Related Experiment Video
Updated: Feb 13, 2026

Spontaneous Murine Model of Anaplastic Thyroid Cancer
Published on: February 3, 2023
Lenvatinib exhibits antineoplastic activity in anaplastic thyroid cancer in vitro and in vivo
Silvia Martina Ferrari1, Guido Bocci1, Teresa Di Desidero1
1Department of Clinical and Experimental Medicine, University of Pisa, I-56126 Pisa, Italy.
Abstract:
Lenvatinib is an oral, multitargeted tyrosine kinase inhibitor (TKI) of VEGFR1-VEGFR3, FGFR1-FGFR4, PDGFRα, RET and v-kit Hardy-Zuckerman 4 feline sarcoma viral oncogene homolog (KIT) signaling networks involved in tumor angiogenesis. We have evaluated the antitumor activity of lenvatinib in primary anaplastic thyroid cancer (ATC) cells, in the human cell line 8305C (undifferentiated thyroid cancer) and in an ATC-cell line (AF). The AF cell line was obtained from the primary ATC cultures and was the one that grew over 50 passages. The effect of lenvatinib (1 and 100 nM; and 1, 10, 25 and 50 µM) was investigated in primary ATC, 8305C and AF cells as well as in AF cells in CD nu/nu mice. Lenvatinib significantly reduced ATC cell proliferation (P<0.01, ANOVA) and increased the percentage of apoptotic ATC cells (P<0.001, ANOVA). Furthermore, lenvatinib inhibited migration (P<0.01) and invasion (P<0.001) in ATC. In addition, lenvatinib inhibited EGFR, AKT and ERK1/2 phosphorylation and downregulated cyclin D1 in the ATC cells. Lenvatinib also significantly inhibited 8305C and AF cell proliferation, increasing apoptosis. AF cells were subcutaneously injected into CD nu/nu mice and tumor masses were observed 20 days later. Tumor growth was significantly inhibited by lenvatinib (25 mg/kg/day), as well as the expression of VEGF-A and microvessel density in the AF tumor tissues. In conclusion, the antitumor and antiangiogenic activities of lenvatinib may be promising for the treatment of anaplastic thyroid cancer, and may consist a basis for future clinical therapeutic applications.
Insights
Lenvatinib, a targeted therapy, effectively reduced anaplastic thyroid cancer cell growth and promoted cell death. This drug also inhibited tumor growth and angiogenesis in preclinical models, showing promise for treating this aggressive cancer.
Area of Science:
- Oncology
- Pharmacology
Background:
- Anaplastic thyroid cancer (ATC) is an aggressive malignancy with limited treatment options.
- Lenvatinib is a multi-targeted tyrosine kinase inhibitor (TKI) with known anti-angiogenic properties.
Purpose of the Study:
- To evaluate the antitumor and anti-angiogenic effects of lenvatinib in preclinical models of anaplastic thyroid cancer.
Main Methods:
- In vitro studies using primary ATC cells, 8305C, and AF cell lines treated with varying concentrations of lenvatinib.
- In vivo studies involving subcutaneous injection of AF cells into CD-1 nu/nu mice, followed by lenvatinib treatment.
- Assessment of cell proliferation, apoptosis, migration, invasion, and key signaling pathway phosphorylation (EGFR, AKT, ERK1/2).
- Evaluation of tumor growth, VEGF-A expression, and microvessel density in treated mice.
Main Results:
- Lenvatinib significantly inhibited ATC cell proliferation and induced apoptosis in vitro (P<0.01).
- The drug suppressed migration and invasion capabilities of ATC cells (P<0.001).
- Lenvatinib treatment led to decreased phosphorylation of EGFR, AKT, and ERK1/2, and downregulated cyclin D1.
- In vivo, lenvatinib significantly inhibited tumor growth and reduced VEGF-A expression and microvessel density in AF tumor tissues.
Conclusions:
- Lenvatinib exhibits significant antitumor and anti-angiogenic activities against anaplastic thyroid cancer in preclinical settings.
- These findings support the potential of lenvatinib as a therapeutic agent for anaplastic thyroid cancer.
- Further clinical investigation of lenvatinib for ATC treatment is warranted.
Related Concept Videos
The Thyroid Gland
The follicles have a central cavity lined by simple cuboidal to squamous epithelial cells called follicular cells. These cells produce the glycoprotein...
Equivalence: In Vitro and In Vivo Bioequivalence
Functions of Thyroid Hormones
TH is indispensable for the normal development and maturation of the skeletal, muscular, and nervous systems during fetal and childhood growth. It facilitates bone mineral turnover and regulates protein synthesis in developing tissues, contributing significantly to overall growth and...
Co-activators and Co-repressors
Synthesis and Regulation of Thyroid Hormones
Upon reaching the thyroid gland, TSH stimulates the follicular cells' active uptake of iodide ions from the blood. The ions diffuse to the apical surface of the cells and are oxidized to iodine. The...
Drug Product Performance: In Vitro–In Vivo Correlation

