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Updated: Oct 28, 2025

MicroRNA Detection in Prostate Tumors by Quantitative Real-time PCR qPCR
Published on: May 16, 2012
Circular RNA-DPP4 serves an oncogenic role in prostate cancer progression through regulating miR-195/cyclin D1 axis
Deping Yang1, Bo Yang2, Yanjun Zhu3
1Department of Laboratory Medicine, Shanghai University of Medicine & Health Sciences Affiliated Zhoupu Hospital, Shanghai, 201318, China.
Background:
Recently, more and more studies have highlighted the critical regulatory roles of circular RNAs (circRNAs), a class of non-coding RNAs, in the progression of many human cancers, including prostate cancer (PCa). circRNA microarray analysis was performed to identify circRNAs that are differentially expressed in PCa tissues.
Methods:
104 pairs of PCa tissues and matched adjacent normal prostate tissues (at least 2 cm distal to the tumor margin) were obtained. circRNA microarray analysis was performed on four pairs of PCa tissues and matched adjacent normal prostate tissues to investigate the potential involvement of circRNAs in PCa. Flow cytometric analysis was performed to investigate whether the effect of circDPP4 on PCa cell proliferation was associated with the alteration in cell cycle progression. The role of circDPP4 in PCa tumor growth was further explored in vivo.
Results:
We found that circDPP4 was overexpressed in PCa tissues and cell lines, and its expression was closely associated with Gleason score and clinical stage of PCa patients. In vitro loss- and gain-of-function experiments demonstrated that circDPP4 knockdown inhibited, whereas circDPP4 overexpression promoted the proliferation, migration, invasion and cell cycle progression of PCa cells. Knockdown of circDPP4 also suppressed PCa tumor growth in vivo. We further found that circDPP4 functioned as a competing endogenous RNA (ceRNA) for miR-195 in PCa cells, and miR-195 negatively regulated the expression of oncogenic cyclin D1. Rescue experiments suggested that restoration of miR-195 blocked the oncogenic role of circDPP4 in PCa cells.
Conclusions:
Taken together, our findings revealed a novel regulatory mechanism between circDPP4 and miR-195/cyclin D1 axis, and offered novel strategies for the treatment of PCa.
Insights
Circular RNA DPP4 (circDPP4) promotes prostate cancer (PCa) progression by regulating the miR-195/cyclin D1 axis. Inhibiting circDPP4 offers a potential therapeutic strategy for PCa treatment.
Area of Science:
- Oncology
- Molecular Biology
- RNA Biology
Background:
- Circular RNAs (circRNAs) are increasingly recognized for their regulatory roles in human cancers.
- Prostate cancer (PCa) progression is influenced by non-coding RNAs, including circRNAs.
- Identifying differentially expressed circRNAs in PCa is crucial for understanding disease mechanisms.
Purpose of the Study:
- To identify differentially expressed circRNAs in prostate cancer (PCa) tissues.
- To investigate the role of circDPP4 in PCa cell proliferation, migration, and invasion.
- To elucidate the regulatory mechanism of circDPP4 in PCa via the competing endogenous RNA (ceRNA) network.
Main Methods:
- circRNA microarray analysis of PCa tissues and adjacent normal tissues.
- In vitro loss- and gain-of-function experiments on PCa cell lines.
- Flow cytometry to assess cell cycle progression.
- In vivo studies to evaluate circDPP4's role in tumor growth.
- ceRNA network analysis involving circDPP4, miR-195, and cyclin D1.
Main Results:
- circDPP4 was significantly overexpressed in PCa tissues and cell lines, correlating with Gleason score and clinical stage.
- circDPP4 knockdown inhibited PCa cell proliferation, migration, invasion, and cell cycle progression.
- circDPP4 overexpression promoted PCa cell growth and tumor development in vivo.
- circDPP4 acts as a ceRNA for miR-195, which negatively regulates the oncogenic cyclin D1.
- Restoration of miR-195 counteracted the oncogenic effects of circDPP4 in PCa.
Conclusions:
- circDPP4 plays a critical oncogenic role in prostate cancer progression.
- A novel regulatory axis involving circDPP4, miR-195, and cyclin D1 was identified in PCa.
- circDPP4 represents a potential therapeutic target for prostate cancer treatment.
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