Eckol suppresses maintenance of stemness and malignancies in glioma stem-like cells
Kyung-Hwan Hyun1, Chang-Hwan Yoon, Rae-Kwon Kim
1Department of Chemistry, Research Institute for Natural Sciences, Hanyang University, Seoul, Republic of Korea.
Abstract:
A subpopulation of cancer cells with stem cell properties is responsible for tumor maintenance and progression, and may contribute to resistance to anticancer treatments. Thus, compounds that target cancer stem-like cells could be usefully applied to destroy cancer. In this study, we investigated the effect of Eckol, a phlorotannin compound, on stemness and malignancies in glioma stem-like cells. To determine whether Eckol targets glioma stem-like cells, we examined whether Eckol treatment could change the expression levels of glioma stem-like cell markers and self-renewal-related proteins as well as the sphere forming ability, and the sensitivity to anticancer treatments. Alterations in the malignant properties of sphere-derived cells by Eckol were also investigated by soft-agar colony forming assay, by xenograft assay in nude mice, and by cell invasion assay. Treatment of sphere-forming glioma cells with Eckol effectively decreased the sphere formation as well as the CD133(+) cell population. Eckol treatment suppressed expression of the glioma stem-like cell markers and the self-renewal-related proteins without cell death. Moreover, treatment of glioma stem-like cells with Eckol significantly attenuated anchorage-independent growth on soft agar and tumor formation in xenograft mice. Importantly, Eckol treatment effectively reduced the resistance of glioma stem-like cells to ionizing radiation and temozolomide. Treatment of glioma stem-like cells with Eckol markedly blocked both phosphoinositide 3-kinase-Akt and Ras-Raf-1-Erk signaling pathways. These results indicate that the natural phlorotannin Eckol suppresses stemness and malignancies in glioma stem-like cells, and thereby makes glioma stem-like cells more sensitive to anticancer treatments, providing novel therapeutic strategies targeting specifically cancer stem-like cells.
Insights
The natural compound Eckol reduces cancer stem cell properties in glioma cells, enhancing sensitivity to radiation and chemotherapy. This offers a new strategy for targeting cancer stem-like cells to improve cancer treatment outcomes.
Area of Science:
- Oncology
- Pharmacology
- Cell Biology
Background:
- Cancer stem-like cells drive tumor growth and treatment resistance.
- Targeting these cells is crucial for effective cancer therapy.
Purpose of the Study:
- To investigate the effects of Eckol, a phlorotannin, on stemness and malignancy in glioma stem-like cells.
- To assess Eckol's potential to overcome resistance to anticancer treatments.
Main Methods:
- Assessed sphere formation, CD133+ cell population, and stem cell marker expression.
- Evaluated anchorage-independent growth, xenograft tumor formation, and cell invasion.
- Tested sensitivity to ionizing radiation and temozolomide.
- Analyzed phosphoinositide 3-kinase-Akt and Ras-Raf-1-Erk signaling pathways.
Main Results:
- Eckol reduced sphere formation and CD133+ cells without causing cell death.
- Eckol suppressed stem cell markers and self-renewal proteins.
- Eckol attenuated anchorage-independent growth, tumor formation, and invasion.
- Eckol increased sensitivity to ionizing radiation and temozolomide.
- Eckol blocked PI3K-Akt and Ras-Raf-1-Erk signaling pathways.
Conclusions:
- Eckol effectively suppresses stemness and malignancy in glioma stem-like cells.
- Eckol enhances the sensitivity of these cells to conventional anticancer therapies.
- Eckol represents a promising therapeutic strategy for targeting cancer stem-like cells.
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