nuclear Medicine, Shanghai Jiao Tong University Affiliated Sixth People's Hospital 600 Yishan Road, Shanghai 200233, China.
Abstract:
Clinical management of anaplastic thyroid cancer (ATC) is very challenging due to its dedifferentiation and aggressiveness. We aim to develop HER2-targeted multimodal imaging approaches and assess the diagnostic efficacies of these molecular imaging probes in preclinical ATC models. Flow cytometry was used to detect HER2 expression status in thyroid cancer cell lines. We then developed a HER2-specific immunoPET imaging probe 89Zr-Df-pertuzumab by radiolabeling a HER-2 specific monoclonal antibody (mAb) pertuzumab with 89Zr (t1/2=78.4 h) and a fluorescent imaging probe IRDye 800CW-pertuzumab. The diagnostic efficacies of the probes were assessed in subcutaneous and orthotopic ATC models, followed by ex vivo biodistribution profile and immunofluorescence staining studies. HER2 was highly expressed on the surface of all the four primary thyroid cancer cell lines examined, which included two ATC cell lines (i.e., 8505C and THJ-16T). PET imaging with 89Zr-Df-pertuzumab clearly visualized all the subcutaneous ATCs with a peak tumor uptake of 20.23±6.44 %ID/g (n=3), whereas the highest tumor uptake of the nonspecific probe 89Zr-Df-IgG in subcutaneous ATC models was 6.30±0.95 %ID/g (n=3). More importantly, 89Zr-Df-pertuzumab PET imaging strategy readily delineated all the orthotopic ATCs with a peak tumor uptake of 24.93±8.53 %ID/g (n=3). We also suggested that Cerenkov luminescence imaging (CLI) using 89Zr-Df-pertuzumab and fluorescence imaging using IRDye 800CW-pertuzumab are useful tools for image-guided removal of ATCs. We demonstrate that HER2 is a promising biomarker for ATC, and multimodal imaging using 89Zr-Df-pertuzumab and IRDye 800CW-pertuzumab is useful for identifying HER2-postive ATCs.
Insights
Anaplastic thyroid cancer (ATC) is aggressive, but HER2 is a promising biomarker. Multimodal imaging with 89Zr-Df-pertuzumab and IRDye 800CW-pertuzumab effectively identifies HER2-positive ATCs in preclinical models.
Area of Science:
- Oncology
- Molecular Imaging
- Radiochemistry
Background:
- Anaplastic thyroid cancer (ATC) presents significant clinical challenges due to its aggressive nature and dedifferentiation.
- Targeting human epidermal growth factor receptor 2 (HER2) offers a potential therapeutic and diagnostic avenue for ATC.
Purpose of the Study:
- To develop and evaluate HER2-targeted multimodal imaging probes for diagnosing ATC.
- To assess the diagnostic efficacy of these molecular imaging probes in preclinical ATC models.
Main Methods:
- HER2 expression was analyzed in thyroid cancer cell lines using flow cytometry.
- HER2-specific immunoPET (89Zr-Df-pertuzumab) and fluorescence (IRDye 800CW-pertuzumab) imaging probes were developed.
- Diagnostic efficacy was evaluated in subcutaneous and orthotopic ATC models, followed by biodistribution and immunofluorescence studies.
Main Results:
- High HER2 expression was confirmed on four primary thyroid cancer cell lines, including two ATC lines.
- 89Zr-Df-pertuzumab PET imaging successfully visualized both subcutaneous and orthotopic ATCs, with significantly higher tumor uptake compared to a nonspecific probe.
- Cerenkov luminescence imaging (CLI) and fluorescence imaging demonstrated utility for image-guided ATC removal.
Conclusions:
- HER2 is a viable biomarker for anaplastic thyroid cancer.
- Multimodal imaging strategies utilizing 89Zr-Df-pertuzumab and IRDye 800CW-pertuzumab are effective for identifying HER2-positive ATCs.

