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Updated: Jun 29, 2025

In Vivo Inhibition of MicroRNA to Decrease Tumor Growth in Mice
Published on: August 23, 2019
miR-331-5p Affects Motility of Thyroid Cancer Cell Lines and Regulates BID Expression
Francesca Maria Orlandella1,2, Esther Imperlini3, Katia Pane4
1Dipartimento delle Scienze Mediche, Motorie e del Benessere, Università degli Studi di Napoli "Parthenope", 80133 Naples, Italy.
Abstract:
During tumorigenesis, miRNAs with unbalanced expression profiles can increase the threat of disease progression. Here, we focus on the role of miR-331-5p in the pathogenesis of thyroid cancer (TC). In vitro studies were conducted using TC cell lines after the forced expression and silencing of miR-331-5p. Cell proliferation and viability were analyzed via cell counts and colorimetric assays. Cell motility was analyzed via wound healing assays, Transwell migration and invasion assays, and Matrigel Matrix assays. The putative targets of miR-331-5p were unveiled via label-free proteomic screening and then verified using Western blot and luciferase assays. Expression studies were conducted by interrogating The Cancer Genome Atlas (TCGA). We found that ectopic miR-331-5p expression reduces TC cell motility, while miR-331-5p silencing induces the opposite phenotype. Proteomic screening revealed eight putative downregulated targets of miR-331-5p, among which BID was confirmed as a direct target. TCGA data showed the downregulation of miR-331-5p and the upregulation of BID in TC tissues. In summary, deregulation of the miR-331-5p/BID axis could enhance the aggressiveness of TC cell lines, providing new insights into the mechanisms of the progression of this disease and suggesting a potential role of the component factors as possible biomarkers in TC tissues.
Insights
MicroRNA miR-331-5p suppresses thyroid cancer (TC) cell motility by targeting BID. Deregulation of this miR-331-5p/BID axis promotes TC aggressiveness, suggesting potential diagnostic biomarkers.
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- MicroRNAs (miRNAs) play crucial roles in tumorigenesis.
- Unbalanced miRNA expression can drive cancer progression.
- The specific role of miR-331-5p in thyroid cancer (TC) pathogenesis requires elucidation.
Purpose of the Study:
- To investigate the function of miR-331-5p in thyroid cancer cell behavior.
- To identify and validate the molecular targets of miR-331-5p in TC.
- To explore the clinical relevance of the miR-331-5p/BID axis in TC tissues.
Main Methods:
- In vitro studies using TC cell lines with forced miR-331-5p expression or silencing.
- Assays for cell proliferation, viability, motility, migration, and invasion.
- Label-free proteomic screening, Western blot, and luciferase assays for target validation.
- Analysis of The Cancer Genome Atlas (TCGA) data for expression profiling.
Main Results:
- Forced miR-331-5p expression reduced TC cell motility; silencing induced increased motility.
- Eight putative miR-331-5p targets were identified, with BID confirmed as a direct target.
- TCGA data revealed miR-331-5p downregulation and BID upregulation in TC tissues.
Conclusions:
- The miR-331-5p/BID axis significantly influences thyroid cancer cell aggressiveness.
- This axis offers novel insights into TC progression mechanisms.
- miR-331-5p and BID may serve as potential biomarkers for thyroid cancer.
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