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配对的单细胞和空间转录谱分析揭示了一种介导结核性肉芽肿形成的核心骨桥蛋白巨噬细胞反应。

Paired single-cell and spatial transcriptional profiling reveals a central osteopontin macrophage response mediating tuberculous granuloma formation.

作者信息

Pyle Charlie J, Wang Liuyang, Beerman Rebecca W, Jain Vaibhav, Ohman Henry K E, Thompson Brandon A, Abramson Karen R, Ko Dennis C, Gregory Simon G, Smith Clare M, Neff Jadee L, Richardson Rebecca J, Stout Jason E, Tobin David M

机构信息

Department of Molecular Genetics and Microbiology, Duke University School of Medicine, Durham, North Carolina, USA.

Department of Integrative Immunobiology, Duke University School of Medicine, Durham, North Carolina, USA.

出版信息

mBio. 2025 Aug 7:e0155925. doi: 10.1128/mbio.01559-25.

Abstract

Granulomas are classic manifestations of tuberculosis pathogenesis. They result from an ensemble of immune responses to infection, but the identities, arrangement, cellular interactions, and regulation of the cells that comprise them have thus far been incompletely understood. To better understand the composition of granulomas, we conducted spatial and single-cell RNA sequencing of granulomas in biopsy specimens from patients with tuberculosis. We found that granulomas consist of concentric transcriptional laminae surrounding areas of central necrosis. We identified distinct populations of granuloma-associated stromal cells, fibroblasts, lymphocytes, mast cells, dendritic cells, neutrophils, and macrophages. Furthermore, gene expression among these cell populations differed by location within granulomas. We used inferential analysis to predict dominant granuloma cell-cell interactions, the activity of major signaling pathways, and transcription factor activities. Using spatial deconvolution, we mapped a conserved pattern of cellular organization dominated by macrophages rich in /osteopontin expression. Trajectory analysis of macrophage subtypes mapped their differentiation and supported the importance of SPP1 to granuloma macrophage polarization. Using the -zebrafish model, we found that mycobacterial infection induces expression in macrophages and that ablation results in granuloma formation defects and reduced survival in adult animals. Cumulatively, we have identified a dominant macrophage granuloma population as well as its central regulatory gene in human samples and confirmed the importance of to granuloma biology .IMPORTANCETuberculosis is the world's most deadly single-pathogen infection. Its causative bacterium, , sickens over 10 million people annually. Mycobacterial granulomas are the pathological hallmark of the infection and are critical determinants of disease trajectory. Granulomas form as a physiological barrier to contain infected macrophages and reduce bacterial dissemination. However, that barrier also reduces access of antibiotics and mycobactericidal immune cells to the pathogen, thereby promoting chronic infection and end-organ damage. This work supplies the field with a map of the conserved features of human tuberculosis granulomas and provides a valuable resource for future exploration of critical factors in tuberculosis pathogenesis, exemplified here by functional findings around the roles of /osteopontin-expressing macrophages in mycobacterial granulomas.

摘要

肉芽肿是结核病发病机制的典型表现。它们源于对感染的一系列免疫反应,但构成肉芽肿的细胞的身份、排列、细胞间相互作用及调控,迄今尚未完全明确。为了更好地理解肉芽肿的组成,我们对结核病患者活检标本中的肉芽肿进行了空间和单细胞RNA测序。我们发现,肉芽肿由围绕中央坏死区域的同心转录层组成。我们鉴定出了肉芽肿相关基质细胞、成纤维细胞、淋巴细胞、肥大细胞、树突状细胞、中性粒细胞和巨噬细胞的不同群体。此外,这些细胞群体中的基因表达因在肉芽肿内的位置而异。我们使用推理分析来预测主要的肉芽肿细胞间相互作用、主要信号通路的活性以及转录因子活性。利用空间反卷积,我们绘制了一种以富含骨桥蛋白表达的巨噬细胞为主导的保守细胞组织模式。巨噬细胞亚型的轨迹分析描绘了它们的分化过程,并支持了SPP1对肉芽肿巨噬细胞极化的重要性。利用斑马鱼模型,我们发现分枝杆菌感染诱导巨噬细胞中SPP1表达,且SPP1缺失导致成年动物肉芽肿形成缺陷和存活率降低。总体而言,我们在人类样本中鉴定出了一个占主导地位的巨噬细胞肉芽肿群体及其核心调控基因,并证实了SPP1对肉芽肿生物学的重要性。

重要性

结核病是全球最致命的单一病原体感染。其致病细菌每年使超过1000万人患病。分枝杆菌肉芽肿是该感染的病理标志,也是疾病发展轨迹的关键决定因素。肉芽肿作为一种生理屏障形成,以容纳被感染的巨噬细胞并减少细菌传播。然而,这一屏障也减少了抗生素和杀菌免疫细胞接触病原体的机会,从而促进慢性感染和终末器官损伤。这项工作为该领域提供了人类结核肉芽肿保守特征的图谱,并为未来探索结核病发病机制中的关键因素提供了宝贵资源,本文围绕表达骨桥蛋白的巨噬细胞在分枝杆菌肉芽肿中的作用所取得的功能发现便是例证。

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