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胆汁淤积性损伤与修复的时空图谱在小鼠中的构建。

A spatiotemporal atlas of cholestatic injury and repair in mice.

机构信息

State Key Laboratory of Cell Biology, CAS Center for Excellence in Molecular Cell Science, Shanghai Institute of Biochemistry and Cell Biology, University of Chinese Academy of Sciences, Chinese Academy of Sciences, Shanghai, China.

School of Life Science and Technology, ShanghaiTech University, Shanghai, China.

出版信息

Nat Genet. 2024 May;56(5):938-952. doi: 10.1038/s41588-024-01687-w. Epub 2024 Apr 16.

DOI:10.1038/s41588-024-01687-w
PMID:38627596
Abstract

Cholestatic liver injuries, characterized by regional damage around the bile ductular region, lack curative therapies and cause considerable mortality. Here we generated a high-definition spatiotemporal atlas of gene expression during cholestatic injury and repair in mice by integrating spatial enhanced resolution omics sequencing and single-cell transcriptomics. Spatiotemporal analyses revealed a key role of cholangiocyte-driven signaling correlating with the periportal damage-repair response. Cholangiocytes express genes related to recruitment and differentiation of lipid-associated macrophages, which generate feedback signals enhancing ductular reaction. Moreover, cholangiocytes express high TGFβ in association with the conversion of liver progenitor-like cells into cholangiocytes during injury and the dampened proliferation of periportal hepatocytes during recovery. Notably, Atoh8 restricts hepatocyte proliferation during 3,5-diethoxycarbonyl-1,4-dihydro-collidin damage and is quickly downregulated after injury withdrawal, allowing hepatocytes to respond to growth signals. Our findings lay a keystone for in-depth studies of cellular dynamics and molecular mechanisms of cholestatic injuries, which may further develop into therapies for cholangiopathies.

摘要

胆汁淤积性肝损伤的特征是胆管区域周围的局部损伤,缺乏有效的治疗方法,导致相当高的死亡率。在这里,我们通过整合空间增强分辨率组学测序和单细胞转录组学,生成了小鼠胆汁淤积性损伤和修复过程中高清晰度时空基因表达图谱。时空分析揭示了胆管细胞驱动的信号在与门脉周围损伤修复反应相关联中的关键作用。胆管细胞表达与招募和脂质相关巨噬细胞分化相关的基因,这些基因产生的反馈信号增强了胆管反应。此外,胆管细胞在损伤过程中表达高水平的 TGFβ,与肝祖细胞样细胞向胆管细胞的转化以及恢复过程中门脉周围肝细胞增殖受到抑制有关。值得注意的是,Atoh8 在 3,5-二乙氧羰基-1,4-二氢-collidin 损伤期间限制肝细胞增殖,并且在损伤消退后迅速下调,使肝细胞能够响应生长信号。我们的研究结果为深入研究胆汁淤积性损伤的细胞动力学和分子机制奠定了基础,这可能进一步发展为胆管疾病的治疗方法。

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