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砷通过 mtROS 介导的线粒体相关内质网膜功能障碍诱导铁死亡和急性肺损伤。

Arsenic induces ferroptosis and acute lung injury through mtROS-mediated mitochondria-associated endoplasmic reticulum membrane dysfunction.

机构信息

Department of Respiratory and Critical Care Medicine, Second Affiliated Hospital of Anhui Medical University, Hefei, Anhui 230601, China; Department of Toxicology, Anhui Medical University, Hefei 230032, China.

Department of Respiratory and Critical Care Medicine, Second Affiliated Hospital of Anhui Medical University, Hefei, Anhui 230601, China; Department of Toxicology, Anhui Medical University, Hefei 230032, China.

出版信息

Ecotoxicol Environ Saf. 2022 Jun 15;238:113595. doi: 10.1016/j.ecoenv.2022.113595. Epub 2022 May 4.

Abstract

The goal of this study was to analyze whether mitochondria-associated endoplasmic reticulum membrane (MAMs) dysfunction mediated arsenic (As)-evoked pulmonary ferroptosis and acute lung injury (ALI). As exposure led to alveolar structure damage, inflammatory cell infiltration and pulmonary function decline in mice. Ferritin, the marker of iron overload, was increased, GPX4, the index of lipid peroxidation, was decreased in As-exposed lungs and pulmonary epithelial cells (MLE-12). Pretreatment with ferrostatin-1 (Fer-1), the inhibitor of ferroptosis, alleviated As-evoked ALI. In addition, As-induced non-heme iron deposition was inhibited in Fer-1 pretreated-mice. Moreover, As-triggered mitochondria damage and ferroptosis were mitigated in Fer-1 pretreated-MLE-12 cells. Mechanistically, PERK phosphorylation and mitofusin-2 (Mfn-2) reduction was observed in As-exposed MLE-12 cells and mice lungs. Additionally, the interaction between PERK and Mfn-2 was downregulated and MAMs dysfunction was observed in As-exposed MLE-12 cells. Intriguingly, PERK inhibitor and Mfn-2-overexpression all mitigated As-induced ferroptosis in MLE-12 cells. Additionally, CLPP and mtHSP70, the markers of mitochondrial stress, were upregulated, mitochondrial ROS (mtROS) was elevated, mitochondrial membrane potential (MMP) and ATP were decreased in As-exposed MLE-12 cells. Mitoquinone mesylate (MitoQ), a novel mitochondrial-targeted antioxidant, alleviated As-induced excess mtROS, mitochondrial stress, MAMs dysfunction in pulmonary epithelial cells. Similarly, in vivo experiments indicated that MitoQ pretreatment countered As-induced pulmonary ferroptosis and ALI. These data indicated that mtROS-initiated MAMs dysfunction is, at least partially, implicated in As-evoked ferroptosis and ALI.

摘要

本研究旨在分析线粒体相关内质网膜(MAMs)功能障碍是否介导砷(As)引发的肺铁死亡和急性肺损伤(ALI)。As 暴露导致小鼠肺泡结构损伤、炎性细胞浸润和肺功能下降。暴露于 As 的肺部和肺上皮细胞(MLE-12)中铁蛋白(铁超载的标志物)增加,GPX4(脂质过氧化的指标)减少。铁死亡抑制剂 Fer-1(Fer-1)预处理减轻了 As 诱导的 ALI。此外,Fer-1 预处理的小鼠中 As 诱导的非血红素铁沉积受到抑制。此外,Fer-1 预处理减轻了 MLE-12 细胞中 As 引发的线粒体损伤和铁死亡。机制上,在暴露于 As 的 MLE-12 细胞和小鼠肺中观察到 PERK 磷酸化和融合蛋白-2(Mfn-2)减少。此外,在暴露于 As 的 MLE-12 细胞中观察到 PERK 和 Mfn-2 之间的相互作用下调和 MAMs 功能障碍。有趣的是,PERK 抑制剂和 Mfn-2 过表达均可减轻 MLE-12 细胞中 As 诱导的铁死亡。此外,线粒体应激标志物 CLPP 和 mtHSP70 上调,线粒体 ROS(mtROS)升高,线粒体膜电位(MMP)和 ATP 降低在暴露于 As 的 MLE-12 细胞中。线粒体靶向抗氧化剂 MitoQ 减轻了 As 诱导的肺上皮细胞中过多的 mtROS、线粒体应激和 MAMs 功能障碍。同样,体内实验表明,MitoQ 预处理可减轻 As 诱导的肺铁死亡和 ALI。这些数据表明,mtROS 引发的 MAMs 功能障碍至少部分参与了 As 诱导的铁死亡和 ALI。

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