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Updated: Jan 24, 2026

Radiosensitivity of Cancer Stem Cells in Lung Cancer Cell Lines
Published on: August 21, 2019
Lusianthridin targeting of lung cancer stem cells via Src-STAT3 suppression
Narumol Bhummaphan1, Nalinrat Petpiroon2, Ornjira Prakhongcheep2
1Inter-Department Program of Biomedical Sciences, Faculty of Graduate School, Chulalongkorn University, Bangkok 10330, Thailand; Cell-Based Drug and Health Product Development Research Unit, Faculty of Pharmaceutical Sciences, Chulalongkorn University, Bangkok 10330, Thailand.
Background:
Cancer stem cells (CSCs) are well-recognized as a majority cause of treatment failure and can give rise to relapse. The discovery of compounds attenuating CSCs' properties is crucial for enabling advances in novel therapeutics to limit recurrence. CSCs' features in lung cancer are regulated through a reduction in Src-STAT3-c-Myc, which drives cancer progression, drug resistance, and metastasis.
Methods:
The effect of lusianthridin suppresses CSC-like phenotypes was determined by 3D culture and anchorage independent growth. The expression of CSC markers and associated proteins were determined by Western blot analyses. Protein ubiquitination and degradation were assessed using immunoprecipitation.
Results:
Herein, we report that lusianthridin, a pure compound from Dendrobium venustum, dramatically suppressed CSCs in lung cancer cells as verified by several CSC phenotype assessments and CSC markers. The CSC phenotypes in lusianthridin-treated cells were suppressed through downregulation of Src-STAT3-c-Myc pathways. Ectopic Src introduced by the transfection augmented CSC phenotypes in lung cancer cells through STAT3 (increased active p-STAT3Tyr705) and c-Myc signals, while the ShRNA-Src transfection or Src inhibitor dasatinib exhibited opposite results. Treatment of the Src-overexpressing cells with lusianthridin resulted in the reversal of active STAT3 (p-STAT3Tyr705) and c-Myc as well as the CSC marker CD133. Importantly, we confirmed the CSC-targeted activity of lusianthridin in CSC-rich primary lung cancer cells. The compound dramatically inhibited the formation of tumor spheres of primary lung cancer cells. Finally, we demonstrated that after CSC-attenuation by lusianthridin, the lung cancer cells exhibited significantly higher susceptibility to chemotherapeutic drugs. Such a sensitizing effect caused by pro-survival suppression and pro-apoptotic induction together with the abolishment of stemness indicated by the decrease in CSC markers CD133, ABCG2, and ALDH1A1.
Conclusion:
These findings revealed a novel pharmacological action and the underlying mechanism of lusianthridin in negatively regulating CSC-like phenotypes and sensitizing resistant cancer cells to cemetery.
Insights
Lusianthridin suppresses lung cancer stem cells (CSCs) by inhibiting the Src-STAT3-c-Myc pathway. This compound also sensitizes resistant lung cancer cells to chemotherapy, offering a novel therapeutic strategy.
Area of Science:
- * Oncology
- * Pharmacology
Background:
- * Cancer stem cells (CSCs) drive treatment failure and relapse in lung cancer.
- * CSCs' properties are regulated by the Src-STAT3-c-Myc pathway, promoting progression and resistance.
- * Novel compounds targeting CSCs are crucial for effective lung cancer therapeutics.
Purpose of the Study:
- * To investigate the effect of lusianthridin on lung cancer stem cells (CSCs).
- * To elucidate the mechanism by which lusianthridin affects CSC phenotypes and drug resistance.
- * To evaluate lusianthridin's potential as a therapeutic agent in lung cancer.
Main Methods:
- * Assessed lusianthridin's effect on CSC-like phenotypes using 3D culture and anchorage-independent growth assays.
- * Determined CSC marker and associated protein expression via Western blot analysis.
- * Investigated protein ubiquitination and degradation using immunoprecipitation.
Main Results:
- * Lusianthridin significantly suppressed CSC phenotypes and markers in lung cancer cells.
- * Downregulation of the Src-STAT3-c-Myc pathway mediated lusianthridin's anti-CSC effects.
- * Lusianthridin enhanced lung cancer cell susceptibility to chemotherapeutic drugs by reducing stemness and inducing apoptosis.
Conclusions:
- * Lusianthridin exhibits a novel pharmacological action in negatively regulating CSC-like phenotypes.
- * The compound targets the Src-STAT3-c-Myc pathway, offering a mechanism for overcoming drug resistance.
- * Lusianthridin sensitizes resistant lung cancer cells to chemotherapy, indicating its therapeutic potential.
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