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Updated: Jul 8, 2026

An Orthotopic Murine Model of Human Prostate Cancer Metastasis
Published on: September 18, 2013
Galiellalactone is a novel therapeutic candidate against hormone-refractory prostate cancer expressing activated
Rebecka Hellsten1, Martin Johansson, Anna Dahlman
1Division of Urological Cancers, Department of Clinical Sciences Malmö, Lund University, Malmö, Sweden. rebecka.hellsten@med.lu.se
Background:
Signal transducer and activator of transcription 3 (Stat3) is constitutively active (phosphorylated) in several forms of cancer, including prostate cancer (PCa). Stat3 signaling may be an interesting target for cancer therapy since inhibition of this pathway mediates growth inhibition and apoptosis of these cells. In this study we investigated the in vitro and in vivo effects of the fungal metabolite galiellalactone, a direct inhibitor of Stat3, on PCa cells.
Methods:
The human PCa cell lines DU145, PC-3, and LNCaP were used. Nude mice with subcutaneous PCa cell xenografts were subjected to daily intraperitoneal injections of galiellalactone for 3 weeks. The effect of galiellalactone on the induction of apoptosis of cultured PCa cells was investigated by Western blot analysis, immunocytochemistry, and annexin V staining. Effects of galiellalactone on Stat3 signaling were investigated by a luciferase reporter gene assay. Expression of Stat3 associated proteins and mRNA was investigated by Western blot and real-time quantitative PCR analysis.
Results:
Galiellalactone induced apoptosis of p-Stat3 positive PCa cells (androgen-insensitive DU145 and PC-3) but not in cells lacking p-Stat3 (androgen-sensitive LNCaP). Galiellalactone inhibited Stat3-mediated luciferase activity (IC(50) approximately 5 microM) and reduced the expression of Bcl-2, Bcl-x(L), c-myc, and cyclin D1. Furthermore, galiellalactone significantly suppressed DU145 xenograft growth in vivo (42% growth reduction; P<0.002) and reduced the relative mRNA expression of Bcl-x(L) and Mcl-1.
Conclusions:
Galiellalactone induced growth inhibition and apoptosis in androgen-insensitive PCa cells expressing p-Stat3. We suggest that galiellalactone is a potential anti-tumor lead against hormone-refractory PCa with constitutively active Stat3.
Insights
The fungal metabolite galiellalactone inhibits Signal Transducer and Activator of Transcription 3 (Stat3) signaling, inducing apoptosis and growth inhibition in prostate cancer cells. This compound shows potential as an anti-tumor lead for hormone-refractory prostate cancer.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Constitutive activation of Signal Transducer and Activator of Transcription 3 (Stat3) is observed in various cancers, including prostate cancer (PCa).
- Targeting Stat3 signaling offers a therapeutic strategy by inhibiting cancer cell growth and inducing apoptosis.
- Galiellalactone, a fungal metabolite, is a direct inhibitor of Stat3.
Purpose of the Study:
- To investigate the in vitro and in vivo effects of galiellalactone on PCa cells.
- To evaluate galiellalactone's potential as an anti-tumor agent against hormone-refractory PCa.
Main Methods:
- Utilized human PCa cell lines (DU145, PC-3, LNCaP) and a xenograft mouse model.
- Assessed apoptosis induction via Western blot, immunocytochemistry, and annexin V staining.
- Measured Stat3 signaling inhibition using a luciferase reporter gene assay and analyzed protein/mRNA expression.
Main Results:
- Galiellalactone induced apoptosis in p-Stat3 positive, androgen-insensitive PCa cells (DU145, PC-3), but not in p-Stat3 negative cells (LNCaP).
- Inhibited Stat3 activity (IC50 ≈ 5 μM) and reduced expression of apoptosis-related proteins (Bcl-2, Bcl-xL, c-myc, cyclin D1).
- Significantly suppressed DU145 xenograft growth in vivo (42% reduction) and decreased Bcl-xL and Mcl-1 mRNA levels.
Conclusions:
- Galiellalactone effectively induces growth inhibition and apoptosis in androgen-insensitive PCa cells with active p-Stat3.
- Galiellalactone represents a promising anti-tumor lead compound for treating hormone-refractory PCa characterized by constitutively active Stat3.
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