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Updated: Feb 7, 2026

An Orthotopic Mouse Model of Anaplastic Thyroid Carcinoma
Published on: April 17, 2013
LncRNA MEG3 enhances 131I sensitivity in thyroid carcinoma via sponging miR-182
Background:
Long non-coding RNA (LncRNA) MEG3 has been demonstrated as a tumor suppressor in various cancers, including thyroid carcinoma (TC). However, the detail functions and possible mechanisms of MEG3 in 131I resistance of TC remain to be uncovered.
Methods:
qRT-PCR was performed for the detection of MEG3 and miR-182 levels. 131I-resistant TC cells were constructed by continuous exposure to stepwise increased concentrations of 131I. Western blot assay was used to measure the protein expressions of γ-H2 AX and H2 AX. CCK-8 and flow cytometry assays were carried out for the evaluation of cell viability and apoptosis, respectively. Bioinformatics and dual-luciferse assays were conducted to prove the interaction of MEG3 and miR-182.
Results:
MEG3 expression was down-regulated in TC tumor tissues, and the cumulative survival rate was decreased in low MEG3 expression group in TC patients under 131I treatment. MEG3 expression appeared a decline and miR-182 expression displayed an increase in 131I-resistant FTC-133 (res-FTC-133) and TPC-1 (res-TPC-1) cells. Moreover, MEG3 overexpression suppressed 131I-resistant cell viability, promoted apoptosis and induced DNA damage. MEG3 was verified as a molecular sponge for miR-182, and inhibition of miR-182 exerted similar functions as MEG3 overexpression. Furthermore, MEG3 knockdown substantially abrogated the anti-cancer functions of anti-miR-182.
Conclusions:
MEG3 enhanced the radiosensitivity of 131I in TC cells via sponging miR-182, indicating that MEG3 may act as a potential biomarker and therapeutic target for TC patients with 131I resistance.
Insights
Long non-coding RNA MEG3 suppresses tumor growth in thyroid carcinoma (TC). This study reveals MEG3 enhances 131I radiosensitivity by targeting miR-182, offering a new therapeutic strategy for 131I-resistant TC.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- Long non-coding RNA (LncRNA) MEG3 functions as a tumor suppressor in various cancers, including thyroid carcinoma (TC).
- The precise role and mechanisms of MEG3 in 131I resistance in TC are not fully understood.
Purpose of the Study:
- To investigate the function and mechanism of LncRNA MEG3 in 131I resistance in thyroid carcinoma.
- To explore the potential of MEG3 as a therapeutic target for overcoming 131I resistance in TC.
Main Methods:
- Quantitative reverse transcription PCR (qRT-PCR) for MEG3 and miR-182 expression analysis.
- Establishment of 131I-resistant TC cell lines (res-FTC-133 and res-TPC-1).
- Western blot for DNA damage markers (γ-H2AX, H2AX), CCK-8 for cell viability, and flow cytometry for apoptosis. Bioinformatics and dual-luciferase assays to confirm MEG3-miR-182 interaction.
Main Results:
- MEG3 expression was significantly downregulated in TC tissues and correlated with decreased survival under 131I treatment.
- 131I-resistant cells exhibited reduced MEG3 and increased miR-182 levels.
- MEG3 overexpression decreased viability, enhanced apoptosis, and induced DNA damage in resistant cells, acting as a molecular sponge for miR-182. Inhibition of miR-182 mimicked MEG3's effects, while MEG3 knockdown reversed anti-miR-182 efficacy.
Conclusions:
- MEG3 enhances 131I radiosensitivity in TC cells by sponging miR-182.
- MEG3 represents a promising biomarker and therapeutic target for managing 131I resistance in thyroid carcinoma patients.
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