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Updated: Apr 23, 2026

Establishment and Characterization of Patient-Derived Xenograft Models of Anaplastic Thyroid Carcinoma and Head and Neck Squamous Cell Carcinoma
Published on: June 2, 2023
The evolving field of kinase inhibitors in thyroid cancer
V Marotta1, C Sciammarella1, M Vitale2
1Department of Clinical Medicine and Surgery, Section of Endocrinology, Federico II University of Naples, Italy.
Abstract:
Most of the genetic events implicated in the pathogenesis of thyroid cancer (TC) involve genes with kinase activity. Thus, kinase inhibitors (KIs) are very relevant in this field. KIs are considered the most suitable treatment for patients with iodine-refractory differentiated TC; these patients comprise the subgroup with the poorer prognosis. To date, only sorafenib has been approved for this indication, but promising results have been reported with several other KIs. In particular, lenvatinib has demonstrated excellent efficacy, with both progression-free survival and objective tumour response being better than with sorafenib. Despite being considered to be well tolerated, both sorafenib and lenvatinib have shown a remarkable toxicity, which has led to dose reductions in the majority of patients and to treatment discontinuation in a significant proportion of cases. The role of KIs in differentiated TC may be revolutionised by the finding that selumetinib may restore a clinical response to radioactive iodine (RAI). Vandetanib and cabozantinib have been approved for the treatment of advanced, progressive medullary TC (MTC). Nevertheless, the toxicity of both compounds suggests their selective use in those patients with strong disease progression. Treatment with the mTOR-inhibitor everolimus, alone or in combination with somatostatin analogues, should be studied in metastatic MTC patients with slow progression of disease, these representing the vast majority of patients. KIs did not significantly impact on the clinical features of anaplastic TC (ATC).
Insights
Kinase inhibitors (KIs) show promise for thyroid cancer (TC), particularly lenvatinib and selumetinib. While effective, KIs like sorafenib and lenvatinib have significant toxicities requiring dose adjustments or discontinuation.
Area of Science:
- Oncology
- Pharmacology
Background:
- Thyroid cancer (TC) pathogenesis often involves genes with kinase activity.
- Kinase inhibitors (KIs) are crucial for treating iodine-refractory differentiated TC, a subgroup with poor prognosis.
Purpose of the Study:
- To review the efficacy and toxicity of various kinase inhibitors (KIs) in different types of thyroid cancer.
- To highlight the potential of novel KIs and their impact on treatment strategies.
Main Methods:
- Review of current literature on kinase inhibitors in differentiated, medullary, and anaplastic thyroid cancer.
- Analysis of clinical trial data regarding efficacy, toxicity, and patient outcomes.
Main Results:
- Lenvatinib demonstrates superior efficacy over sorafenib in differentiated TC but shares significant toxicity.
- Selumetinib shows potential to restore radioactive iodine (RAI) response in differentiated TC.
- Vandetanib and cabozantinib are approved for advanced medullary TC (MTC) but have toxicity concerns.
- Everolimus warrants study in metastatic MTC with slow progression.
- KIs have shown limited impact on anaplastic TC (ATC).
Conclusions:
- Kinase inhibitors offer therapeutic options for differentiated and medullary thyroid cancer, but careful toxicity management is essential.
- Emerging KIs like lenvatinib and selumetinib present improved efficacy and novel therapeutic strategies, including potential RAI resensitization.
- Further research is needed to optimize KI use and manage toxicity in various TC subtypes.
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