基于物理组织特性的准空间单细胞转录组定义了肝脏早期衰老相关的生态位。

IF 17 Q1 CELL BIOLOGY
Nature aging Pub Date : 2025-05-01 Epub Date: 2025-05-05 DOI:10.1038/s43587-025-00857-7
Kwon Yong Tak, Juyeon Kim, Myungsun Park, Wooseok Kim, Seoyeong Lee, Narae Park, Min Jeong Kim, Ju-Bin Kang, Yongjun Koh, Hae Young Yang, Min Kyu Yum, Injune Kim, Yong Ryoul Yang, Won-Il Jeong, Jinsung Yang, Cheolju Lee, Chuna Kim, Jong-Eun Park
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引用次数: 0

摘要

衰老与衰老细胞的积累有关,衰老细胞是由组织损伤反应引发的,通常会逃避免疫系统的清除。这些细胞在衰老组织中的具体特征和多样性,以及它们对组织微环境的影响,在很大程度上仍未被探索。尽管单细胞和空间组学技术在理解复杂组织结构方面取得了进展,但由于衰老细胞群的稀缺和当前组学工具包的技术偏见,它们在一般分析管道中经常被忽视。在这里,我们利用组织的物理特性来富集与年龄相关的纤维化生态位,并对其进行单细胞RNA测序和单核ATAC测序(ATAC-seq)分析,并将这种方法命名为纤维化生态位富集测序(FiNi-seq)。组织的纤维化生态位选择性富集基于其抵抗酶消化,使准空间分析。我们使用FiNi-seq分析了雄性小鼠的年轻和年老肝脏,发现产生Wif1和smoc1的间充质细胞群表现出衰老表型,并研究了纤维化生态位中的早期免疫反应。最后,FiNi-ATAC-seq揭示了纤维化小生境细胞中丰富的年龄相关表观遗传变化。因此,我们的准空间单细胞分析方法可以详细分析初始衰老微环境,为预防衰老提供潜在的治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quasi-spatial single-cell transcriptome based on physical tissue properties defines early aging associated niche in liver.

Aging is associated with the accumulation of senescent cells, which are triggered by tissue injury response and often escape clearance by the immune system. The specific traits and diversity of these cells in aged tissues, along with their effects on the tissue microenvironment, remain largely unexplored. Despite the advances in single-cell and spatial omics technologies to understand complex tissue architecture, senescent cell populations are often neglected in general analysis pipelines due to their scarcity and the technical bias in current omics toolkits. Here we used the physical properties of tissue to enrich the age-associated fibrotic niche and subjected them to single-cell RNA sequencing and single-nuclei ATAC sequencing (ATAC-seq) analysis and named this method fibrotic niche enrichment sequencing (FiNi-seq). Fibrotic niche of the tissue was selectively enriched based on its resistance to enzymatic digestion, enabling quasi-spatial analysis. We profiled young and old livers of male mice using FiNi-seq, discovered Wif1- and Smoc1-producing mesenchymal cell populations showing senescent phenotypes, and investigated the early immune responses within this fibrotic niche. Finally, FiNi-ATAC-seq revealed age-associated epigenetic changes enriched in fibrotic niche cells. Thus, our quasi-spatial, single-cell profiling method allows the detailed analysis of initial aging microenvironments, providing potential therapeutic targets for aging prevention.

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CiteScore
14.70
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