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Risk Haplotypes Uniquely Associated with Radioiodine-Refractory Thyroid Cancer Patients of High African Ancestry.
Thyroid. 2019 Apr;29(4):530-539. doi: 10.1089/thy.2018.0687. Epub 2019 Feb 13.
3
Noninferior response in BRAF(V600E) mutant nonmetastatic papillary thyroid carcinoma to radioiodine therapy.
Eur J Nucl Med Mol Imaging. 2016 Jun;43(6):1034-9. doi: 10.1007/s00259-015-3305-1. Epub 2016 Jan 16.
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TERT Promoter Mutation Predicts Radioiodine-Refractory Character in Distant Metastatic Differentiated Thyroid Cancer.
J Nucl Med. 2017 Feb;58(2):258-265. doi: 10.2967/jnumed.116.180240. Epub 2016 Aug 4.
8
Clinical outcomes and molecular profile of differentiated thyroid cancers with radioiodine-avid distant metastases.
J Clin Endocrinol Metab. 2013 May;98(5):E829-36. doi: 10.1210/jc.2012-3933. Epub 2013 Mar 26.
9
The genetic duet of BRAF V600E and TERT promoter mutations predicts the poor curative effect of radioiodine therapy in papillary thyroid cancer.
Eur J Nucl Med Mol Imaging. 2022 Aug;49(10):3470-3481. doi: 10.1007/s00259-022-05820-x. Epub 2022 May 2.
10
Redifferentiation of iodine-refractory BRAF V600E-mutant metastatic papillary thyroid cancer with dabrafenib.
Clin Cancer Res. 2015 Mar 1;21(5):1028-35. doi: 10.1158/1078-0432.CCR-14-2915. Epub 2014 Dec 30.

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High risk factors, molecular features and clinical management for radioactive iodine-refractory differentiated thyroid carcinoma.
Front Oncol. 2025 Aug 25;15:1644562. doi: 10.3389/fonc.2025.1644562. eCollection 2025.
2
Somatic mutations in the TG and RELA genes specific for radioiodine-refractory thyroid cancer.
Sci Rep. 2025 Jul 2;15(1):22894. doi: 10.1038/s41598-025-05605-w.
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Targeting ferroptosis: a novel insight into thyroid cancer therapy.
Front Endocrinol (Lausanne). 2025 Jun 3;16:1527693. doi: 10.3389/fendo.2025.1527693. eCollection 2025.
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A prognostic nomogram for distant metastasis in thyroid cancer patients without lymph node metastasis.
Front Endocrinol (Lausanne). 2025 Feb 17;16:1523785. doi: 10.3389/fendo.2025.1523785. eCollection 2025.
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Integrative analysis of 5-methylcytosine associated signature in papillary thyroid cancer.
Sci Rep. 2025 Feb 5;15(1):4405. doi: 10.1038/s41598-025-88657-2.
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Current status of the prediction for radio-iodine refractory thyroid cancer: a narrative review.
Front Endocrinol (Lausanne). 2024 Oct 15;15:1433553. doi: 10.3389/fendo.2024.1433553. eCollection 2024.
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Radioactive iodine refractoriness in Middle Eastern differentiated thyroid cancer: clinical outcome and risk factor analysis.
Front Endocrinol (Lausanne). 2024 May 15;15:1326976. doi: 10.3389/fendo.2024.1326976. eCollection 2024.
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Presumed Pathogenic Germ Line and Somatic Variants in African American Thyroid Cancer.
Thyroid. 2024 Mar;34(3):378-387. doi: 10.1089/thy.2023.0487. Epub 2024 Jan 18.
10
Role of ST6GAL1 in Thyroid Cancers: Insights from Tissue Analysis and Genomic Datasets.
Int J Mol Sci. 2023 Nov 15;24(22):16334. doi: 10.3390/ijms242216334.

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2
Vemurafenib Redifferentiation of BRAF Mutant, RAI-Refractory Thyroid Cancers.
J Clin Endocrinol Metab. 2019 May 1;104(5):1417-1428. doi: 10.1210/jc.2018-01478.
3
Radiation biology and oncology in the genomic era.
Br J Radiol. 2018 Nov;91(1091):20170949. doi: 10.1259/bjr.20170949. Epub 2018 Jun 14.
4
Genetic Analysis of 779 Advanced Differentiated and Anaplastic Thyroid Cancers.
Clin Cancer Res. 2018 Jul 1;24(13):3059-3068. doi: 10.1158/1078-0432.CCR-18-0373. Epub 2018 Apr 3.
5
Racial Disparities in the Molecular Landscape of Cancer.
Anticancer Res. 2018 Apr;38(4):2235-2240. doi: 10.21873/anticanres.12466.
7
Updates on the Management of Advanced, Metastatic, and Radioiodine Refractory Differentiated Thyroid Cancer.
Front Endocrinol (Lausanne). 2017 Nov 20;8:312. doi: 10.3389/fendo.2017.00312. eCollection 2017.
9
AACR Project GENIE: Powering Precision Medicine through an International Consortium.
Cancer Discov. 2017 Aug;7(8):818-831. doi: 10.1158/2159-8290.CD-17-0151. Epub 2017 Jun 1.
10
A genome-wide association study yields five novel thyroid cancer risk loci.
Nat Commun. 2017 Feb 14;8:14517. doi: 10.1038/ncomms14517.

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