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Updated: Jan 19, 2026

Spontaneous Murine Model of Anaplastic Thyroid Cancer
Published on: February 3, 2023
Molecular Alterations in Thyroid Cancer: From Bench to Clinical Practice
Elena Tirrò1,2, Federica Martorana2,3, Chiara Romano1,2
1Department of Clinical and Experimental Medicine, University of Catania, 95123 Catania, Italy.
Abstract:
Thyroid cancer comprises different clinical and histological entities. Whereas differentiated (DTCs) malignancies are sensitive to radioiodine therapy, anaplastic (ATCs) and medullary (MTCs) tumors do not uptake radioactive iodine and display aggressive features associated with a poor prognosis. Moreover, in a majority of DTCs, disease evolution leads to the progressive loss of iodine sensitivity. Hence, iodine-refractory DTCs, along with ATCs and MTCs, require alternative treatments reflective of their different tumor biology. In the last decade, the molecular mechanisms promoting thyroid cancer development and progression have been extensively studied. This has led to a better understanding of the genomic landscape, displayed by thyroid malignancies, and to the identification of novel therapeutic targets. Indeed, several pharmacological compounds have been developed for iodine-refractory tumors, with four multi-target tyrosine kinase inhibitors already available for DTCs (sorafenib and lenvatinib) and MTCs (cabozantib and vandetanib), and a plethora of drugs currently being evaluated in clinical trials. In this review, we will describe the genomic alterations and biological processes intertwined with thyroid cancer development, also providing a thorough overview of targeted drugs already tested or under investigation for these tumors. Furthermore, given the existing preclinical evidence, we will briefly discuss the potential role of immunotherapy as an additional therapeutic strategy for the treatment of thyroid cancer.
Insights
Targeted therapies and immunotherapy offer new hope for aggressive thyroid cancers. Research highlights genomic targets and drugs for differentiated, anaplastic, and medullary thyroid cancers, improving treatment strategies.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Thyroid cancer presents diverse histological types with varying radioiodine sensitivity.
- Differentiated thyroid cancers (DTCs) respond to radioiodine, unlike anaplastic (ATCs) and medullary (MTCs) types.
- Tumor progression often leads to radioiodine resistance in DTCs, necessitating alternative treatments.
Purpose of the Study:
- To review genomic alterations driving thyroid cancer development and progression.
- To provide an overview of targeted therapies for iodine-refractory thyroid cancers.
- To discuss the potential of immunotherapy in thyroid cancer treatment.
Main Methods:
- Literature review of genomic studies in thyroid cancer.
- Analysis of clinical trial data for targeted therapies.
- Evaluation of preclinical evidence for immunotherapy.
Main Results:
- Significant progress in understanding thyroid cancer genomics has identified novel therapeutic targets.
- Several multi-target tyrosine kinase inhibitors are approved or in trials for DTCs and MTCs.
- Immunotherapy shows preclinical promise as an additional treatment modality.
Conclusions:
- Targeted therapies represent a significant advancement for managing advanced thyroid cancers.
- Understanding tumor biology is crucial for developing effective, personalized treatment strategies.
- Future research should focus on integrating targeted therapies and immunotherapy for improved patient outcomes.
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