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1. Quantitative characterization of cell behaviors through cell cycle progression via automated cell tracking.

2. Prospects for Redifferentiating Agents in the Use of Radioactive Iodine Therapy for Thyroid Cancer

3. Two distinct E3 ligases, SCF(FBXL19) and HECW1, degrade thyroid transcription factor 1 in normal thyroid epithelial and follicular thyroid carcinoma cells, respectively

4. Inhibiting BRAF Oncogene-Mediated Radioresistance Effectively Radiosensitizes BRAF(V600E) Mutant Thyroid Cancer Cells by Constraining DNA Double-strand Break Repair

5. Sdhd ablation promotes thyroid tumorigenesis by inducing a stem-like phenotype

6. microRNA-339-5p modulates Na+/I− symporter-mediated radioiodide uptake

7. Modulation of Sodium Iodide Symporter in Thyroid Cancer

8. Quantitative Characterization of Cell Behaviors through Cell Cycle Progression via Automated Cell Tracking

9. MEK Inhibition Leads To Lysosome-Mediated Na+/I- Symporter Protein Degradation In Human Breast Cancer Cells

10. Microarray analysis of genes associated with cell surface NIS protein levels in breast cancer

11. Nuclear Envelope Irregularity Is Induced by RET/PTC During Interphase

12. Loss of p53 Promotes Anaplasia and Local Invasion in ret/PTC1-Induced Thyroid Carcinomas

13. Congenital hypothyroidism due to mutations in the sodium/iodide symporter. Identification of a nonsense mutation producing a downstream cryptic 3' splice site

15. MEK inhibition leads to lysosomemediated Na+/-K symporter protein degradation in human breast cancer cells.

16. Creation and Characterization of a Doxycycline-Inducible Mouse Model of Thyroid-Targeted RET/PTC1 Oncogene and Luciferase Reporter Gene Coexpression.

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