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Updated: Aug 27, 2025

An Orthotopic Murine Model of Human Prostate Cancer Metastasis
Published on: September 18, 2013
Metformin regulates multiple signaling pathways within castration-resistant human prostate cancer cells
Emuejevoke Olokpa1, Sammed N Mandape2, Siddharth Pratap2
1Department of Biochemistry, Cancer Biology, Neuroscience and Pharmacology, Meharry Medical College, 1005 Dr. D.B. Todd Jr. Blvd., Nashville, TN, 37208, USA.
Background:
The biguanide metformin has been shown to not only reduce circulating glucose levels but also suppress in vitro and in vivo growth of prostate cancer. However, the mechanisms underlying the anti-tumor effects of metformin in advanced prostate cancers are not fully understood. The goal of the present study was to define the signaling pathways regulated by metformin in androgen-receptor (AR) positive, castration-resistant prostate cancers.
Methods:
Our group used RNA sequencing (RNA-seq) to examine genes regulated by metformin within the C4-2 human prostate cancer cell line. Western blot analysis and quantitative RT-PCR were used to confirm alterations in gene expression and further explore regulation of protein expression by metformin.
Results:
Data from the RNA-seq analysis revealed that metformin alters the expression of genes products involved in metabolic pathways, the spliceosome, RNA transport, and protein processing within the endoplasmic reticulum. Gene products involved in ErbB, insulin, mTOR, TGF-β, MAPK, and Wnt signaling pathways are also regulated by metformin. A subset of metformin-regulated gene products were genes known to be direct transcriptional targets of p53 or AR. Western blot analyses and quantitative RT-PCR indicated these alterations in gene expression are due in part to metformin-induced reductions in AR mRNA and protein levels.
Conclusions:
Together, our results suggest metformin regulates multiple pathways linked to tumor growth and progression within advanced prostate cancer cells.
Insights
Metformin, a common diabetes drug, was found to regulate multiple pathways involved in advanced prostate cancer growth. This study clarifies how metformin impacts androgen receptor (AR) signaling and tumor progression.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Metformin reduces glucose and inhibits prostate cancer growth.
- Mechanisms of metformin's anti-tumor effects in advanced prostate cancer are not fully understood.
- Study focuses on androgen receptor (AR)-positive, castration-resistant prostate cancer.
Purpose of the Study:
- Define signaling pathways regulated by metformin.
- Investigate metformin's effects in advanced prostate cancer.
Main Methods:
- RNA sequencing (RNA-seq) on C4-2 human prostate cancer cells.
- Western blot analysis and quantitative RT-PCR to confirm gene and protein expression changes.
Main Results:
- Metformin alters genes in metabolic pathways, spliceosome, RNA transport, and ER protein processing.
- Metformin regulates ErbB, insulin, mTOR, TGF-β, MAPK, and Wnt signaling pathways.
- Metformin reduces AR mRNA and protein levels, impacting AR transcriptional targets.
Conclusions:
- Metformin influences multiple pathways crucial for advanced prostate cancer progression.
- Findings provide insight into metformin's therapeutic potential in prostate cancer.
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