4.7 Article

Ferroportin-mediated ferroptosis involved in new-onset atrial fibrillation with LPS-induced endotoxemia

Journal

EUROPEAN JOURNAL OF PHARMACOLOGY
Volume 913, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.ejphar.2021.174622

Keywords

Sepsis; Endotoxemia; Atrial fibrillation; Ferroportin; Ferroptosis

Funding

  1. National Key Research and Development Program of China [2017YFC1700504]
  2. National Natural Science Foundation of China [82070330]

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This study found significant activation of ferroptosis in a rat model of endotoxemia, as well as downregulation of ferroportin in the atrium, leading to increased vulnerability to AF. Inhibiting ferroptosis can alleviate AF vulnerability. The research reveals the important role of ferroportin-mediated ferroptosis in new-onset AF induced by sepsis.
Sepsis is a known risk factor for new-onset atrial fibrillation (AF), and previous studies have demonstrated that ferroptosis participates in sepsis-induced organ injury development. Nevertheless, the role of ferroptosis in newonset AF with sepsis remains largely unknown. This study aims to investigate the underlying mechanisms linking ferroptosis and AF caused by sepsis. LPS-induced endotoxemia is often used to model the acute inflammatory response associated with sepsis. Herein, we reported that ferroptosis was significantly activated in LPS-induced endotoxemia rat model. We also observed that ferroportin (Fpn), the only identified mammalian non-heme iron exporter, was downregulated in the atrium of endotoxemia model. Vulnerability to AF was also significantly increased in a endotoxemia rat model. Additionally, Fpn knockdown by shFpn further increased intracellular iron concentration and oxidative stress and exaggerated the AF vulnerability, which was alleviated by ferroptosis inhibition. Mechanistically, silencing Fpn worsened the alterations in calcium handling proteins expression in a endotoxemia rat model. These findings suggest that Fpn-mediated ferroptosis is involved in the new-onset AF with LPS-induced endotoxemia via worsening the calcium handling proteins dysregulation and provides a novel and promising strategy for preventing AF development in sepsis.

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