Ferroptosis as a central mechanism in inhaled tris(1-chloro-iso-propyl) phosphate (TCIPP)-induced lung injury: Associations with pyroptosis and mitochondrial dynamic imbalance
Abstract
), along with elevated ferroptosis markers (p53, Transferrin Receptor 1 (TFR1)) and reduced FTH1 levels following TCIPP inhalation. These effects were counteracted by the ferroptosis inhibitor Fer‑1 (0.8 mg/kg), which also attenuated pathological damage, ROS accumulation, and NLRP3‑mediated pyroptosis. Concurrently, electron microscopy analysis demonstrated mitochondrial cristae membrane disruption and shrinkage, accompanied by dysregulated expression of mitochondrial dynamics regulators (down‑regulated Mfn1/2 and up‑regulated Drp1), all of which were reversed by Fer‑1. Collectively, the results indicate that TCIPP inhalation induces GPX4‑dependent ferroptosis, promoting inflammatory responses and mitochondrial imbalance, ultimately driving respiratory toxicity. Ferroptosis thus represents a potential therapeutic target for organophosphorus flame retardant‑associated lung injury, which may aid in biomarker discovery for related pulmonary diseases.
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Authors: Zhimin Fu, Jian Zhou, Bixiao Lin, Wentao Ma, Wei Du, Jianping Zhou, Xuan Xiong, Siwen Li, Xingchao Liu
Institutions: Central South University, Dongguan People’s Hospital, University of Electronic Science and Technology of China, Heilongjiang Provincial Hospital