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气道壁的单细胞空间图谱揭示了健康和哮喘状态下的促炎细胞生态系统及其相互作用。

A single-cell spatial chart of the airway wall reveals proinflammatory cellular ecosystems and their interactions in health and asthma.

作者信息

Joulia Régis, Patti Sara, Traves William J, Loewenthal Lola, Yates Laura, Walker Simone A, Puttur Franz, Al-Sahaf May, Cahill Katherine N, Lai Juying, Siddiqui Salman, Boyce Joshua A, Israel Elliot, Lloyd Clare M

机构信息

National Heart and Lung Institute, Imperial College London, London, UK.

Department of Asthma and Allergy, Royal Brompton and Harefield Hospitals, London, UK.

出版信息

Nat Immunol. 2025 May 21. doi: 10.1038/s41590-025-02161-3.

Abstract

Determining spatial location of cells within tissues gives vital insight into the interactions between resident and inflammatory cells and is a critical factor for uncoupling the mechanisms driving disease. Here, we apply single-cell spatial transcriptomics to reveal the airway wall landscape in health and during asthma. We identified proinflammatory cellular ecosystems that exist within discrete spatial niches in healthy and asthma samples. These cellular hubs are characterized by a high level of chemokine and alarmin expression, along with unique combinations of stromal cells. Mechanistically, we demonstrated that receptors, such as ACKR1, retain immune mediators locally, while amphiregulin-expressing mast cells are prominent within these proinflammatory hubs. Despite anti-inflammatory treatments, the asthma airway mucosa exhibited a distinct remodeling program within these cellular ecosystems, marked by increased proximity between key cell types. This study provides an unprecedented view of the topography of the airway wall, revealing distinct, specific ecosystems within spatial niches to target for therapeutic intervention.

摘要

确定组织内细胞的空间位置对于深入了解驻留细胞与炎症细胞之间的相互作用至关重要,并且是解开驱动疾病机制的关键因素。在这里,我们应用单细胞空间转录组学来揭示健康状态和哮喘期间的气道壁景观。我们确定了在健康和哮喘样本的离散空间龛中存在的促炎细胞生态系统。这些细胞枢纽的特征是高水平的趋化因子和警报素表达,以及基质细胞的独特组合。从机制上讲,我们证明了诸如ACKR1之类的受体在局部保留免疫介质,而表达双调蛋白的肥大细胞在这些促炎枢纽中很突出。尽管进行了抗炎治疗,但哮喘气道黏膜在这些细胞生态系统中表现出独特的重塑程序,其特征是关键细胞类型之间的距离增加。这项研究提供了气道壁地形的前所未有的视图,揭示了空间龛内不同的、特定的生态系统,可作为治疗干预的靶点。

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