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红细胞衍生的微粒通过触发血管内溶血中的内皮细胞铁死亡诱导肾损伤。

Red blood cell-derived microparticles induce kidney injury by triggering endothelial cell ferroptosis in intravascular hemolysis.

作者信息

An Yao, Zhang Hongyu, Hu Danfeng, Zhang Jingqiu, Liu Qi, Liu Caixu, Yan Meishan, Li Siqi, Xu Minghui, Gao Chunyan

机构信息

Department of Medical Laboratory Science and Technology, Harbin Medical University-Daqing, Daqing, China; Engineering Technology Research Center for Precision Diagnosis and Treatment of Frigid Zone-Related Diseases in Heilongjiang Province, China.

Department of Medical Laboratory Science and Technology, Harbin Medical University-Daqing, Daqing, China; Engineering Technology Research Center for Precision Diagnosis and Treatment of Frigid Zone-Related Diseases in Heilongjiang Province, China.

出版信息

Redox Biol. 2025 Jul 15;85:103771. doi: 10.1016/j.redox.2025.103771.

Abstract

Intravascular hemolysis is a common event in the pathogenesis of numerous diseases with heterogeneous etiologies and clinical features. A frequent adverse effect of massive hemolysis is kidney injury, which is a major cause of increased morbidity and mortality in chronic hemolytic diseases. However, the role of crosstalk between red blood cell-derived microparticles (RMPs) and endothelial cells (ECs) in hemolysis remains unknown, especially in hemolysis-mediated kidney injury. To answer this question, we established an in vitro co-incubation model of hemolysis-derived RMPs and ECs as well as a mouse model intravenously injected with hemolytic RMPs. We found that a large number of internalized RMPs contributed to the ferroptosis of ECs via iron overload, amino acid metabolism disorder, and the miR-130a/ACSL4 axis. Furthermore, RMPs-induced endothelial ferroptosis could enhance oxidative stress, aggravate histopathological damage, and promote loss of renal function in mice. These pathological effects were significantly ameliorated in mice treated with ferroptosis inhibitors ferrostatin-1 (Fer-1) and deferoxamine (DFO). In conclusion, our study demonstrated that RMPs-induced ferroptosis of ECs plays an important role in the development and progression of kidney damage associated with hemolysis, and inhibition of ferroptosis may be a potential therapeutic approach to prevent renal injury in patients with severe hemolytic crisis.

摘要

血管内溶血是多种病因和临床特征各异的疾病发病机制中的常见事件。大量溶血的常见不良反应是肾损伤,这是慢性溶血性疾病发病率和死亡率增加的主要原因。然而,红细胞衍生微粒(RMPs)与内皮细胞(ECs)之间的相互作用在溶血中的作用尚不清楚,尤其是在溶血介导的肾损伤中。为了回答这个问题,我们建立了溶血衍生的RMPs与ECs的体外共孵育模型以及静脉注射溶血RMPs的小鼠模型。我们发现,大量内化的RMPs通过铁过载、氨基酸代谢紊乱和miR-130a/ACSL4轴导致ECs发生铁死亡。此外,RMPs诱导的内皮细胞铁死亡可增强氧化应激,加重组织病理学损伤,并促进小鼠肾功能丧失。在用铁死亡抑制剂铁抑素-1(Fer-1)和去铁胺(DFO)治疗的小鼠中,这些病理效应得到显著改善。总之,我们的研究表明,RMPs诱导的ECs铁死亡在与溶血相关的肾损伤的发生和发展中起重要作用,抑制铁死亡可能是预防严重溶血危机患者肾损伤的一种潜在治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7df7/12283566/4906c4c27320/gr1.jpg

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