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Isolation and Characterization of a Head and Neck Squamous Cell Carcinoma Subpopulation Having Stem Cell Characteristics
Published on: May 11, 2016
Molecular profiles of cancer stem-like cell populations in aggressive thyroid cancers
Mariavittoria Dima1, Valeria Pecce1, Mauro Biffoni2
1Dipartimento di Medicina Interna e Specialità Mediche, Università di Roma "Sapienza", Rome, Italy.
Abstract:
A substantial proportion of patients with advanced thyroid carcinoma fail to respond to or at some point become refractory to conventional therapies. This resistance and the phenomena of thyroid cancer progression and metastasis themselves are thought to be related to tumor-cell sub-populations with stem-like properties. We isolated thyrospheres from four advanced thyroid carcinomas that were resistant to radioiodine therapy and analyzed their molecular profiles. ALDH activity and proteomic profile of main stem cell markers were used to assess stem cell properties. The TaqMan Low Density Array approach was used to evaluate the expression of several genes involved in the EMT process. The phosphorylation status of tyrosine kinase receptors (RTKs) was analyzed to identify potential markers for targeted therapies. We then investigated the effects of the EMT-inhibitor crizotinib on both cell proliferation and phosphorylation status of RTK targets. The cancer stem-like properties of a subset of cells from primary cultures of each tumor were demonstrated. A wide variability among thyrospheres arising from the four thyroid cancers in terms of ALDH activity, stem cell marker expression, and phosphoproteome profiling was present. Dysregulated expression of genes involved in the EMT was observed in all four thyrosphere lines. Treatment with crizotinib was ineffective in cancer stem-like cells, suggesting the presence of a mechanism of resistance in thyrospheres. Collectively, our data indicate that thyroid cancer stem-like populations vary markedly from tumor to tumor and require detailed molecular and biological characterization if they are to be used as the basis of "personalized" treatment of aggressive disease.
Insights
Thyroid cancer stem-like cells drive tumor progression and resistance to therapy. These cancer stem cells show significant variability, necessitating personalized treatment strategies for advanced thyroid carcinoma.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Stem Cell Research
Background:
- Advanced thyroid carcinoma often exhibits resistance to conventional therapies.
- Tumor progression and metastasis are linked to cancer stem-like cell populations.
- Radioiodine therapy resistance is a significant clinical challenge in advanced thyroid cancer.
Purpose of the Study:
- To characterize the molecular profiles of thyrospheres (thyroid cancer stem-like cells) from radioiodine-refractory tumors.
- To assess stem cell properties, epithelial-mesenchymal transition (EMT) gene expression, and receptor tyrosine kinase (RTK) phosphorylation.
- To evaluate the efficacy of the EMT inhibitor crizotinib against these cancer stem-like cells.
Main Methods:
- Isolation and culture of thyrospheres from four advanced thyroid carcinoma samples.
- Assessment of aldehyde dehydrogenase (ALDH) activity and stem cell marker expression.
- Proteomic profiling of RTK phosphorylation and TaqMan Low Density Array for EMT gene expression.
- In vitro treatment of thyrospheres with crizotinib.
Main Results:
- Thyrospheres demonstrated cancer stem-like properties with significant inter-tumor variability in ALDH activity, stem cell markers, and phosphoproteome.
- All thyrosphere lines exhibited dysregulated expression of EMT-related genes.
- Crizotinib treatment was ineffective against these cancer stem-like cells, indicating a resistance mechanism.
Conclusions:
- Thyroid cancer stem-like cell populations are heterogeneous and vary significantly between tumors.
- This heterogeneity poses a challenge for targeted therapies.
- Detailed molecular characterization of individual tumor stem-like populations is crucial for developing personalized treatment approaches for aggressive thyroid cancer.
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