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Updated: Jun 17, 2025

Author Spotlight: Radiotherapy and Clonogenic Assays for Advancing Cancer Research and Personalized Medicine
Published on: April 5, 2024
Oleandrin enhances radiotherapy sensitivity in lung cancer by inhibiting the ATM/ATR-mediated DNA damage response
Qiong Wu1,2, Xue Liu1, Li-Min Wang3
1Department of Integrated Chinese and Western Medicine, Zhejiang Cancer Hospital, Hangzhou, Zhejiang, China.
Abstract:
Despite active clinical trials on the use of Oleandrin alone or in combination with other drugs for the treatment of solid tumors, the potential synergistic effect of Oleandrin with radiotherapy remains unknown. This study reveals a new mechanism by which Oleandrin targets ATM and ATR kinase-mediated radiosensitization in lung cancer. Various assays, including clonogenic, Comet, immunofluorescence staining, apoptosis and Cell cycle assays, were conducted to evaluate the impact of oleandrin on radiation-induced double-strand break repair and cell cycle distribution. Western blot analysis was utilized to investigate alterations in signal transduction pathways related to double-strand break repair. The efficacy and toxicity of the combined therapy were assessed in a preclinical xenotransplantation model. Functionally, Oleandrin weakens the DNA damage repair ability and enhances the radiation sensitivity of lung cells. Mechanistically, Oleandrin inhibits ATM and ATR kinase activities, blocking the transmission of ATM-CHK2 and ATR-CHK1 cell cycle checkpoint signaling axes. This accelerates the passage of tumor cells through the G2 phase after radiotherapy, substantially facilitating the rapid entry of large numbers of inadequately repaired cells into mitosis and ultimately triggering mitotic catastrophe. The combined treatment of Oleandrin and radiotherapy demonstrated superior inhibition of tumor proliferation compared to either treatment alone. Our findings highlight Oleandrin as a novel and effective inhibitor of ATM and ATR kinase, offering new possibilities for the development of clinical radiosensitizing adjuvants.
Insights
Oleandrin enhances lung cancer radiotherapy by inhibiting DNA repair kinases ATM and ATR. This novel radiosensitization strategy promotes mitotic catastrophe, improving tumor control in preclinical models.
Area of Science:
- Oncology
- Molecular Biology
- Radiotherapy Research
Background:
- Oleandrin is under investigation for solid tumor treatment.
- The radiosensitizing potential of Oleandrin is largely unexplored.
Purpose of the Study:
- To investigate Oleandrin's synergistic effect with radiotherapy in lung cancer.
- To elucidate the underlying molecular mechanisms of Oleandrin-induced radiosensitization.
Main Methods:
- Clonogenic, Comet, immunofluorescence, apoptosis, and cell cycle assays.
- Western blot analysis for signal transduction pathways.
- Preclinical xenotransplantation models for efficacy and toxicity assessment.
Main Results:
- Oleandrin impairs DNA damage repair and increases lung cancer cell sensitivity to radiation.
- Oleandrin inhibits ATM and ATR kinase activity, disrupting ATM-CHK2 and ATR-CHK1 signaling.
- Combined Oleandrin and radiotherapy treatment significantly inhibited tumor proliferation more than monotherapy.
Conclusions:
- Oleandrin acts as a novel inhibitor of ATM and ATR kinases.
- Oleandrin demonstrates potential as a radiosensitizing adjuvant for lung cancer therapy.
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