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Updated: Feb 13, 2026

Spontaneous Murine Model of Anaplastic Thyroid Cancer
Published on: February 3, 2023
Src-mediated regulation of the PI3K pathway in advanced papillary and anaplastic thyroid cancer
Thomas C Beadnell1, Kelsey W Nassar2, Madison M Rose1
1Department of Medicine, Division of Endocrinology, Metabolism, and Diabetes, University of Colorado School of Medicine, Aurora, CO, 80045, USA.
Abstract:
Advanced stages of papillary and anaplastic thyroid cancer continue to be plagued by a dismal prognosis, which is a result of limited effective therapies for these cancers. Due to the high proportion of thyroid cancers harboring mutations in the MAPK pathway, the MAPK pathway has become a focal point for therapeutic intervention in thyroid cancer. Unfortunately, unlike melanoma, a similar responsiveness to MAPK pathway inhibition has yet to be observed in thyroid cancer patients. To address this issue, we have focused on targeting the non-receptor tyrosine kinase, Src, and we and others have demonstrated that targeting Src results in inhibition of growth, invasion, and migration both in vitro and in vivo, which can be enhanced through the combined inhibition of Src and the MAPK pathway. Therefore, we examined the efficacy of the combination therapy across a panel of thyroid cancer cell lines representing common oncogenic drivers (BRAF, RAS, and PIK3CA). Interestingly, combined inhibition of Src and the MAPK pathway overcomes intrinsic dasatinib resistance in cell lines where both the MAPK and PI3K pathways are inhibited, which we show is likely due to the regulation of the PI3K pathway by Src in these responsive cells. Interestingly, we have mapped downstream phosphorylation of rpS6 as a key biomarker of response, and cells that maintain rpS6 phosphorylation likely represent drug tolerant persisters. Altogether, the combined inhibition of Src and the MAPK pathway holds great promise for improving the overall survival of advanced thyroid cancer patients with BRAF and RAS mutations, and activation of the PI3K pathway and rpS6 phosphorylation represent important biomarkers of response for patients treated with this therapy.
Insights
Combined inhibition of Src and MAPK pathways shows promise for advanced thyroid cancer. This therapy overcomes resistance and identifies rpS6 phosphorylation as a key response biomarker for improved patient survival.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Advanced thyroid cancers (papillary, anaplastic) have poor prognoses due to limited therapies.
- MAPK pathway mutations are common in thyroid cancer, making it a therapeutic target, but clinical response is often limited.
- Src kinase inhibition shows anti-cancer effects, enhanced by combined MAPK pathway inhibition.
Purpose of the Study:
- To evaluate the efficacy of combined Src and MAPK pathway inhibition in thyroid cancer.
- To investigate if this combination therapy overcomes resistance in cell lines with common oncogenic drivers (BRAF, RAS, PIK3CA).
- To identify biomarkers for response to this combination therapy.
Main Methods:
- Tested combined Src and MAPK pathway inhibition in various thyroid cancer cell lines.
- Analyzed the role of Src in regulating the PI3K pathway in responsive cells.
- Assessed rpS6 phosphorylation as a potential biomarker of treatment response.
Main Results:
- Combined Src and MAPK inhibition overcomes dasatinib resistance in cell lines with MAPK and PI3K pathway co-inhibition.
- Src likely regulates the PI3K pathway in responsive thyroid cancer cells.
- rpS6 phosphorylation was identified as a key biomarker of response, with its persistence indicating drug-tolerant persisters.
Conclusions:
- Combined Src and MAPK pathway inhibition is a promising strategy for advanced thyroid cancer with BRAF and RAS mutations.
- PI3K pathway activation and rpS6 phosphorylation are crucial biomarkers for predicting response to this combination therapy.
- This approach may improve overall survival for patients with specific thyroid cancer mutations.
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