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Original Article | Open Access

Nintedanib enhances tumor cell radiosensitivity by promoting ferroptosis and modulating the ATF4/SLC7A11/GSH axis

Chunya LiAifeina AiliQingqing YuMu YangQiyuan FengDuo XuBo LiuJingyao Tu ( )Xianglin Yuan ( )
Department of Oncology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China
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Abstract

Objective

Tumor cell radio-resistance and radiation-induced fibrosis of normal tissues hinder the efficacy of radiotherapy. Nintedanib, a promising therapeutic agent for radiation-induced pulmonary fibrosis and solid tumors, has yet to be investigated in combination with radiotherapy. This study aimed to evaluate the antitumor efficacy of nintedanib in conjunction with radiotherapy.

Methods

Tumor-bearing models were utilized to assess the antitumor effects and safety of treatment with nintedanib and radiotherapy in vivo. Reactive oxygen species (ROS), lipid peroxidation assays, and transmission electron microscopy were used to determine the impact of the combined treatment strategy on tumor cell death. Overexpression plasmids and shRNA knockdown techniques were applied to explore and validate the underlying mechanisms.

Results

The combination of nintedanib and radiotherapy demonstrated a potent antitumor effect in vivo. Nintedanib suppressed the SLC7A11-mediated GSH synthesis pathway by downregulating ATF4, the expression of which was elevated in response to radiation as an adaptive mechanism. Consequently, nintedanib combined with radiotherapy enhanced ferroptosis in tumor cells.

Conclusion

These findings support the use of nintedanib in combination with radiotherapy as an effective, low-toxicity treatment strategy, highlighting the antitumor potential of ATF4-targeted agents.

Electronic Supplementary Material

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Cancer Biology & Medicine
Pages 1627-1647

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Cite this article:
Li C, Aili A, Yu Q, et al. Nintedanib enhances tumor cell radiosensitivity by promoting ferroptosis and modulating the ATF4/SLC7A11/GSH axis. Cancer Biology & Medicine, 2025, 22(12): 1627-1647. https://doi.org/10.20892/j.issn.2095-3941.2025.0275

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Received: 30 May 2025
Accepted: 27 August 2025
Published: 19 November 2025
©2025 The Authors.

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