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间充质干细胞来源细胞外囊泡通过抑制肝细胞补体 C5 表达减轻肝移植诱导的缺血再灌注损伤

英文原题:Mesenchymal stem cell-derived extracellular vesicles attenuate liver transplantation-induced ischemia/reperfusion injury by suppressing hepatocellular complement C5 expression.

PubMed 2026/05/05(内容时间) J Nanobiotechnology Q1 · IF 15(JCR 2025)

研究概要

我们展示了一个由临床数据支持的、涵盖大鼠 LT 和小鼠 HIRI 的 MSC-EV 治疗单细胞多组学图谱。MSC-EVs 通过降低肝细胞 C5 以及减少单核吞噬细胞和中性粒细胞募集来减轻 HIRI。MSC-EV 递送 PTPN13 使 ERK1/2 去磷酸化并增强 C/EBP,抑制肝细胞 C5 并减弱 C5a-C5aR1 信号传导。这些发现将 MSC-EVs 定位为一种转化纳米疗法,以改善 LT 后的移植物结局。

研究思路结论见上方概要

肝脏缺血再灌注损伤(HIRI)是肝移植(LT)不可避免的并发症,可导致移植物功能障碍和死亡。间充质干细胞来源的细胞外囊泡(MSC-EVs)显示出治疗前景,但其在肝脏网络中的作用仍未完全明确。我们研究了 MSC-EVs 如何保护免受 LT 诱导的 HIRI,重点关注细胞间通讯和补体介导的炎症。

在大鼠LT和小鼠HIRI肝脏中,对接受或未接受MSC-EV处理的样本进行了单细胞RNA测序、单核ATAC-seq和空间转录组学检测。采用细胞迁移实验、AAV介导的过表达和PTPN13敲低的MSC-EVs来验证细胞功能和机制。

MSC-EVs 减轻了 HIRI,改善肝功能,并减少组织学损伤和肝细胞凋亡。单细胞分析显示,向受损肝脏募集的单核吞噬细胞和中性粒细胞被选择性削减。在机制上,HIRI 诱导肝细胞产生 C5 和 C5a,其与单核吞噬细胞和中性粒细胞上的 C5aR1 结合,从而驱动趋化。与该通路一致,MSC-EVs 将 PTPN13 递送至肝细胞,降低 C5,并促进 ERK1/2 去磷酸化以及增强 C/EBP 活性。C/EBP 活性升高直接抑制 C5 转录,而耗竭 PTPN13 的 MSC-EVs 则疗效减弱。

展开英文摘要原文

BACKGROUND & AIMS: Hepatic ischemia-reperfusion injury (HIRI) is an unavoidable complication of liver transplantation (LT) that drives allograft dysfunction and mortality. Mesenchymal stem cell-derived extracellular vesicles (MSC-EVs) show therapeutic promise, yet their actions within the hepatic network remain incompletely defined. We investigated how MSC-EVs protect against LT-induced HIRI, focusing on intercellular communication and complement-mediated inflammation. METHODS: Single-cell RNA sequencing, single-nucleus ATAC-seq, and spatial transcriptomics were performed in rat LT and mouse HIRI livers with or without MSC-EV treatment. Cell migration assays, AAV-mediated overexpression, and PTPN13-knockdown MSC-EVs were used to prove cellular function and mechanisms. RESULTS: MSC-EVs attenuated HIRI, improving liver function and reducing histologic injury and hepatocyte apoptosis. Single-cell analyses showed selective curtailment of mononuclear phagocyte and neutrophil recruitment to injured liver. Mechanistically, HIRI induced hepatocyte C5 and C5a, which engaged C5aR1 on mononuclear phagocytes and neutrophils to drive chemotaxis. Consistent with this pathway, MSC-EVs delivered PTPN13 to hepatocytes, lowering C5 and promoting ERK1/2 dephosphorylation and enhanced C/EBP activity. Elevated C/EBP activity directly suppressed C5 transcription, whereas PTPN13-depleted MSC-EVs showed diminished efficacy. CONCLUSIONS: We present a single-cell multi-omics atlas of MSC-EV therapy across rat LT and mouse HIRI, supported by clinical data. MSC-EVs mitigated HIRI by lowering hepatocyte C5 and reducing mononuclear phagocyte and neutrophil recruitment. MSC-EV delivery of PTPN13 dephosphorylated ERK1/2 and enhanced C/EBP , repressing hepatocyte C5 and dampening C5a-C5aR1 signaling. These findings position MSC-EVs as a translational nanotherapy to improve graft outcomes after LT.

论文信息

作者
Liu Y、Xiao J、Wu Z、Zhang F、You Q、Chen H、Zhang J、Yang Y
第一作者单位
Department of Hepatic Surgery and Liver Transplantation Center, Third Affiliated Hospital of Sun Yat-sen University, Guangzhou, Guangdong, China.China
通讯作者单位
Department of Hepatic Surgery and Liver Transplantation Center, Third Affiliated Hospital of Sun Yat-sen University, Guangzhou, Guangdong, China. zhengj96@mail.sysu.edu.cn.China
期刊
Journal of nanobiotechnology2026 May 5
原文标识
PubMed 42087186 · DOI 10.1186/s12951-026-04388-0