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Published on: March 13, 2013
The Role of T-Cadherin (CDH13) in Treatment Options with Garcinol in Melanoma
Sebastian Staebler1, Sebastian Hoechst1, Aranya Thongmao1
1Institute of Biochemistry, Friedrich Alexander University Erlangen-Nürnberg, Fahrstrasse 17, 91054 Erlangen, Germany.
Abstract:
Targeted therapies with chemotherapeutic agents and immunotherapy with checkpoint inhibitors are among the systemic therapies recommended in the guidelines for clinicians to treat melanoma. Although there have been constant improvements in the treatment of melanoma, resistance to the established therapies continues to occur. Therefore, the purpose of this study was to explore the function of garcinol with regards to specific cancer properties such as proliferation and apoptosis. Garcinol, a natural compound isolated from the plant also known as mangosteen (Garcinia mangostana), is a newly discovered option for cancer treatment. Numerous pharmaceutical substances are derived from plants. For example, the derivates of camptothecin, extracted from the bark of the Chinese tree of happiness (Camptotheca acuminate), or paclitaxel, extracted from the bark of the Western yew tree (Taxus brevifolia), are used as anti-cancer drugs. Here, we show that garcinol reduced proliferation and induced apoptosis in melanoma cell lines. In addition, we found that those cells that are positive for the expression of the cell-cell adhesion molecule T-cadherin (CDH13) respond more sensitively to treatment with garcinol. After knock-down experiments with an siRNA pool against T-cadherin, the sensitivity to garcinol decreased and proliferation and anti-apoptotic behavior of the cells was restored. We conclude that patients who are T-cadherin-positive could especially benefit from a therapy with garcinol.
Insights
Garcinol, a natural compound, effectively reduces melanoma cell proliferation and induces apoptosis. T-cadherin expression enhances sensitivity to garcinol, suggesting its potential as a targeted melanoma therapy.
Area of Science:
- Oncology
- Pharmacology
- Natural Products Chemistry
Background:
- Melanoma treatment faces challenges due to therapy resistance.
- Current systemic therapies include chemotherapy and immunotherapy.
- Natural compounds offer potential alternative or complementary treatments.
Purpose of the Study:
- To investigate the anti-cancer properties of garcinol, a natural compound from *Garcinia mangostana*.
- To evaluate garcinol's effects on melanoma cell proliferation and apoptosis.
- To explore the role of T-cadherin (CDH13) in melanoma cell response to garcinol.
Main Methods:
- Melanoma cell lines were treated with garcinol.
- Cell proliferation and apoptosis assays were performed.
- T-cadherin expression was modulated using siRNA for knock-down experiments.
Main Results:
- Garcinol significantly reduced proliferation and induced apoptosis in melanoma cells.
- Melanoma cells expressing T-cadherin showed increased sensitivity to garcinol.
- T-cadherin knock-down diminished garcinol's efficacy and restored proliferative/anti-apoptotic phenotypes.
Conclusions:
- Garcinol exhibits potent anti-melanoma activity by inhibiting proliferation and promoting apoptosis.
- T-cadherin is identified as a predictive biomarker for garcinol treatment response.
- T-cadherin-positive melanoma patients may particularly benefit from garcinol therapy.
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