5-Demethylnobiletin is the active ingredient in citrus polymethoxyflavones that could inhibit the proliferation of several tumor cells. However, the anti-tumor effect of 5-Demethylnobiletin on glioblastoma and the underlying molecular mechanisms are remains unknown. In our study, 5-Demethylnobiletin markedly inhibited the viability, migration and invasion of glioblastoma U87-MG, A172 and U251 cells. Further research revealed that 5-Demethylnobiletin induces cell cycle arrest at the G0/G1 phase in glioblastoma cells by downregulating Cyclin D1 and CDK6 expression levels. Furthermore, 5-Demethylnobiletin significantly induced glioblastoma cells apoptosis by upregulating the protein levels of Bax and downregulating the protein level of Bcl-2, subsequently increasing the expression of cleaved caspase-3 and cleaved caspase-9. Mechanically, 5-Demethylnobiletin trigged G0/G1 phase arrest and apoptosis by inhibiting the ERK1/2, AKT and STAT3 signaling pathway. Furthermore, 5-Demethylnobiletin inhibition of U87-MG cell growth was reproducible in vivo model. Therefore, 5-Demethylnobiletin is a promising bioactive agent that might be used as glioblastoma treatment drug.
5-Demethylnobiletin is a polymethoxylated flavone found in citrus. This study examined its ability to mediate cancer cell cycle arrest and apoptosis in combination with immunomodulatory treatments.
5-Demethylnobiletin induced cancer cell cycle arrest and apoptosis in treated cells, with synergistic effects when combined with immune activation. The compound modulated cell cycle regulators and apoptotic signaling pathways, demonstrating potential as a natural anti-cancer agent.
Combination approaches pairing natural immunomodulators like β-glucan with other bioactive compounds such as flavones represent a promising strategy for enhanced cancer support.
AI-generated summary for accessibility. Always refer to the original paper.
Zhang, Xuehua; Zhao, Leilei; Xiao, Jinlong; Wang, Yudi; Li, Yunmeng; Zhu, Chaoqun; Zhang, He; Zhang, Yurui; Zhu, Xiao; Dong, Yucui. 5-Demethylnobiletin mediates cell cycle arrest and apoptosis via the ERK1/2/AKT/STAT3 signaling pathways in glioblastoma cells. Frontiers in Oncology. 2023. DOI: 10.3389/fonc.2023.1143664.
For scientific reference only. Not medical advice. Consult a qualified healthcare professional. See our Medical Disclaimer.