Related Experiment Video
Updated: Mar 23, 2026

Murine Prostate Micro-dissection and Surgical Castration
Published on: May 11, 2016
Role of the TNF-α receptor type 1 on prostate carcinogenesis in knockout mice
Maria Raquel Unterkircher Galheigo1, Amanda Rodrigues Cruz1, Ágata Silva Cabral1
1Histology Sector, Institute of Biomedical Sciences (ICBIM), Federal University of Uberlândia (UFU), Uberlândia, MG, Brazil.
Background:
TNF-α is a key cytokine involved in prostate carcinogenesis and is mediated by the TNF-α receptor type 1 (TNFR-1). This receptor triggers two opposite pathways: cell death or cell survival and presents a protective or stimulator role in cancer. Thus, the purpose of this study was to evaluate the role of TNF signaling in chemically induced prostate carcinogenesis in mice.
Methods:
C57bl/6 wild type (WT) and p55 TNFR-1 knockout mice (KO) were treated with mineral oil (control) or N-methyl N-nitrosurea (MNU) in association with testosterone (MNU+T, single injection of 40 mg/kg and weekly injection 2 mg/kg, respectively) over the course of 6 months. After this induction period, prostate samples were processed for histological and biochemical analysis.
Results:
MNU+T treatment led to the development of prostate intraepithelial neoplasia (PIN) and adenocarcinoma (PCa) in both WT and KO animals; however, the incidence of PCa was lower in KO group than in WT. Cell proliferation analysis showed that PCNA levels were significantly lower in the KO group, even after carcinogenesis induction. Furthermore, the prostate of KO animals had lower levels of p65 and p-mTOR after treatment with MNU+T than WT. There was also a decrease in prostate androgen receptor levels after induction of carcinogenesis in both KO and WT mice. Regarding the extracellular matrix in the prostate, KO mice had higher levels of fibronectin and lower levels of matrix metalloproteinase 2 (MMP2) after carcinogenesis. Finally, there was a similar increase in apoptosis in both groups after carcinogenesis, indicating that the TNAFr1 pathway in prostate carcinogenesis presented proliferative, and not apoptotic, stimuli.
Conclusions:
TNF-α, through its receptor TNFR-1, promoted cell proliferation and cell survival in prostate by activation of the AKT/mTOR and NFKB pathway, which stimulated prostate carcinogenesis in chemically induced mice. Prostate 76: 917-926, 2016. © 2016 Wiley Periodicals, Inc.
Insights
Tumor necrosis factor-alpha (TNF-α) signaling via its receptor TNFR-1 promotes prostate cancer by stimulating cell proliferation and survival. Blocking this pathway in mice reduced prostate cancer development, highlighting TNFR-1 as a potential therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Tumor necrosis factor-alpha (TNF-α) is a critical cytokine in prostate cancer development.
- TNF-α signaling through its receptor, TNFR-1, can promote either cell death or survival, influencing cancer progression.
- The precise role of TNF-α signaling in prostate carcinogenesis remains to be fully elucidated.
Purpose of the Study:
- To investigate the role of TNF signaling in chemically induced prostate carcinogenesis.
- To determine whether TNFR-1 mediates pro-carcinogenic effects in the prostate.
Main Methods:
- C57bl/6 wild type (WT) and p55 TNFR-1 knockout (KO) mice were subjected to chemical induction of prostate cancer using N-methyl N-nitrosurea and testosterone (MNU+T).
- Prostate tissues were analyzed histologically and biochemically after 6 months of treatment.
- Key molecular markers for proliferation, apoptosis, signaling pathways (NF-κB, AKT/mTOR), and extracellular matrix were assessed.
Main Results:
- MNU+T treatment induced prostate intraepithelial neoplasia and adenocarcinoma in both WT and KO mice, but with lower incidence in KO mice.
- TNFR-1 knockout mice exhibited reduced cell proliferation (PCNA) and lower levels of key signaling molecules (p65, p-mTOR) compared to WT mice.
- Changes in extracellular matrix components (fibronectin, MMP2) and androgen receptor levels were observed in KO mice post-carcinogenesis.
Conclusions:
- TNF-α, via TNFR-1, drives prostate carcinogenesis by promoting cell proliferation and survival.
- Activation of the AKT/mTOR and NF-κB pathways by TNFR-1 signaling stimulates prostate cancer development.
- TNFR-1 appears to play a proliferative rather than an apoptotic role in this model of prostate carcinogenesis.
Related Concept Videos
Mouse Models of Cancer Study
The development of transgenic, knockout, and knock-in mice has led to an exponential increase in their use as model organisms in research,...
TGF - β Signaling Pathway
In-vitro Mutagenesis

