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Updated: Jul 8, 2025

An Orthotopic Mouse Model of Anaplastic Thyroid Carcinoma
Published on: April 17, 2013
Utilizing CD44v6 and V600EBRAF-mutation for in vitro targeted combination therapy of thyroid carcinomas
A C L Mortensen1,2, J Imgenberg-Kreuz3, D Spiegelberg1,4
1Department of Immunology, Genetics and Pathology, Science for Life Laboratory, Uppsala University, Sweden.
Aim:
The aim of this study was to assess the feasibility of targeted therapy of thyroid carcinoma, first exploring potential targets BRAF, EGFR and CD44v6 in patient material through immunohistochemistry and mutation analysis.
Materials And Methods:
A patient cohort (n = 22) consisting of seven papillary (PTC), eight anaplastic (ATC) and seven follicular (FTC) thyroid carcinomas were evaluated. Additionally, eight thyroid carcinoma cells lines were analyzed for CD44v6-expression and sensitivity to the multi-kinase inhibitor sorafenib (Nexavar®), which targets numerous serine/threonine and tyrosine kinases, including the Raf family kinases. Targeted therapy using 131I-AbN44v6, a novel anti-CD44v6 antibody, and/or sorafenib was evaluated in 3D multicellular tumor spheroids.
Results:
Of the two cell surface proteins, EGFR and CD44v6, the latter was overexpressed in >80 % of samples, while EGFR-expression levels were moderate at best in only a few samples. BRAF mutations were more common in PTC patient samples than in ATC samples, while FTC samples did not harbor BRAF mutations. CD44v6-expression levels in the thyroid carcinoma cell lines were more heterogenous compared to patient samples, while BRAF mutational status was in line with the original tumor type. Monotherapy in 3D multicellular ATC tumor spheroids with either 131I-AbN44v6 or sorafenib resulted in delayed spheroid growth. The combination of 131I-AbN44v6 and sorafenib was the most potent and resulted in significantly impaired spheroid growth.
Conclusion:
This "proof of concept" targeted therapy study in the in vitro ATC 3D multicellular tumor spheroids indicated applicability of utilizing CD44v6 for molecular radiotherapy both as a monotherapy and in combination with sorafenib.
Insights
Targeted therapy using CD44v6 antibody and sorafenib shows promise for anaplastic thyroid carcinoma (ATC). Combination therapy significantly impaired tumor spheroid growth, indicating potential for molecular radiotherapy.
Area of Science:
- Oncology
- Molecular Biology
- Radiotherapy
Background:
- Thyroid carcinoma presents challenges for targeted therapy.
- Identifying specific molecular targets like BRAF, EGFR, and CD44v6 is crucial for treatment development.
- Existing therapies have limitations, necessitating novel approaches.
Purpose of the Study:
- To assess the feasibility of targeted therapy for thyroid carcinoma.
- To explore BRAF, EGFR, and CD44v6 as potential therapeutic targets.
- To evaluate the efficacy of novel targeted agents in preclinical models.
Main Methods:
- Immunohistochemistry and mutation analysis of patient tumor samples (n=22) and cell lines.
- Evaluation of CD44v6 expression and BRAF mutations in different thyroid carcinoma subtypes.
- Assessment of targeted therapy using 131I-AbN44v6 and sorafenib in 3D multicellular tumor spheroids.
Main Results:
- CD44v6 was overexpressed in >80% of thyroid carcinoma samples, while EGFR expression was limited.
- BRAF mutations were prevalent in papillary thyroid carcinoma but absent in follicular thyroid carcinoma.
- Combination therapy with 131I-AbN44v6 and sorafenib significantly inhibited anaplastic thyroid carcinoma spheroid growth.
Conclusions:
- CD44v6 is a promising target for molecular radiotherapy in anaplastic thyroid carcinoma.
- Targeted therapy utilizing CD44v6, both as monotherapy and in combination with sorafenib, demonstrates significant potential.
- This study provides a proof of concept for CD44v6-targeted molecular radiotherapy in vitro.
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