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Updated: Nov 17, 2025

In Vivo Inhibition of MicroRNA to Decrease Tumor Growth in Mice
Published on: August 23, 2019
miR-29b restrains cholangiocarcinoma progression by relieving DNMT3B-mediated repression of CDKN2B expression
Kun Cao1, Bo Li1, Ye-Wei Zhang1
1Department of Hepatobiliary Surgery, The Hospital Affiliated to Guizhou Medical University, Guiyang, Guizhou, P. R. of China.
Abstract:
Numerous studies have reported the important role of microRNAs (miRNAs) in human cancers. Although abnormal miR-29b expression has been linked to tumorigenesis in several cancers, its role in cholangiocarcinoma remains largely unknown. We found that miR-29b expression is frequently downregulated in human cholangiocarcinoma QBC939 cells and in clinical tumor samples. In cholangiocarcinoma patients, low miR-29b expression predicts poor overall survival. Overexpression of miR-29b in QBC939 cells inhibited proliferation, induced G1 phase cycle arrest, and promoted apoptosis. Methylation-specific PCR (MSP) analysis revealed a decreased methylation imprint at the promoter of the cell cycle inhibitor gene CDKN2B in cells overexpressing miR-29b. After identifying the DNA methyltransferase DNMT3B as a putative miR-29b target, luciferase reporter assays confirmed a suppressive effect of miR-29b on DNMT3B expression. Accordingly, we detected an inverse correlation between miR-29b and DNMT3B expression in clinical cholangiocarcinoma specimens. In QBC939 cells, DNMT3B overexpression promoted proliferation and inhibited apoptosis. DNMT3B silencing, in turn, led to increased CDKN2B expression. We also observed significant growth arrest in subcutaneous tumors formed in nude mice by QBC939 cells overexpressing miR-29b. These findings suggest miR-29b functions as a tumor suppressor in cholangiocarcinoma by relieving DNMT3B-mediated repression of CDKN2B expression.
Insights
MicroRNA 29b (miR-29b) acts as a tumor suppressor in cholangiocarcinoma. Its downregulation promotes cancer growth by increasing DNMT3B, which silences the CDKN2B gene, leading to poor patient survival.
Area of Science:
- Molecular Oncology
- Cancer Biology
Background:
- MicroRNAs (miRNAs) play crucial roles in human cancers.
- The function of miR-29b in cholangiocarcinoma (bile duct cancer) is largely uncharacterized.
Purpose of the Study:
- To investigate the role of miR-29b in cholangiocarcinoma development and progression.
- To elucidate the molecular mechanisms underlying miR-29b's function in this cancer.
Main Methods:
- Analysis of miR-29b expression in cholangiocarcinoma cell lines and patient samples.
- Functional assays including cell proliferation, cell cycle, and apoptosis studies.
- Methylation-specific PCR (MSP), luciferase reporter assays, and in vivo tumor growth experiments.
Main Results:
- miR-29b was frequently downregulated in cholangiocarcinoma, correlating with poor patient survival.
- Overexpression of miR-29b inhibited cell proliferation, induced cell cycle arrest, and promoted apoptosis.
- miR-29b suppressed DNMT3B expression, leading to decreased CDKN2B promoter methylation and increased CDKN2B expression.
- DNMT3B overexpression promoted proliferation and inhibited apoptosis, while its silencing increased CDKN2B expression.
Conclusions:
- miR-29b functions as a tumor suppressor in cholangiocarcinoma.
- Its tumor-suppressive role is mediated by inhibiting DNMT3B, which in turn reactivates the cell cycle inhibitor CDKN2B.
- Restoring miR-29b levels may represent a therapeutic strategy for cholangiocarcinoma.
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