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Spontaneous Murine Model of Anaplastic Thyroid Cancer
Published on: February 3, 2023
Targeted Therapy of Papillary Thyroid Cancer: A Comprehensive Genomic Analysis
Daniel A Hescheler1,2, Burkhard Riemann1, Milan J M Hartmann3
1Department of Nuclear Medicine, University Hospital Münster, Münster, Germany.
Background:
A limited number of targeted therapy options exist for papillary thyroid cancer (PTC) to date. Based on genetic alterations reported by the "The Cancer Genome Atlas (TCGA)", we explored whether PTC shows alterations that may be targetable by drugs approved by the FDA for other solid cancers.
Methods:
Databases of the National Cancer Institute and MyCancerGenome were screened to identify FDA-approved drugs for targeted therapy. Target genes were identified using Drugbank. Genetic alterations were classified into conferring drug sensitivity or resistance using MyCancerGenome, CiViC, TARGET, and OncoKB. Genomic data for PTC were extracted from TCGA and mined for alterations predicting drug response.
Results:
A total of 129 FDA-approved drugs with 128 targetable genes were identified. One hundred ninety-six (70%) of 282 classic, 21 (25%) of 84 follicular, and all 30 tall-cell variant PTCs harbored druggable alterations: 259 occurred in 29, 39 in 19, and 31 in 2 targetable genes, respectively. The BRAF V600 mutation was seen in 68% of classic, 16% of follicular variant, and 93% of tall-cell variant PTCs. The RET gene fusion was seen in 8% of classic PTCs, NTRK1 and 3 gene fusions in 3%, and other alterations in <2% of classic variant PTCs. Ninety-nine of 128 (77%) FDA-approved targetable genes did not show any genetic alteration in PTC. Beside selective and non-selective BRAF-inhibitors, no other FDA-approved drug showed any frequent predicted drug sensitivity (<10%).
Conclusion:
Treatment strategies need to focus on resistance mechanisms to BRAF inhibition and on genetic alteration-independent alternatives rather than on current targeted drugs.
Insights
Targeted therapy options for papillary thyroid cancer (PTC) are limited. This study found few FDA-approved drugs target PTC genetic alterations, suggesting new treatment strategies are needed beyond current targeted therapies.
Area of Science:
- Oncology
- Genomics
- Pharmacology
Background:
- Papillary thyroid cancer (PTC) has limited targeted therapy options.
- Genetic alterations in PTC may be targetable by existing FDA-approved drugs for other cancers.
Purpose of the Study:
- To identify FDA-approved drugs that target genetic alterations in papillary thyroid cancer.
- To assess the prevalence of druggable genetic alterations in various PTC subtypes.
Main Methods:
- Screened cancer databases for FDA-approved targeted therapies and their target genes.
- Analyzed The Cancer Genome Atlas (TCGA) genomic data for PTC alterations predicting drug response.
- Classified genetic alterations for drug sensitivity or resistance using multiple databases.
Main Results:
- Identified 129 FDA-approved drugs targeting 128 genes; 70% of classic PTC, 25% of follicular PTC, and 100% of tall-cell PTC had druggable alterations.
- BRAF V600 mutation was prevalent (68% classic, 16% follicular, 93% tall-cell).
- Only BRAF inhibitors showed frequent predicted drug sensitivity (<10%); most targetable genes lacked alterations in PTC.
Conclusions:
- Current FDA-approved targeted drugs have limited applicability in papillary thyroid cancer.
- Future treatment strategies should address BRAF inhibition resistance and explore genetic alteration-independent alternatives.
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