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Open AccessJournal ArticleDOI

Ferrostatin-1 alleviates lipopolysaccharide-induced acute lung injury via inhibiting ferroptosis

TLDR
It is indicated that ferroptosis has an important role in the progression of LPS-induced ALI, and ferroPTosis may become a novel target in the treatment of ALI patients.
Abstract
Ferroptosis is a newly recognized type of cell death, which is different from traditional necrosis, apoptosis or autophagic cell death. However, the position of ferroptosis in lipopolysaccharide (LPS)-induced acute lung injury (ALI) has not been explored intensively so far. In this study, we mainly analyzed the relationship between ferroptosis and LPS-induced ALI. In this study, a human bronchial epithelial cell line, BEAS-2B, was treated with LPS and ferrostatin-1 (Fer-1, ferroptosis inhibitor). The cell viability was measured using CCK-8. Additionally, the levels of malondialdehyde (MDA), 4-hydroxynonenal (4-HNE), and iron, as well as the protein level of SLC7A11 and GPX4, were measured in different groups. To further confirm the in vitro results, an ALI model was induced by LPS in mice, and the therapeutic action of Fer-1 and ferroptosis level in lung tissues were evaluated. The cell viability of BEAS-2B was down-regulated by LPS treatment, together with the ferroptosis markers SLC7A11 and GPX4, while the levels of MDA, 4-HNE and total iron were increased by LPS treatment in a dose-dependent manner, which could be rescued by Fer-1. The results of the in vivo experiment also indicated that Fer-1 exerted therapeutic action against LPS-induced ALI, and down-regulated the ferroptosis level in lung tissues. Our study indicated that ferroptosis has an important role in the progression of LPS-induced ALI, and ferroptosis may become a novel target in the treatment of ALI patients.

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SIRT2 inhibition exacerbates p53-mediated ferroptosis in mice following experimental traumatic brain injury.

TL;DR: In this paper, the role of p53-mediated ferroptosis in traumatic brain injury (TBI) has been investigated, and SIRT2 has been shown to have a neuroprotective effect against TBI.
Journal ArticleDOI

Targeting ferroptosis as a vulnerability in pulmonary diseases

TL;DR: In this paper , the role of ferroptosis in the pathogenesis of pulmonary diseases including asthma, lung injury, lung cancer, fibrotic lung diseases, and pulmonary infection was discussed.
Journal ArticleDOI

Targeting Ferroptosis for Lung Diseases: Exploring Novel Strategies in Ferroptosis-Associated Mechanisms.

TL;DR: In this paper, the authors summarized the functions and integrated molecular mechanisms of ferroptosis in various lung diseases, and proposed that multi-angle regulation of FerroPTosis might be a promising strategy for the clinical treatment of lung diseases.
Journal ArticleDOI

Nickel oxide nanoparticles induce apoptosis and ferroptosis in airway epithelial cells via ATF3

TL;DR: It is demonstrated that ATF3 was responsive to NiONPs exposure, and promoted NiONSPs‐induced apoptosis and ferroptosis in lung epithelial cells, indicating that ATF 3 is a potential biomarker and therapeutic target for NiONps‐associated ALI.
References
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Journal ArticleDOI

Ferroptosis: process and function.

TL;DR: Misregulated ferroptosis has been implicated in multiple physiological and pathological processes, including cancer cell death, neurotoxicity, neurodegenerative diseases, acute renal failure, drug-induced hepatotoxicity, hepatic and heart ischemia/reperfusion injury, and T-cell immunity.
Journal ArticleDOI

Animal models of acute lung injury.

TL;DR: The goal of this review is to summarize the strengths and weaknesses of existing models of lung injury and help guide investigators in the design and interpretation of animal studies of acute lung injury.
Journal ArticleDOI

Mechanisms of ferroptosis

TL;DR: Outstanding questions include the relationship between ferroPTosis and other forms of cell death, and whether activation or inhibition of ferroptosis can be exploited to achieve desirable therapeutic ends.
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