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An Orthotopic Mouse Model of Anaplastic Thyroid Carcinoma
Published on: April 17, 2013
Do Molecular Profiles of Primary Versus Metastatic Radioiodine Refractory Differentiated Thyroid Cancer Differ?
Cristiane J Gomes-Lima1,2,3, Leila Shobab2, Di Wu1,2
1Department of Internal Medicine, MedStar Clinical Research Center, MedStar Health Research Institute (MHRI), Washington, DC, United States.
Abstract:
Management of metastatic radioiodine refractory differentiated thyroid cancer (DTC) can be a therapeutic challenge. Generally, little is known about the paired molecular profile of the primary tumor and the metastases and whether they harbor the same genetic abnormalities. The present study compared the molecular profile of paired tumor specimens (primary tumor/metastatic sites) from patients with radioiodine refractory DTC in order to gain insight into a possible basis for resistance to radioiodine. Twelve patients with radioiodine refractory metastases were studied; median age at diagnosis of 61 years (range, 25-82). Nine patients had papillary TC (PTC), one had follicular TC (FTC), and two had Hürthle cell TC (HTC). Distant metastases were present in the lungs (n = 10), bones (n = 4), and liver (n = 1). The molecular profiling of paired tumors was performed with a panel of 592 genes for Next Generation Sequencing, RNA-sequencing, and immunohistochemistry. Digital microfluidic PCR was used to investigate TERT promoter mutations. The genetic landscape of all paired sites comprised BRAF, NRAS, HRAS, TP53, ATM, MUTYH, POLE, and NTRK genes, including BRAF and NTRK fusions. BRAF V600E was the most common point mutation in the paired specimens (5/12). TERT promoter mutation C228T was detected in one case. PD-L1 expression at metastatic sites was highly positive (95%) for one patient with HTC. All specimens were stable for microsatellite instability testing, and the tumor mutation burden was low to intermediate. Therefore, the molecular profile of DTC primary and metastatic lesions can show heterogeneity, which may help explain some altered responses to therapeutic intervention.
Insights
Comparing primary and metastatic differentiated thyroid cancer (DTC) tumors revealed molecular differences. This tumor heterogeneity may explain varied responses to radioiodine therapy in advanced DTC patients.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Differentiated thyroid cancer (DTC) that is metastatic and refractory to radioiodine presents significant treatment challenges.
- Understanding the molecular similarities and differences between primary tumors and their metastases is crucial for explaining therapeutic resistance.
Purpose of the Study:
- To compare the molecular profiles of paired primary and metastatic tumor specimens from patients with radioiodine-refractory DTC.
- To investigate potential genetic bases for radioiodine resistance in DTC.
- To identify actionable molecular targets in metastatic DTC.
Main Methods:
- Paired tumor specimens (primary/metastatic) from 12 patients with radioiodine-refractory DTC were analyzed.
- Comprehensive molecular profiling included Next-Generation Sequencing (592 genes), RNA-sequencing, immunohistochemistry, and digital microfluidic PCR for TERT promoter mutations.
- Analysis focused on common thyroid cancer genes, including BRAF, NRAS, TP53, and TERT promoter mutations.
Main Results:
- Significant molecular heterogeneity was observed between primary and metastatic lesions in DTC patients.
- BRAF V600E was the most frequent point mutation (5/12 patients).
- Commonly altered genes included BRAF, NRAS, TP53, and NTRK, with BRAF and NTRK fusions identified.
Conclusions:
- The molecular landscape of differentiated thyroid cancer can differ between primary and metastatic sites.
- This tumor heterogeneity may contribute to altered responses to radioiodine treatment and other therapies.
- Further research into paired tumor profiling is warranted for personalized DTC management.

