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  3. An Overview of the Potential Antineoplastic Effects of Casticin
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  4. Recent Insights into Therapeutic Potential of Plant-Derived Flavonoids against Cancer
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  5. Mefloquine targets β -catenin pathway and thus can play a role in the treatment of liver cancer
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  6. Cancer stem cells and nanomedicine: new opportunities to combat multidrug resistance?
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  7. Casticin inhibits stemness of hepatocellular carcinoma cells via disrupting the reciprocal negative regulation between DNMT1 and miR-148a-3p
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  8. Casticin inhibits the epithelial-mesenchymal transition in ovarian carcinoma via the hedgehog signaling pathway
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  9. Targeting liver cancer stem cells for the treatment of hepatocellular carcinoma
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  10. miR-19 targeting of GSK3β mediates sulforaphane suppression of lung cancer stem cells
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  11. Casticin inhibits interleukin-1β-induced ICAM-1 and MUC5AC expression by blocking NF-κB, PI3K-Akt, and MAPK signaling in human lung epithelial cells
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  12. Cellular Origin of Hepatocellular Carcinoma
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  13. Casticin attenuates liver fibrosis and hepatic stellate cell activation by blocking TGF-β/Smad signaling pathway
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  14. Protective Effects of Casticin From Vitex trifolia Alleviate Eosinophilic Airway Inflammation and Oxidative Stress in a Murine Asthma Model
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  15. RETRACTED ARTICLE: 8-bromo-7-methoxychrysin suppress stemness of SMMC-7721 cells induced by co-culture of liver cancer stem-like cells with hepatic stellate cells
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  16. Flavonoids Targeting Cancer Stem Cells: A Paradigm to Anticancer Efficacy
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  17. Casticin Attenuates Stemness in Cervical Cancer Stem-Like Cells by Regulating Activity and Expression of DNMT1
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  18. Casticin as potential anticancer agent: recent advancements in multi-mechanistic approaches
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  19. Natural Products Targeting Cancer Stem Cells for Augmenting Cancer Therapeutics
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