Ecotoxicology and Environmental Safety (Jan 2024)

Magnetic graphene oxide nanocomposites induce cytotoxicity in ADSCs via GPX4 regulating ferroptosis

  • Yi He,
  • Fangyang Shi,
  • Jiajun Hu,
  • Hongyu Li,
  • Xun Chen,
  • Lingyu Yuan,
  • Yunyang Lu,
  • Weidong Du,
  • Runze Li,
  • Jie Wu,
  • Feilong Deng,
  • Dongsheng Yu

Journal volume & issue
Vol. 269
p. 115745

Abstract

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Magnetic graphene oxide nanocomposites (MGO NPs) have been widely studied in biomedical applications. However, their cytotoxicity and underlying mechanisms remain unclear. In this study, the biosafety of MGO NPs was investigated, and the mechanism involved in ferroptosis was further explored. MGO can produce cytotoxicity in ADSCs, which is dependent on their concentration. Ferroptosis was involved in MGO NP-induced ADSC survival inhibition by increasing total ROS and lipid ROS accumulation as well as regulating the expression levels of ferroptosis-related genes and proteins. GPX4 played a critical role in the MGO NP-induced ADSC ferroptosis process, and overexpressing GPX4 suppressed ferroptosis to increase cell survival. This study provides a theoretical basis for the biosafety management of MGO NPs used in the field of biomedical treatment.

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