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The Cytotoxic Effect of Curcumin in Rhabdomyosarcoma Is Associated with the Modulation of AMPK, AKT/mTOR, STAT, and
Sara Salucci1, Alberto Bavelloni2, Anna Bartoletti Stella3
1Dipartimento di Scienze Biomediche e Neuromotorie (DIBINEM), Università di Bologna, 40126 Bologna, Italy.
Abstract:
Approximately 7% of cancers arising in children and 1% of those arising in adults are soft tissue sarcomas (STS). Of these malignancies, rhabdomyosarcoma (RMS) is the most common. RMS survival rates using current therapeutic protocols have remained largely unchanged in the past decade. Thus, it is imperative that the main molecular drivers in RMS tumorigenesis are defined so that more precise, effective, and less toxic therapies can be designed. Curcumin, a common herbal supplement derived from plants of the Curcuma longa species, has an exceptionally low dietary biotoxicity profile and has demonstrated anti-tumorigenic benefits in vitro. In this study, the anti-tumorigenic activity of curcumin was assessed in rhabdomyosarcoma cell lines and used to identify the major pathways responsible for curcumin's anti-tumorigenic effects. Curcumin treatment resulted in cell cycle arrest, inhibited cell migration and colony forming potential, and induced apoptotic cell death. Proteome profiler array analysis demonstrated that curcumin treatment primarily influenced flux through the AKT-mammalian target of rapamycin (mTOR), signal transducer and activator of transcription (STAT), AMP-dependent kinase (AMPK), and p53 associated pathways in a rhabdomyosarcoma subtype-specific manner. Thus, the strategic, combinational therapeutic targeting of these pathways may present the best option to treat this group of tumors.
Insights
Curcumin, a natural compound, shows promise in fighting rhabdomyosarcoma (RMS). It halts cancer cell growth, migration, and triggers cell death by impacting key molecular pathways like AKT-mTOR and STAT.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Rhabdomyosarcoma (RMS) is the most common soft tissue sarcoma in children, with stagnant survival rates.
- Identifying molecular drivers of RMS is crucial for developing targeted therapies.
- Curcumin, from turmeric, has shown in vitro anti-tumorigenic potential with low toxicity.
Purpose of the Study:
- To evaluate the anti-tumorigenic activity of curcumin in RMS cell lines.
- To identify molecular pathways modulated by curcumin in RMS.
- To explore novel therapeutic strategies for RMS based on curcumin's effects.
Main Methods:
- Assessed curcumin's effects on RMS cell proliferation, migration, and apoptosis.
- Utilized proteome profiler array analysis to investigate affected signaling pathways.
- Analyzed curcumin's impact on AKT-mTOR, STAT, AMPK, and p53 pathways.
Main Results:
- Curcumin induced cell cycle arrest, inhibited migration, and promoted apoptosis in RMS cells.
- Curcumin modulated signaling pathways including AKT-mTOR, STAT, AMPK, and p53.
- Pathway modulation was observed in a rhabdomyosarcoma subtype-specific manner.
Conclusions:
- Curcumin exhibits significant anti-tumorigenic effects against RMS.
- Targeting curcumin-modulated pathways (AKT-mTOR, STAT, AMPK, p53) offers a potential therapeutic strategy.
- Combination therapy targeting these pathways may improve RMS treatment outcomes.
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