Endothelial YAP/TEAD1-CXCL17 signaling recruits myeloid-derived suppressor cells against liver ischemia-reperfusion injury.

IF 12.9 1区 医学 Q1 GASTROENTEROLOGY & HEPATOLOGY Hepatology Pub Date : 2025-03-01 Epub Date: 2024-02-26 DOI:10.1097/HEP.0000000000000773
Sitong Zhang, Zhongquan Sun, Zhenhua Chen, Yanli Bi, Shenyu Wei, Zhengwei Mao, Jin Jin, Yuan Ding, Weilin Wang
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Abstract

Background and aims: Liver ischemia-reperfusion injury (IRI) is a common complication of liver transplantation and hepatectomy and causes acute liver dysfunction and even organ failure. Myeloid-derived suppressor cells (MDSCs) accumulate and play immunosuppressive function in cancers and inflammation. However, the role of MDSCs in liver IRI has not been defined.

Approach and results: We enrolled recipients receiving OLT and obtained the pre-OLT/post-OLT blood and liver samples. The proportions of MDSCs were significantly elevated after OLT and negatively associated with liver damage. In single-cell RNA-sequencing analysis of liver samples during OLT, 2 cell clusters with MDSC-like phenotypes were identified and showed maturation and infiltration in post-OLT livers. In the mouse model, liver IRI mobilized MDSCs and promoted their infiltration in the damaged liver, and intrahepatic MDSCs were possessed with enhanced immunosuppressive function by upregulation of STAT3 signaling. Under treatment with αGr-1 antibody or adoptive transfer MDSCs to change the proportion of MDSCs in vivo, we found that intrahepatic MDSCs alleviated liver IRI-induced inflammation and damage by inhibiting M1 macrophage polarization. Mechanistically, bulk RNA-sequencing analysis and in vivo experiments verified that C-X-C motif chemokine ligand 17 (CXCL17) was upregulated by YAP/TEAD1 signaling and subsequently recruited MDSCs through binding with GPR35 during liver IRI. Moreover, hepatic endothelial cells were the major cells responsible for CXCL17 expression in injured livers, among which hypoxia-reoxygenation stimulation activated the YAP/TEAD1 complex to promote CXCL17 transcription.

Conclusions: Endothelial YAP/TEAD1-CXCL17 signaling recruited MDSCs to attenuate liver IRI, providing evidence of therapeutic potential for managing IRI in liver surgery.

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内皮 YAP/TEAD1-CXCL17 信号招募髓源性抑制细胞对抗肝脏缺血再灌注损伤
背景目的:肝脏缺血再灌注损伤(IRI)是肝移植和肝切除术的常见并发症,会导致急性肝功能障碍甚至器官衰竭。髓源性抑制细胞(MDSCs)在癌症和炎症中积累并发挥免疫抑制功能。然而,MDSCs在肝脏IRI中的作用尚未明确:我们招募了接受正位肝移植(OLT)的受者,并获取了OLT前/OLT后的血液和肝脏样本。OLT后MDSCs的比例明显升高,并与肝损伤呈负相关。在对OLT期间的肝脏样本进行单细胞RNA测序分析时,发现了两个具有MDSC样表型的细胞群,并在OLT后的肝脏中显示出成熟和浸润。在小鼠模型中,肝脏IRI动员了MDSCs并促进了它们在受损肝脏中的浸润,肝内MDSCs通过上调STAT3信号增强了免疫抑制功能。在使用αGr-1抗体或采用转移MDSCs的方法改变体内MDSCs比例的情况下,我们发现肝内MDSCs通过抑制M1巨噬细胞极化减轻了肝脏IRI诱导的炎症和损伤。从机理上讲,大量 RNA 序列分析和体内实验验证了 CXCL17 在 YAP/TEAD1 信号转导下上调,随后在肝脏 IRI 期间通过与 GPR35 结合招募 MDSCs。此外,肝内皮细胞是损伤肝脏中CXCL17表达的主要细胞,其中低氧-复氧刺激激活了YAP/TEAD1复合物,促进了CXCL17的转录:内皮细胞YAP/TEAD1-CXCL17信号转导招募MDSCs以减轻肝脏IRI,为肝脏手术中控制IRI的治疗潜力提供了证据。
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来源期刊
Hepatology
Hepatology 医学-胃肠肝病学
CiteScore
27.50
自引率
3.70%
发文量
609
审稿时长
1 months
期刊介绍: HEPATOLOGY is recognized as the leading publication in the field of liver disease. It features original, peer-reviewed articles covering various aspects of liver structure, function, and disease. The journal's distinguished Editorial Board carefully selects the best articles each month, focusing on topics including immunology, chronic hepatitis, viral hepatitis, cirrhosis, genetic and metabolic liver diseases, liver cancer, and drug metabolism.
期刊最新文献
Molecular and immune landscape of hepatocellular carcinoma to guide therapeutic decision-making. Noninvasive assessment of hepatic decompensation. Neutrophil extracellular traps promote MASH fibrosis by metabolic reprogramming of HSC. Integrative transcriptomic and genomic analyses unveil the IFI16 variants and expression as MASLD progression markers. Endothelial YAP/TEAD1-CXCL17 signaling recruits myeloid-derived suppressor cells against liver ischemia-reperfusion injury.
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