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Cytotoxic Efficacy of Photodynamic Therapy in Osteosarcoma Cells In Vitro
Published on: March 18, 2014
SIRT1 inhibition by melatonin exerts antitumor activity in human osteosarcoma cells
Yedong Cheng1, Liping Cai, Peng Jiang
1Department of Orthopaedics, the 82th Hospital of PLA, 100# Jiangkang Road, Huai'an 213002, China.
Abstract:
Melatonin, the main secretory product of the pineal gland, has potent antitumor activity against various types of cancer. However, the molecular mechanisms underlying the effects of melatonin remain largely unknown. SIRT1, a conserved nicotinamide adenine dinucleotide (NAD(+))-dependent deacetylase, has been implicated in modulating transcriptional silencing and cell survival and plays a key role in carcinogenesis through the deacetylation of important regulatory proteins. In this study, we assessed the antitumor activity of melatonin against human osteosarcoma cells (9607 cell line) and explored the role of SIRT1 in the activity of melatonin. Melatonin treatment resulted in strong antitumor activity, as evidenced not only by reductions in tumor cell vitality, adhesion ability, migration ability and glutathione (GSH) levels but also by increase in the apoptotic index and reactive oxygen species. Additionally, melatonin treatment down-regulated SIRT1 and up-regulated acetylated-p53. Sirtinol (a known SIRT1 inhibitor) and SIRT1 siRNA further enhanced the antitumor activity of melatonin, while SRT1720 (a known SIRT1 activator) attenuated the antitumor activity of melatonin. In summary, melatonin is a potent inhibitor of osteosarcoma cell growth that targets SIRT1 signaling, and the inhibition of SIRT1 signaling is a novel mechanism of action for melatonin during therapeutic intervention in osteosarcoma.
Insights
Melatonin effectively inhibits osteosarcoma cell growth by down-regulating SIRT1 signaling. This study reveals SIRT1 inhibition as a novel mechanism for melatonin
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Melatonin, a pineal gland hormone, exhibits antitumor properties.
- Molecular mechanisms of melatonin's anticancer effects are not fully understood.
- SIRT1, a deacetylase, influences cell survival and carcinogenesis.
Purpose of the Study:
- To evaluate melatonin's antitumor activity against human osteosarcoma cells.
- To investigate the role of SIRT1 in melatonin's antitumor effects.
Main Methods:
- Treatment of osteosarcoma cells (9607) with melatonin.
- Assessment of cell vitality, adhesion, migration, apoptosis, and reactive oxygen species.
- Analysis of SIRT1 and acetylated-p53 levels.
- Use of SIRT1 inhibitor (Sirtinol) and activator (SRT1720), and SIRT1 siRNA.
Main Results:
- Melatonin reduced osteosarcoma cell vitality, adhesion, migration, and glutathione levels.
- Melatonin increased the apoptotic index and reactive oxygen species.
- Melatonin down-regulated SIRT1 and up-regulated acetylated-p53.
- SIRT1 inhibition enhanced melatonin's antitumor effects, while activation attenuated them.
Conclusions:
- Melatonin demonstrates potent antitumor activity against osteosarcoma cells.
- Melatonin exerts its effects by targeting SIRT1 signaling.
- Inhibition of SIRT1 is a newly identified mechanism for melatonin's therapeutic action in osteosarcoma.
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