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Updated: May 17, 2026

Spontaneous Murine Model of Anaplastic Thyroid Cancer
Published on: February 3, 2023
Antitumor effects of proteasome inhibition in anaplastic thyroid carcinoma
Annette Altmann1, Annette Markert, Vasileios Askoxylakis
1Department of Nuclear Medicine, University Hospital Heidelberg, Heidelberg, Germany. a.altmann@dkfz.de
Unlabelled:
The ubiquitin-proteasome pathway has been identified as a potential molecular target for cancer therapy. In this study, we investigated the effect of the proteasome inhibitor bortezomib on anaplastic thyroid carcinoma (ATC) characterized by complete refractoriness to multimodal therapeutic approaches.
Methods:
The ATC cell lines C643 and SW1736 were treated with bortezomib (1 nM to 1 μM) for 12-72 h. Thereafter, growth inhibition was analyzed by thymidine uptake experiments and determination of the viable cell number. Apoptosis was measured and a cell cycle analysis was done. Using gene chip analysis and the real-time quantitative PCR system, we measured transcriptional changes. The activity of the nuclear factor (NF)-κB and p53 signal transduction pathways was monitored using the reporter constructs pNF-κB-TA-Luc and pp53-TA-Luc in the luciferase activity assay. Uptake measurements using (3)H-FDG, (14)C-aminoisobutyric acid, and Na(125)iodide were performed to investigate metabolic changes and iodide symporter activity in vitro. Moreover, the (18)F-FDG uptake was evaluated in ATC tumor-bearing nude mice 1 or 2 d after treatment with bortezomib.
Results:
Bortezomib induced growth inhibition, apoptosis, and G(2)-M cell cycle arrest associated with upregulation of p21(CIP1/WAF1) expression in SW1736 and C643 cells. Moreover, the glucose metabolism and aminoisobutyric acid uptake significantly decreased in vitro in both of the ATC cell lines in vivo only in SW1736 tumors at 2 d after the bortezomib treatment. The transcriptional profile in bortezomib-treated SW1736 and C643 cells revealed increased expression of genes involved in stress response, apoptosis, regulation of the cell cycle, and differentiation. Using real-time quantitative PCR for the quantification of gene expression, we additionally noticed upregulation of the tumor necrosis factor-related apoptosis-inducing ligand and the thyroid-specific transcription factors Pax8 and TTF-1, leading to expression of the thyroid-specific target genes thyroglobulin, sodium iodide symporter, thyroperoxidase, and thyroid-stimulating hormone receptor and to a moderate accumulation of iodide in ATC cells.
Conclusion:
On the basis of our data, bortezomib represents a promising antineoplastic agent for the treatment of ATC. To improve the clinical outcome, further investigation into the potential of bortezomib therapy of thyroid cancer is clearly warranted.
Insights
The proteasome inhibitor bortezomib shows promise in treating anaplastic thyroid carcinoma (ATC) by inhibiting growth and inducing apoptosis. Further research is warranted to explore bortezomib therapy for thyroid cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- The ubiquitin-proteasome pathway is a key target in cancer therapy.
- Anaplastic thyroid carcinoma (ATC) is notoriously resistant to conventional treatments.
Purpose of the Study:
- To investigate the efficacy of bortezomib, a proteasome inhibitor, against anaplastic thyroid carcinoma (ATC).
- To analyze the molecular mechanisms underlying bortezomib's effects on ATC cell lines.
Main Methods:
- Treatment of ATC cell lines (C643, SW1736) with bortezomib.
- Assessment of cell growth, apoptosis, and cell cycle progression.
- Gene expression profiling using gene chips and quantitative PCR.
- Monitoring of NF-κB and p53 signaling pathways.
- In vitro and in vivo metabolic and iodide uptake studies.
Main Results:
- Bortezomib induced significant growth inhibition, apoptosis, and G2-M cell cycle arrest in ATC cells.
- Decreased glucose and amino acid uptake observed in vitro and in vivo.
- Upregulation of genes related to stress response, apoptosis, cell cycle regulation, and differentiation.
- Increased expression of thyroid-specific genes and transcription factors, leading to iodide accumulation.
Conclusions:
- Bortezomib demonstrates potential as an antineoplastic agent for ATC.
- Further investigation into bortezomib therapy for thyroid cancer is recommended to improve clinical outcomes.
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