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Published on: February 21, 2014
Estrogen receptor β suppresses inflammation and the progression of prostate cancer
Long Xiao1, Yaohui Luo1, Rongfen Tai1
1Department of Urology, The First People's Hospital of Yunnan Province, Kunming University of Science and Technology, Kunming, Yunnan 650041, P.R. China.
Abstract:
Previous studies demonstrated that estrogen receptor β (ERβ) signaling alleviates systemic inflammation in animal models, and suggested that ERβ‑selective agonists may deactivate microglia and suppress T cell activity via downregulation of nuclear factor κ‑light‑chain‑enhancer of activated B cells (NF‑κB). In the present study, the role of ERβ in lipopolysaccharide (LPS)‑induced inflammation and association with NF‑κB activity were investigated in PC‑3 and DU145 prostate cancer cell lines. Cells were treated with LPS to induce inflammation, and ELISA was performed to determine the expression levels of inflammatory cytokines, including tumor necrosis factor‑α (TNF‑α), monocyte chemoattractant protein 1 (MCP‑1), interleukin (IL)‑1β and IL‑6. MTT and Transwell assays, and Annexin V/propidium iodide staining were conducted to measure cell viability, apoptosis and migration, respectively. Protein expression was determined via western blot analysis. LPS‑induced inflammation resulted in elevated expression levels of TNF‑α, IL‑1β, MCP‑1 and IL‑6 compared with controls. ERβ overexpression significantly inhibited the LPS‑induced production of TNF‑α, IL‑1β, MCP‑1 and IL‑6. In addition, the results indicated that ERβ suppressed viability and migration, and induced apoptosis in prostate cancer cells, which was further demonstrated by altered expression of proliferating cell nuclear antigen, B‑cell lymphoma 2‑associated X protein, caspase‑3, E‑cadherin and matrix metalloproteinase‑2. These effects were reversed by treatment with the ERβ antagonist PHTPP or ERβ‑specific short interfering RNA. ERβ overexpression reduced the expression levels of p65 and phosphorylated NF‑κB inhibitor α (IκBα), but not total IκBα expression in LPS‑treated cells. In conclusion, ERβ suppressed the viability and migration of the PC‑3 and DU145 prostate cancer cell lines and induced apoptosis. Furthermore, it reduced inflammation and suppressed the activation of the NF‑κB pathway, suggesting that ERβ may serve roles as an anti‑inflammatory and anticancer agent in prostate cancer.
Insights
Estrogen receptor beta (ERβ) reduces inflammation and prostate cancer cell growth by inhibiting the NF-κB pathway. This suggests ERβ acts as an anti-inflammatory and anticancer agent in prostate cancer.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Estrogen receptor beta (ERβ) signaling is known to reduce systemic inflammation.
- ERβ agonists may suppress T cell activity and deactivate microglia by downregulating nuclear factor κ-light-chain-enhancer of activated B cells (NF-κB).
Purpose of the Study:
- To investigate the role of ERβ in lipopolysaccharide (LPS)-induced inflammation in prostate cancer cell lines.
- To examine the association between ERβ activity and NF-κB signaling in prostate cancer.
Main Methods:
- PC-3 and DU145 prostate cancer cells were treated with LPS to induce inflammation.
- ELISA, MTT assays, Transwell assays, and Annexin V/propidium iodide staining were used to assess inflammatory cytokine expression, cell viability, apoptosis, and migration.
- Western blot analysis was performed to determine protein expression and NF-κB pathway activation.
Main Results:
- LPS treatment elevated inflammatory cytokines (TNF-α, IL-1β, MCP-1, IL-6).
- ERβ overexpression significantly inhibited LPS-induced inflammation, suppressed cell viability and migration, and induced apoptosis.
- These effects were reversed by ERβ antagonist or siRNA, and ERβ overexpression reduced NF-κB pathway activation (p65 and p-IκBα).
Conclusions:
- ERβ suppresses prostate cancer cell viability and migration while inducing apoptosis.
- ERβ exhibits anti-inflammatory properties by reducing cytokine production and inhibiting the NF-κB pathway.
- ERβ may function as a potential anti-inflammatory and anticancer agent in prostate cancer treatment.
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