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Updated: Dec 6, 2025

Analysis of Combinatorial miRNA Treatments to Regulate Cell Cycle and Angiogenesis
Published on: March 30, 2019
miR-20b-5p functions as tumor suppressor microRNA by targeting cyclinD1 in colon cancer
Hui Yang1, Jian Lin2, Jinling Jiang1
1Department of Oncology, Ruijin Hospital, Shanghai Jiaotong University School of Medicine , Shanghai, China.
Abstract:
MicroRNA functions as an oncogenic regulator or tumor suppressor in various human tumors. Although bioinformatics analysis suggested that miRNA-20b-5p may be associated with the tumorigenesis, its role in colon cancer remains elusive. To investigate the role of miRNA-20b-5p, HCT116 cell, a human colon cancer cell line used in therapeutic research and drug screenings, was chosen as a model system for our in vitro studies. We first carried out bioinformatics and microarray analysis. To gain further mechanism insight, flow cytometry was performed to determine cell apoptosis and cell cycle, and western blot or immunohistochemistry were employed to check the expression of CCND1/CDK/FOXM1 axis in HCT116 cells. In addition, wound-healing migration assay and transwell assay were conducted to uncover the effect of miR-20b-5p on tumor migration and invasion. Finally, we examined the role of miR-20b-5p by subcutaneous xenograft mouse models. Our data have shown that miRNA-20b-5p inhibited the cell cycle, migration, and invasion in HCT116 cells, but had no effect on cell apoptosis. CyclinD1 (CCND1) was identified as a direct target of miR-20b-5p. Overexpression of miRNA-20b-5p downregulated CCND1 level in HCT-116 cells. Mechanically, the inhibition of cell cycle, migration, and invasion of CC cells mediated by miRNA-20b-5p are through regulating the CCND1/CDK4/FOXM1 axis. Furthermore, miRNA-20b-5p inhibited the tumorigenesis in Balb/c nude mice CC xenograft models. Our data demonstrated that miR-20b-5p may serve as a tumor suppressor in colon cancer by negatively regulating CCND1, implying that miR-20b-5p could be a potential therapeutic target for the treatment of colon cancer.
Insights
MicroRNA-20b-5p acts as a tumor suppressor in colon cancer. It inhibits cell cycle, migration, and invasion by targeting CyclinD1 (CCND1) and regulating the CCND1/CDK4/FOXM1 axis.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- MicroRNAs (miRNAs) are crucial regulators in various human tumors, with roles as oncogenes or tumor suppressors.
- The specific function of miRNA-20b-5p in colon cancer pathogenesis remains largely uncharacterized despite bioinformatics predictions.
- Understanding miRNA-20b-5p's role is vital for developing novel therapeutic strategies against colon cancer.
Purpose of the Study:
- To elucidate the role of miRNA-20b-5p in colon cancer.
- To investigate the molecular mechanisms underlying miRNA-20b-5p's function in colon cancer cells.
- To evaluate miRNA-20b-5p as a potential therapeutic target for colon cancer treatment.
Main Methods:
- Utilized HCT116 human colon cancer cell line for in vitro studies.
- Performed bioinformatics analysis, microarray, flow cytometry, western blot, and immunohistochemistry.
- Conducted wound-healing migration, transwell assays, and subcutaneous xenograft mouse models.
Main Results:
- MicroRNA-20b-5p significantly inhibited cell cycle progression, migration, and invasion in HCT116 cells, without affecting apoptosis.
- CyclinD1 (CCND1) was identified as a direct target of miRNA-20b-5p, with its expression downregulated upon miRNA-20b-5p overexpression.
- MiRNA-20b-5p's inhibitory effects were mediated through the regulation of the CCND1/CDK4/FOXM1 axis, and it suppressed tumor growth in vivo.
Conclusions:
- MicroRNA-20b-5p functions as a tumor suppressor in colon cancer.
- The tumor-suppressive activity of miRNA-20b-5p is achieved by negatively regulating CCND1 and the CCND1/CDK4/FOXM1 signaling pathway.
- MiRNA-20b-5p represents a promising therapeutic target for colon cancer treatment.
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