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Pharmacologic Induction of Epidermal Melanin and Protection Against Sunburn in a Humanized Mouse Model
Published on: September 7, 2013
IGFBP3 and MAPK/ERK signaling mediates melatonin-induced antitumor activity in prostate cancer
Juan C Mayo1,2, David Hevia1, Isabel Quiros-Gonzalez3
1Departamento de Morfología y Biología Celular, University of Oviedo, Oviedo, Spain.
Abstract:
Treatment of prostate cancer (PCa), a leading cause of cancer among males, lacks successful strategies especially in advanced, hormone-refractory stages. Some clinical studies have shown an increase in neuroendocrine-like cells parallel to the tumor progression but their exact role is a matter of debate. The prostate is a well-known target for melatonin, which reduces PCa cells proliferation and induces neuroendocrine differentiation. To evaluate the mechanisms underlying the indole effects on neuroendocrine differentiation and its impact on PCa progression, we used a cell culture model (LNCaP) and a murine model (TRAMP). Persistent ERK1/2 activation was found in both, melatonin and androgen-deprived cells. Melatonin blocked nuclear translocation of androgen receptor (AR), thus confirming anti-androgenic actions of the indole. However, using a comparative genome microarray to check the differentially expressed genes in control, melatonin, or androgen-deprived cells, some differences were found, suggesting a more complex role of the indole. By comparing control cells with those treated with melatonin or depleted of androgen, a cluster of 26 differentially expressed genes (±2.5-fold) was found. Kallikreins (KLK)2 and KLK3 (PSA) were dramatically downregulated by both treatments whereas IGFBP3 and IGF1R were up- and downregulated, respectively, in both experimental groups, thus showing a role for IGF in both scenarios. Finally, melatonin prolonged the survival of TRAMP mice by 33% when given at the beginning or at advances stages of the tumor. Serum IGFBP3 was significantly elevated by the indole in early stages of the tumor, confirming in vivo the role of the IGF signaling in the oncostatic action of the indole.
Insights
Melatonin offers a novel therapeutic strategy for prostate cancer (PCa) by inducing neuroendocrine differentiation and prolonging survival. This indole compound demonstrates anti-androgenic effects and influences gene expression, impacting PCa progression.
Area of Science:
- Oncology
- Endocrinology
- Molecular Biology
Background:
- Prostate cancer (PCa) treatment faces challenges, particularly in advanced, hormone-refractory stages.
- Neuroendocrine-like cells increase with PCa progression, but their role remains debated.
- Melatonin is known to inhibit PCa cell proliferation and promote neuroendocrine differentiation.
Purpose of the Study:
- To investigate the mechanisms of melatonin's effects on neuroendocrine differentiation in PCa.
- To assess the impact of melatonin on PCa progression using cell culture and animal models.
- To explore the role of insulin-like growth factor (IGF) signaling in melatonin's action.
Main Methods:
- Utilized LNCaP cell culture and TRAMP murine models for PCa studies.
- Analyzed persistent ERK1/2 activation and androgen receptor (AR) nuclear translocation.
- Employed comparative genome microarray to identify differentially expressed genes.
Main Results:
- Melatonin and androgen deprivation both led to persistent ERK1/2 activation and blocked AR nuclear translocation.
- A cluster of 26 differentially expressed genes was identified, including downregulation of KLK2 and KLK3 (PSA).
- Melatonin administration significantly increased survival in TRAMP mice by 33% and elevated serum IGFBP3.
Conclusions:
- Melatonin exhibits anti-androgenic actions and influences gene expression, suggesting a complex role in PCa.
- Melatonin's oncostatic effects in vivo are linked to IGF signaling, with elevated IGFBP3 observed.
- Melatonin represents a promising therapeutic agent for prostate cancer, impacting neuroendocrine differentiation and survival.
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