4.6 Article

Hemin enhances radiosensitivity of lung cancer cells through ferroptosis

期刊

EXPERIMENTAL CELL RESEARCH
卷 410, 期 1, 页码 -

出版社

ELSEVIER INC
DOI: 10.1016/j.yexcr.2021.112946

关键词

Ferroptosis; Hemin; Radiosensitivity; ROS; GPx4; FTH1; Bilirubin

资金

  1. Chinese National Natural Science Foundation of China [81974484]
  2. CASHIPS Directors Fund [YZJJ2018QN19]
  3. Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD)
  4. Jiangsu Provincial Key Laboratory of Radiation Medicine and Protection
  5. State Key Lab in Marine Pollution (SKLMP), City University of Hong Kong [IRF/0024]

向作者/读者索取更多资源

The principle of radiotherapy is to kill cancer cells while minimizing harm to non-cancer cells. Ferroptosis has been proposed as a new mechanism of radiation-induced cell death. This study demonstrated that Hemin, an iron overload agent, enhances reactive oxygen species (ROS) generation induced by ionizing radiation in lung cancer cells, leading to ferroptosis. Hemin also protected normal lung cells against radiation-induced cell death.
The principle underlying radiotherapy is to kill cancer cells while minimizing the harmful effects on non-cancer cells, which has still remained as a major challenge. In relation, ferroptosis has recently been proposed as a novel mechanism of radiation-induced cell death. In this study, we investigated and demonstrated the role of Hemin as an iron overloading agent in the generation of reactive oxygen species (ROS) induced by ionizing radiation in lung cancer and non-cancer cells. It was found that the presence of Hemin in irradiated lung cancer cells enhanced the productivity of initial ROS, resulting in lipid peroxidation and subsequent ferroptosis. We observed that application of Hemin as a co-treatment increased the activity of GPx4 degradation in both cancer and normal lung cells. Furthermore, Hemin protected normal lung cells against radiation-induced cell death, in that it suppressed ROS after radiation, and boosted the production of bilirubin which was a lipophilic ROS antioxidant. In addition, we demonstrated significant FTH1 expression in normal lung cells when compared to lung cancer cells, which prevented iron from playing a role in increasing IR-induced cell death. Our findings demonstrated that Hemin had a dual function in enhancing the radiosensitivity of ferroptosis in lung cancer cells while promoting cell survival in normal lung cells.

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