Mesenchymal stem cell-derived extracellular vesicles attenuate ferroptosis in aged hepatic ischemia/reperfusion injury by transferring miR-1275

IF 11.9 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Redox Biology Pub Date : 2025-04-01 Epub Date: 2025-02-18 DOI:10.1016/j.redox.2025.103556
Yihang Gong , Qiang You , Xiaofeng Yuan , Fanxin Zeng , Feng Zhang , Jiaqi Xiao , Haitian Chen , Yasong Liu , Tingting Wang , Xijing Yan , Wenjie Chen , Yingcai Zhang , Qi Zhang , Jia Yao , Jiebin Zhang , Rong Li , Jun Zheng
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Abstract

With an aging global population, the proportion of aged donor livers in graft pools is steadily increasing. Compared to young livers, aged livers exhibit heightened susceptibility to hepatic ischemia/reperfusion injury (HIRI), which significantly limits their utilisation in liver transplantation (LT) and exacerbates organ shortages. Our previous study demonstrated that ferroptosis is a pivotal trigger for HIRI vulnerability in aged livers. However, effective clinical strategies for the inhibition of ferroptosis remain elusive. Utilizing an aged mouse HIRI model, primary hepatocytes, and human liver organoids, this study provides hitherto undocumented evidence that mesenchymal stem cell-derived extracellular vesicles (MSC-EVs) effectively alleviate HIRI in aged livers by inhibiting ferroptosis. Mechanistically, miR-1275, which was significantly enriched within MSC-EVs, was transferred to hepatocytes. Subsequently, miR-1275 downregulated the expression of SLC39A14, a crucial iron transporter that is upregulated in aged livers and plays a pivotal role in promoting ferroptosis. Furthermore, we found a negative correlation between SLC39A14 levels and prognosis of aged donor liver recipients using clinical LT samples. Silencing miR-1275 in MSC-EVs or modulating SLC39A14 levels in aged livers reversed MSC-EV-mediated mitigation of ferroptosis. Collectively, these findings revealed the novel therapeutic potential of MSC-EVs in attenuating aged HIRI, suggesting a promising treatment for improving prognosis and preventing serious complications in recipients of aged liver grafts during LT.

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间充质干细胞来源的细胞外囊泡通过转移miR-1275减轻老年肝缺血再灌注损伤中的铁下垂
随着全球人口的老龄化,老龄供肝在移植池中的比例正在稳步上升。与年轻肝脏相比,老年肝脏对肝缺血/再灌注损伤(HIRI)的易感程度更高,这极大地限制了它们在肝移植(LT)中的应用,并加剧了器官短缺。我们之前的研究表明,铁下垂是老年肝脏HIRI易感性的关键触发因素。然而,抑制铁下垂的有效临床策略仍然难以捉摸。利用老年小鼠HIRI模型、原代肝细胞和人肝类器官,本研究提供了迄今未见的证据,证明间充质干细胞来源的细胞外囊泡(msc - ev)通过抑制铁下沉有效减轻老年肝脏HIRI。机制上,在msc - ev中显著富集的miR-1275被转移到肝细胞。随后,miR-1275下调SLC39A14的表达,SLC39A14是一种重要的铁转运蛋白,在衰老肝脏中上调,在促进铁下沉中起关键作用。此外,我们通过临床肝移植样本发现SLC39A14水平与老年供肝受体预后呈负相关。沉默msc - ev中的miR-1275或调节老年肝脏中的SLC39A14水平可逆转msc - ev介导的铁下垂缓解。总的来说,这些发现揭示了msc - ev在减轻老年HIRI方面的新的治疗潜力,表明了一种有希望的治疗方法,可以改善老年肝移植受体在LT期间的预后和预防严重并发症。
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来源期刊
Redox Biology
Redox Biology BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
19.90
自引率
3.50%
发文量
318
审稿时长
25 days
期刊介绍: Redox Biology is the official journal of the Society for Redox Biology and Medicine and the Society for Free Radical Research-Europe. It is also affiliated with the International Society for Free Radical Research (SFRRI). This journal serves as a platform for publishing pioneering research, innovative methods, and comprehensive review articles in the field of redox biology, encompassing both health and disease. Redox Biology welcomes various forms of contributions, including research articles (short or full communications), methods, mini-reviews, and commentaries. Through its diverse range of published content, Redox Biology aims to foster advancements and insights in the understanding of redox biology and its implications.
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