C5b-9 mediates ferroptosis of tubular epithelial cells in trichloroethylene-sensitization mice

Occupational medicamentose-like dermatitis due to trichloroethylene (OMDT) is a key but unresolved question. OMDT patients often present multiple organ damage, including kidney damage. However, the underlying mechanism remains unknown. The purpose of our study was to explore the effect of tubule-spe...

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Veröffentlicht in:Ecotoxicology and environmental safety 2022-10, Vol.244, p.114020, Article 114020
Hauptverfasser: Liu, Zhibing, Ma, Jinru, Zuo, Xulei, Zhang, Xuesong, Hong, Yiting, Cai, Shuyang, Huang, Hua, Wang, Feng, Wu, Changhao, Zhang, Jiaxiang, Zhu, Qixing
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Sprache:eng
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Zusammenfassung:Occupational medicamentose-like dermatitis due to trichloroethylene (OMDT) is a key but unresolved question. OMDT patients often present multiple organ damage, including kidney damage. However, the underlying mechanism remains unknown. The purpose of our study was to explore the effect of tubule-specific C5b-9 deposition induced by TCE sensitization on renal tubular ferroptosis and its mechanism. By analyzing pathological changes of TCE-sensitization-mice kidney, we observed a significant renal tubular ferroptosis, which was alleviated by CD59, a C5b-9 inhibitory protein. Moreover, this phenomenon was also replicated in a C5b-9-attacked HK-2 cell model. Further experiments identified that C5b-9 induced cytosolic Ca2+ overload in renal tubular epithelia cells from TCE-sensitization-mice and HK-2 cells. Furthermore, in vitro experiments showed that BAPTA-AM, an intracellular Ca2+ chelator, could rescued ferroptosis induced by C5b-9 in HK-2 cells. Taken together, TCE sensitization induced renal tubular ferroptosis is mediated by C5b-9 and cytosolic Ca2+ overload may play a key role. •TECs ferroptosis involved in TCE-sensitization-induced kidney injury.•Tubule-specific C5b-9 deposition caused by TCE sensitization mediated TECs ferroptosis of TCE-sensitization mice.•Cytosolic Ca2+ overload play an important role in TECs ferroptosis of TCE-sensitization mice.
ISSN:0147-6513
1090-2414
DOI:10.1016/j.ecoenv.2022.114020