Pietilä Riikka, Genové Guillem, Mocci Giuseppe, Miao Yuyang, Liu Jianping, Leptidis Stefanos, Del Gaudio Francesca, Uhrbom Martin, Vázquez-Liébanas Elisa, Gustafsson Sonja, Buyandelger Byambajav, Raschperger Elisabeth, Björkegren Johan L M, Hansson Emil M, Gaengel Konstantin, Mäe Maarja Andaloussi, Jeansson Marie, Vanlandewijck Michael, He Liqun, Strell Carina, Peng Xiao-Rong, Lendahl Urban, Betsholtz Christer, Muhl Lars
Department of Immunology, Genetics, and Pathology, Uppsala University, Uppsala, Sweden.
Department of Medicine (Huddinge), Karolinska Institutet, Huddinge, Sweden.
EMBO Rep. 2025 Sep 15. doi: 10.1038/s44319-025-00580-9.
The liver plays crucial roles in many essential physiological processes, and its impaired function due to liver fibrosis from various causes is an increasingly significant health issue. The liver's functionality relies on the precise arrangement of its cellular structures, yet the molecular architecture of these units remains only partially understood. We created a comprehensive molecular atlas detailing the major cell types present in the adult mouse liver through deep single-cell RNA sequencing. Our analysis offers new insights into hepatic endothelial and mesenchymal cells, specifically highlighting the diversity of cells in the periportal microvasculature, the sinusoids, and the portal vein, the latter exhibiting a mixed arterio-venous phenotype. We identified distinct subpopulations of hepatic stellate cells, fibroblasts, and vascular mural cells located in different anatomical liver regions. Comparisons with transcriptomic data from disease models indicate that a previously unrecognized capsular population of hepatic stellate cells expands in response to fibrotic disease. Our findings reveal that various fibroblast subpopulations respond differently to pathological insults. This data resource will be relevant for the advancement of therapies targeting hepatic diseases.
肝脏在许多重要的生理过程中发挥着关键作用,各种原因导致的肝纤维化引起的肝功能受损是一个日益严重的健康问题。肝脏的功能依赖于其细胞结构的精确排列,然而这些单元的分子结构仍仅被部分理解。我们通过深度单细胞RNA测序创建了一个全面的分子图谱,详细描述了成年小鼠肝脏中存在的主要细胞类型。我们的分析为肝内皮细胞和间充质细胞提供了新的见解,特别突出了门静脉周围微脉管系统、肝血窦和门静脉中细胞的多样性,后者表现出动静脉混合表型。我们在肝脏不同解剖区域鉴定出了肝星状细胞、成纤维细胞和血管壁细胞的不同亚群。与疾病模型的转录组数据比较表明,先前未被识别的肝星状细胞包膜亚群会因纤维化疾病而扩增。我们的研究结果表明,各种成纤维细胞亚群对病理损伤的反应不同。这一数据资源将有助于推进针对肝脏疾病的治疗。