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Published on: June 22, 2016
Chronic low dose ethanol induces an aggressive metastatic phenotype in TRAMP mice, which is counteracted by
Katherine L Morel1, Rebecca J Ormsby2, Emma L Solly2
1Molecular Medicine and Pathology, Flinders Centre for Innovation in Cancer, Flinders University and Medical Centre, Bedford Park, Adelaide, SA, Australia. KatherineL_Morel@DFCI.harvard.edu.
Abstract:
Despite advances in prostate cancer therapy, dissemination and growth of metastases results in shortened survival. Here we examined the potential anti-cancer effect of the NF-κB inhibitor parthenolide (PTL) and its water soluble analogue dimethylaminoparthenolide (DMAPT) on tumour progression and metastasis in the TRansgenic Adenocarcinoma of the Mouse Prostate (TRAMP) model of prostate cancer. Six-week-old male TRAMP mice received PTL (40 mg/kg in 10% ethanol/saline), DMAPT (100 mg/kg in sterile water), or vehicle controls by oral gavage thrice weekly until palpable tumour formation. DMAPT treatment slowed normal tumour development in TRAMP mice, extending the time-to-palpable prostate tumour by 20%. PTL did not slow overall tumour development, while the ethanol/saline vehicle used to administer PTL unexpectedly induced an aggressive metastatic tumour phenotype. Chronic ethanol/saline vehicle upregulated expression of NF-κB, MMP2, integrin β1, collagen IV, and laminin, and induced vascular basement membrane degradation in primary prostate tumours, as well as increased metastatic spread to the lung and liver. All of these changes were largely prevented by co-administration with PTL. DMAPT (in water) reduced metastasis to below that of water-control. These data suggest that DMAPT has the potential to be used as a cancer preventive and anti-metastatic therapy for prostate cancer. Although low levels of ethanol consumption have not been shown to strongly correlate with prostate cancer epidemiology, these results would support a potential effect of chronic low dose ethanol on metastasis and the TRAMP model provides a useful system in which to further explore the mechanisms involved.
Insights
Dimethylaminoparthenolide (DMAPT) shows promise in preventing prostate cancer progression and metastasis in mice. Parthenolide (PTL) co-administered with ethanol prevented ethanol-induced metastasis, suggesting therapeutic potential.
Area of Science:
- Oncology
- Cancer Biology
- Pharmacology
Background:
- Prostate cancer metastasis significantly reduces patient survival despite therapeutic advances.
- Nuclear factor-kappa B (NF-κB) signaling is implicated in prostate cancer progression and metastasis.
Purpose of the Study:
- To evaluate the anti-cancer and anti-metastatic effects of parthenolide (PTL) and its analogue dimethylaminoparthenolide (DMAPT) in the TRAMP mouse model of prostate cancer.
- To investigate the role of chronic ethanol administration in prostate cancer metastasis.
Main Methods:
- TRAMP mice were treated with PTL (in ethanol/saline), DMAPT (in water), or vehicle controls via oral gavage.
- Tumour development, time to palpable tumour, and metastatic spread to lung and liver were assessed.
- Expression of NF-κB, MMP2, integrin β1, collagen IV, and laminin, and vascular basement membrane integrity were analyzed.
Main Results:
- DMAPT treatment delayed palpable prostate tumour formation by 20% and reduced metastasis below control levels.
- Chronic ethanol/saline vehicle administration accelerated tumour progression and metastasis, upregulating NF-κB and matrix degradation markers.
- Co-administration of PTL with ethanol largely prevented ethanol-induced upregulation of these markers and metastatic spread.
Conclusions:
- DMAPT demonstrates potential as a preventive and anti-metastatic therapy for prostate cancer.
- Chronic low-dose ethanol may promote prostate cancer metastasis, warranting further investigation in the TRAMP model.
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