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May 8, 2024Redox Biology75 citationsOpen Access

Mitochondrial GPX4 acetylation is involved in cadmium-induced renal cell ferroptosis

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YGYue‐Yue GuoNLNannan LiangXZXiaoyi Zhang

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Abstract

Increasing evidences demonstrate that environmental stressors are important inducers of acute kidney injury (AKI). This study aimed to investigate the impact of exposure to Cd, an environmental stressor, on renal cell ferroptosis. Transcriptomics analyses showed that arachidonic acid (ARA) metabolic pathway was disrupted in Cd-exposed mouse kidneys. Targeted metabolomics showed that renal oxidized ARA metabolites were increased in Cd-exposed mice. Renal 4-HNE, MDA, and ACSL4, were upregulated in Cd-exposed mouse kidneys. Consistent with animal experiments, the in vitro experiments showed that mitochondrial oxidized lipids were elevated in Cd-exposed HK-2 cells. Ultrastructure showed mitochondrial membrane rupture in Cd-exposed mouse kidneys. Mitochondrial cristae were accordingly reduced in Cd-exposed mouse kidneys. Mitochondrial SIRT3, an NAD

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Cite This Study

Guo et al. (2024) studied this question.

synapsesocial.com/papers/68e6b00ab6db6435876312f9https://doi.org/10.1016/j.redox.2024.103179
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