Novel IL-4/HB-EGF-dependent crosstalk between eosinophils and macrophages controls liver regeneration after ischaemia and reperfusion injury

嗜酸性粒细胞 再灌注损伤 再生(生物学) 缺血 肝损伤 肝细胞 医学 肝细胞生长因子 过继性细胞移植 细胞因子 肝移植 免疫学 巨噬细胞 肝再生 移植 病理 内科学 生物 细胞生物学 内分泌学 T细胞 免疫系统 受体 生物化学 哮喘 体外
作者
Yang Yang,Long Xu,Constance L. Atkins,L. Kuhlman,Jie Zhao,Jong‐Min Jeong,Yankai Wen,Nicolas F. Moreno,Kang Ho Kim,Yu An,Fenfen Wang,Steve Bynon,Vincenzo Villani,Bin Gao,Frank Brombacher,Raymond C. Harris,Holger K. Eltzschig,Elizabeth A. Jacobsen,Cynthia Ju
出处
期刊:Gut [BMJ]
卷期号:73 (9): 1543-1553 被引量:10
标识
DOI:10.1136/gutjnl-2024-332033
摘要

Objective Previous studies indicate that eosinophils are recruited into the allograft following orthotopic liver transplantation and protect from ischaemia reperfusion (IR) injury. In the current studies, we aim to explore whether their protective function could outlast during liver repair. Design Eosinophil-deficient mice and adoptive transfer of bone marrow-derived eosinophils (bmEos) were employed to investigate the effects of eosinophils on tissue repair and regeneration after hepatic IR injury. Aside from exogenous cytokine or neutralising antibody treatments, mechanistic studies made use of a panel of mouse models of eosinophil-specific IL-4/IL-13-deletion, cell-specific IL-4rα-deletion in liver macrophages and hepatocytes and macrophage-specific deletion of heparin-binding epidermal growth factor-like growth factor (hb-egf). Result We observed that eosinophils persisted over a week following hepatic IR injury. Their peak accumulation coincided with that of hepatocyte proliferation. Functional studies showed that eosinophil deficiency was associated with a dramatic delay in liver repair, which was normalised by the adoptive transfer of bmEos. Mechanistic studies demonstrated that eosinophil-derived IL-4, but not IL-13, was critically involved in the reparative function of these cells. The data further revealed a selective role of macrophage-dependent IL-4 signalling in liver regeneration. Eosinophil-derived IL-4 stimulated macrophages to produce HB-EGF. Moreover, macrophage-specific hb-egf deletion impaired hepatocyte regeneration after IR injury. Conclusion Together, these studies uncovered an indispensable role of eosinophils in liver repair after acute injury and identified a novel crosstalk between eosinophils and macrophages through the IL-4/HB-EGF axis.
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