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小鼠和人类淋巴结淋巴管系统的单细胞转录图谱

A Single-Cell Transcriptional Roadmap of the Mouse and Human Lymph Node Lymphatic Vasculature.

作者信息

Xiang Menglan, Grosso Rubén Adrián, Takeda Akira, Pan Junliang, Bekkhus Tove, Brulois Kevin, Dermadi Denis, Nordling Sofia, Vanlandewijck Michael, Jalkanen Sirpa, Ulvmar Maria H, Butcher Eugene C

机构信息

Laboratory of Immunology and Vascular Biology, Department of Pathology, Stanford University School of Medicine, Stanford, CA, United States.

Palo Alto Veterans Institute for Research, Palo Alto, CA, United States.

出版信息

Front Cardiovasc Med. 2020 Apr 30;7:52. doi: 10.3389/fcvm.2020.00052. eCollection 2020.

Abstract

Single-cell transcriptomics promise to revolutionize our understanding of the vasculature. Emerging computational methods applied to high-dimensional single-cell data allow integration of results between samples and species and illuminate the diversity and underlying developmental and architectural organization of cell populations. Here, we illustrate these methods in the analysis of mouse lymph node (LN) lymphatic endothelial cells (LEC) at single-cell resolution. Clustering identifies five well-delineated subsets, including two medullary sinus subsets not previously recognized as distinct. Nearest neighbor alignments in trajectory space position the major subsets in a sequence that recapitulates the known features and suggests novel features of LN lymphatic organization, providing a transcriptional map of the lymphatic endothelial niches and of the transitions between them. Differences in gene expression reveal specialized programs for (1) subcapsular ceiling endothelial interactions with the capsule connective tissue and cells; (2) subcapsular floor regulation of lymph borne cell entry into the LN parenchyma and antigen presentation; and (3) pathogen interactions and (4) LN remodeling in distinct medullary subsets. LEC of the subcapsular sinus floor and medulla, which represent major sites of cell entry and exit from the LN parenchyma respectively, respond robustly to oxazolone inflammation challenge with enriched signaling pathways that converge on both innate and adaptive immune responses. Integration of mouse and human single-cell profiles reveals a conserved cross-species pattern of lymphatic vascular niches and gene expression, as well as specialized human subsets and genes unique to each species. The examples provided demonstrate the power of single-cell analysis in elucidating endothelial cell heterogeneity, vascular organization, and endothelial cell responses. We discuss the findings from the perspective of LEC functions in relation to niche formations in the unique stromal and highly immunological environment of the LN.

摘要

单细胞转录组学有望彻底改变我们对脉管系统的理解。应用于高维单细胞数据的新兴计算方法能够整合不同样本和物种之间的结果,并揭示细胞群体的多样性以及潜在的发育和结构组织。在这里,我们以单细胞分辨率分析小鼠淋巴结(LN)淋巴管内皮细胞(LEC)为例来说明这些方法。聚类分析识别出五个界限分明的亚群,其中包括两个以前未被视为不同亚群的髓窦亚群。轨迹空间中的最近邻比对将主要亚群定位在一个序列中,该序列概括了已知特征并提示了LN淋巴组织的新特征,提供了淋巴管内皮微环境及其之间转变的转录图谱。基因表达的差异揭示了以下专门程序:(1)被膜下顶内皮细胞与被膜结缔组织和细胞的相互作用;(2)被膜下底对淋巴携带细胞进入LN实质和抗原呈递的调节;(3)病原体相互作用;以及(4)不同髓质亚群中的LN重塑。被膜下窦底和髓质的LEC分别代表细胞进出LN实质的主要部位,它们对恶唑酮炎症刺激有强烈反应,富集的信号通路汇聚于先天免疫和适应性免疫反应。小鼠和人类单细胞图谱的整合揭示了淋巴管微环境和基因表达的保守跨物种模式,以及每个物种特有的专门人类亚群和基因。所提供的例子证明了单细胞分析在阐明内皮细胞异质性、血管组织和内皮细胞反应方面的强大作用。我们从LEC功能与LN独特的基质和高度免疫环境中的微环境形成的关系角度讨论了这些发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74cf/7204639/b4290fa260ef/fcvm-07-00052-g0001.jpg

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