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Updated: Jun 28, 2025

An Orthotopic Murine Model of Human Prostate Cancer Metastasis
Published on: September 18, 2013
Knockdown of growth differentiation factor-15 restrains prostate cancer through regulating MAPK/ERK signaling pathway
Minggen Yang1, Miaolin Guo2, Chenqiang Su3
1Department of Urology, Zhangzhou Affiliated Hospital of Fujian Medical University, Zhangzhou 363000, Fujian, China. yangminggen@163.com.
Abstract:
Prostate cancer, prevalent among males, is influenced by various molecular factors, including Growth Differentiation Factor 15 (GDF15). Despite its recognized role in multiple tumor types, GDF15's specific involvement in prostate cancer remains insufficiently explored. This study investigates the regulatory function of GDF15 in prostate cancer. To explore GDF15's impact, we established GDF15 knockdown and overexpression models in prostate cancer cells. We quantified mRNA and protein levels using RT-PCR and Western blotting. Functional assays, including CCK8, Transwell, wound healing, and flow cytometry, were employed to evaluate cell proliferation, invasion, migration, and apoptosis. Additionally, the effect of GDF15 on tumor growth was assessed using a metastatic tumor model in nude mice. Elevated GDF15 expression was identified in prostate cancer tissues and cells. The knockdown of GDF15 led to the activation of the MAPK/ERK signaling pathway. C16PAF was found to counteract the inhibitory effects of sh-GDF15 on cell proliferation, invasion, migration, and apoptosis in LNCaP cells. It also reversed the sh-GDF15-induced alterations in the epithelial-mesenchymal transition (EMT) process. In vivo, C16PAF notably mitigated the sh-GDF15-induced suppression of tumor growth. The study demonstrated that sh-GDF15 inhibits cell proliferation, invasion, migration, EMT process, and tumor growth, while it promotes apoptosis. However, these effects were significantly reversed by C16PAF. The study underscores the potential of GDF15 as a target for novel therapeutic interventions in prostate cancer treatment and prevention. These findings illuminate GDF15's multifaceted role in prostate cancer pathogenesis and suggest its viability as a therapeutic target.
Insights
Growth Differentiation Factor 15 (GDF15) plays a key role in prostate cancer progression. Inhibiting GDF15 suppressed tumor growth, but C16PAF reversed these effects, highlighting GDF15 as a potential therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
Background:
- Prostate cancer is a common malignancy in males.
- Growth Differentiation Factor 15 (GDF15) is implicated in various cancers, but its role in prostate cancer is not well understood.
Purpose of the Study:
- To investigate the regulatory function of GDF15 in prostate cancer.
- To explore the therapeutic potential of targeting GDF15.
Main Methods:
- GDF15 knockdown and overexpression models were created in prostate cancer cells.
- RT-PCR, Western blotting, CCK8, Transwell, wound healing, and flow cytometry were used for analysis.
- A metastatic tumor model in nude mice was employed to assess in vivo tumor growth.
Main Results:
- Elevated GDF15 expression was observed in prostate cancer tissues and cells.
- GDF15 knockdown inhibited cell proliferation, invasion, migration, epithelial-mesenchymal transition (EMT), and tumor growth, while promoting apoptosis.
- C16PAF counteracted the effects of GDF15 knockdown, reversing the inhibition of tumor progression and EMT.
Conclusions:
- GDF15 significantly influences prostate cancer progression.
- C16PAF can reverse the anti-tumor effects induced by GDF15 inhibition.
- GDF15 represents a promising therapeutic target for prostate cancer treatment and prevention.
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