The STAT3 Inhibitor Galiellalactone Reduces IL6-Mediated AR Activity in Benign and Malignant Prostate Models
Florian Handle1,2, Martin Puhr1, Georg Schaefer3
1Division of Experimental Urology, Department of Urology, Medical University of Innsbruck, Innsbruck, Austria.
Abstract:
IL6/STAT3 signaling is associated with endocrine therapy resistance in prostate cancer, but therapies targeting this pathway in prostate cancer were unsuccessful in clinical trials so far. The mechanistic explanation for this phenomenon is currently unclear; however, IL6 has pleiotropic effects on a number of signaling pathways, including the androgen receptor (AR). Therefore, we investigated IL6-mediated AR activation in prostate cancer cell lines and ex vivo primary prostate tissue cultures in order to gain a better understanding on how to inhibit this process for future clinical trials. IL6 significantly increased androgen-dependent AR activity in LNCaP cells but importantly did not influence AR activity at castrate androgen levels. To identify the underlying mechanism, we investigated several signaling pathways but only found IL6-dependent changes in STAT3 signaling. Biochemical inhibition of STAT3 with the small-molecule inhibitor galiellalactone significantly reduced AR activity in several prostate and breast cancer cell lines. We confirmed the efficacy of galiellalactone in primary tissue slice cultures from radical prostatectomy samples. Galiellalactone significantly reduced the expression of the AR target genes PSA (P < 0.001), TMPRSS2 (P < 0.001), and FKBP5 (P = 0.003) in benign tissue cultures (n = 24). However, a high heterogeneity in the response of the malignant samples was discovered, and only a subset of tissue samples (4 out of 10) had decreased PSA expression upon galiellalactone treatment. Taken together, this finding demonstrates that targeting the IL6/STAT3 pathway with galiellalactone is a viable option to decrease AR activity in prostate tissue that may be applied in a personalized medicine approach.
Insights
Interleukin-6 (IL6) activates the androgen receptor (AR) in prostate cancer. Inhibiting the IL6/STAT3 pathway with galiellalactone reduced AR activity, suggesting a personalized medicine approach for prostate cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Endocrinology
Background:
- Interleukin-6 (IL6)/STAT3 signaling is linked to endocrine therapy resistance in prostate cancer.
- Previous attempts to target this pathway in clinical trials have been unsuccessful.
- The precise mechanisms of IL6's influence on signaling pathways, including the androgen receptor (AR), remain unclear.
Purpose of the Study:
- To investigate IL6-mediated AR activation in prostate cancer.
- To understand how to inhibit IL6-mediated AR activation for future clinical trials.
- To explore the potential of STAT3 inhibition in managing prostate cancer.
Main Methods:
- Utilized prostate cancer cell lines and ex vivo primary prostate tissue cultures.
- Assessed IL6-mediated AR activity and STAT3 signaling.
- Employed the small-molecule inhibitor galiellalactone to target STAT3.
- Analyzed the expression of AR target genes (PSA, TMPRSS2, FKBP5).
Main Results:
- IL6 significantly increased androgen-dependent AR activity in LNCaP cells.
- STAT3 inhibition with galiellalactone reduced AR activity in prostate and breast cancer cell lines.
- Galiellalactone decreased AR target gene expression in benign prostate tissue cultures.
- A heterogeneous response to galiellalactone was observed in malignant prostate tissue samples.
Conclusions:
- Targeting the IL6/STAT3 pathway with galiellalactone can decrease AR activity in prostate tissue.
- Galiellalactone shows potential as a therapeutic option for prostate cancer.
- A personalized medicine approach may be beneficial due to observed heterogeneity in treatment response.
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