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Updated: Jun 27, 2025

Author Spotlight: Tracing the Ferroptotic Signatures and Cell Death Dynamics in Medulloblastoma for Advanced Therapeutics
Published on: March 15, 2024
The biology of ferroptosis in kidney disease
Tobias Seibt1,2, Adam Wahida1, Konrad Hoeft3
1Institute of Metabolism and Cell Death, Helmholtz Zentrum München, Neuherberg, Germany.
Abstract:
Ferroptosis is a regulated cell death modality triggered by iron-dependent lipid peroxidation. Ferroptosis plays a causal role in the pathophysiology of various diseases, making it a promising therapeutic target. Unlike all other cell death modalities dependent on distinct signaling cues, ferroptosis occurs when cellular antioxidative defense mechanisms fail to suppress the oxidative destruction of cellular membranes, eventually leading to cell membrane rupture. Physiologically, only two such surveillance systems are known to efficiently prevent the lipid peroxidation chain reaction by reducing (phospho)lipid hydroperoxides to their corresponding alcohols or by reducing radicals in phospholipid bilayers, thus maintaining the integrity of lipid membranes. Mechanistically, these two systems are linked to the reducing capacity of glutathione peroxidase 4 (GPX4) by consuming glutathione (GSH) on one hand and ferroptosis suppressor protein 1 (FSP1, formerly AIFM2) on the other. Notably, the importance of ferroptosis suppression in physiological contexts has been linked to a particular vulnerability of renal tissue. In fact, early work has shown that mice genetically lacking Gpx4 rapidly succumb to acute renal failure with pathohistological features of acute tubular necrosis. Promising research attempting to implicate ferroptosis in various renal disease entities, particularly those with proximal tubular involvement, has generated a wealth of knowledge with widespread potential for clinical translation. Here, we provide a brief overview of the involvement of ferroptosis in nephrology. Our goal is to introduce this expanding field for clinically versed nephrologists in the hope of spurring future efforts to prevent ferroptosis in the pathophysiological processes of the kidney.
Insights
Ferroptosis, a cell death process driven by iron and lipid peroxidation, is implicated in kidney diseases. Understanding ferroptosis mechanisms is key to developing new kidney disease therapies.
Area of Science:
- Biochemistry
- Cell Biology
- Nephrology
Background:
- Ferroptosis is regulated cell death driven by iron-dependent lipid peroxidation.
- It occurs when antioxidant defenses fail, leading to membrane rupture.
- Two key systems, glutathione peroxidase 4 (GPX4) and ferroptosis suppressor protein 1 (FSP1), prevent lipid peroxidation.
Purpose of the Study:
- To provide an overview of ferroptosis's involvement in nephrology.
- To introduce this field to nephrologists for potential therapeutic development.
- To highlight the kidney's vulnerability to ferroptosis.
Main Methods:
- Literature review on ferroptosis and kidney disease.
- Discussion of the molecular mechanisms of ferroptosis.
- Analysis of existing research on ferroptosis in renal pathophysiology.
Main Results:
- Ferroptosis plays a causal role in various diseases, including renal pathologies.
- GPX4 and FSP1 are critical in preventing ferroptosis.
- Genetic deficiency in GPX4 leads to acute renal failure in mice.
Conclusions:
- Ferroptosis is a significant factor in kidney disease pathogenesis.
- Targeting ferroptosis pathways offers potential therapeutic strategies for renal diseases.
- Further research is needed to translate ferroptosis knowledge into clinical applications for kidney protection.
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