单细胞转录组学对肝损伤和再生的新见解。

eGastroenterology Pub Date : 2025-07-23 eCollection Date: 2025-01-01 DOI:10.1136/egastro-2025-100202
Yankai Wen, Cynthia Ju
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引用次数: 0

摘要

单细胞转录组学的最新进展大大提高了我们对急性肝损伤(ALI)和再生的理解。这些技术能够对单个细胞进行高分辨率分析,揭示肝细胞对损伤的多样性和动态反应。通过将单细胞RNA测序(scRNA-seq)与空间转录组学相结合,研究人员已经阐明了驱动ALI和再生过程的复杂细胞和分子机制。本文综述了肝脏单细胞转录组学研究的平台和分析方法,并讨论了scRNA-seq中肝脏样品处理的注意事项,包括体内酶灌注和体外消化的比较。它强调了单细胞转录组学对ALI和再生研究的变革性影响,揭示了以前未被识别的细胞亚群的新见解。主要发现包括在损伤-修复界面鉴定胎儿样和Anxa2+迁移肝细胞,在损伤和修复阶段不同激活的肝星状细胞状态的特征,以及Wnt信号传导中区域特异性内皮细胞反应的阐明。巨噬细胞异质性的显著发现包括在Kupffer细胞和单核细胞来源的巨噬细胞中发现Trem2+群体,它们在损伤和修复过程中起着不同的作用。单细胞转录组学的应用继续为识别新的治疗靶点带来希望,最终推动急性肝脏疾病的新治疗策略的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

New insights into liver injury and regeneration from single-cell transcriptomics.

New insights into liver injury and regeneration from single-cell transcriptomics.

New insights into liver injury and regeneration from single-cell transcriptomics.

Recent advancements in single-cell transcriptomics have significantly enhanced our understanding of acute liver injury (ALI) and regeneration. These technologies enable high-resolution profiling of individual cells, uncovering the diverse and dynamic responses of liver cells to injury. By integrating single-cell RNA sequencing (scRNA-seq) with spatial transcriptomics, researchers have elucidated the complex cellular and molecular mechanisms driving ALI and regeneration processes. This review summarises the platforms and analytical methods of single-cell transcriptomics in liver research and discusses liver sample processing considerations for scRNA-seq, including the comparison between in vivo enzymatic perfusion and ex vivo digestion. It highlights the transformative impact of single-cell transcriptomics on ALI and regeneration studies, revealing novel insights into previously unrecognised cell subpopulations. Key discoveries include the identification of fetal-like and Anxa2+ migratory hepatocytes at injury-repair interfaces, the characterisation of distinct activated hepatic stellate cell states during injury and repair phases, and the elucidation of zone-specific endothelial cell responses in Wnt signalling. Notable findings in macrophage heterogeneity include the discovery of Trem2+ populations in both Kupffer cells and monocyte-derived macrophages, with distinct roles in injury and repair processes. The application of single-cell transcriptomics continues to hold promise for identifying novel therapeutic targets, ultimately advancing the development of novel treatment strategies for acute liver diseases.

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