生物
免疫学
单核细胞
表观遗传学
脐带血
组蛋白
乙型肝炎病毒
细胞因子
巨噬细胞极化
癌症研究
细胞分化
重编程
巨噬细胞
组蛋白脱乙酰基酶
炎症
免疫系统
抗原
促炎细胞因子
慢性感染
病毒
全血
恩替卡韦
组蛋白H3
免疫耐受
抗原呈递
CD14型
CD40
病毒学
cccDNA
先天免疫系统
乙型肝炎
趋化因子
作者
MD Zhengmin Wang,Nan Liu,Yongqi Li,Tianyang Li,Licong Ma,Zhongfeng Wang,Xinyang Li,Yun Dai,Tong Zhang,Zhiheng Guo,Yao Zhi,Faxiang Ma,Juan Lv,Yanhang Gao,Junqi Niu,Yang Yang,Zhengkun Tu
出处
期刊:Gut
[BMJ]
日期:2026-09-16
卷期号:: gutjnl-2025
标识
DOI:10.1136/gutjnl-2025-337367
摘要
Background Hepatitis B virus (HBV) induces hepatic immunosuppressive macrophages to facilitate chronic infection but the mechanisms remain unclear. Metabolic and epigenetic reprogramming during monocyte differentiation into macrophages has also been observed in bacterial infection and Bacillus Calmette-Guerin (BCG) vaccination, shaping tolerant or trained macrophages. Objective To investigate whether HBV modulates monocyte-to-macrophage differentiation via metabolic–epigenetic reprogramming. Design Monocytes from chronic HBV-infected patients, healthy controls and cord blood were differentiated into macrophages (monocyte-derived macrophages and cord blood monocyte-derived macrophages). Cytokine expression and secretion, metabolic and epigenetic changes and immunomodulatory functions were characterised by qRT-PCR, ELISA, Western blotting, immunofluorescence, multiplexed immunohistochemistry, immunoprecipitation, metabolite measurements, ChIP-seq, ChIP-qPCR assay, plasmid transfection, reanalysed scRNA-seq and flow cytometry. Results MDMs from CHB patients showed higher IL-10 and lower TNF-α than healthy donors ex vivo. HBV employed its surface antigen (HBsAg) to strongly influence cord blood but not adult monocyte differentiation into such an immunosuppressive macrophage in vitro. This occurred via post-translational modification of histone H3 on residue K18 (H3K18). HBsAg–pyruvate kinase M2 (PKM2) dimer interaction promoted PKM2/LDHA-driven lactate production, enhancing H3K18 lactylation at the IL-10 promoter and increasing IL-10 secretion. Meanwhile, phosphorylation of STAT1 is shifted with increased serine 727-phosphate but decreased tyrosine 701-phosphate via the p38/AKT pathway. It triggers the CD38/NAD + /SIRT1 axis, reducing H3K18 acetylation at the TNF-α promoter and suppressing TNF-α synthesis. Moreover, HBV-educated immunosuppressive macrophages inhibited NK cell IFN-γ production and promoted HBV replication in hepatocytes. Conclusions HBV controls monocyte-to-macrophage fate via HBsAg-mediated metabolic-epigenetic-immune cascades to facilitate chronic persistent infection. These metabolic-epigenetic axes represent potential therapeutic targets.
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