Spatial transcriptomics stratifies psoriatic disease severity by emergent cellular ecosystems

转录组 背景(考古学) 免疫系统 银屑病 生物 疾病 人体皮肤 淋巴系统 免疫失调 病理 免疫学 医学 基因 基因表达 遗传学 古生物学
作者
Rochelle Castillo,Ikjot Sidhu,Igor Dolgalev,Tinyi Chu,Aleksandr Prystupa,Ipsita Subudhi,Di Yan,Piotr Konieczny,Brandon Hsieh,Rebecca H. Haberman,Shanmugapriya Selvaraj,Tomoe Shiomi,Rhina Medina,Parvathy V. Girija,Adriana Heguy,Cynthia A. Loomis,Luis Chiriboga,Christopher T. Ritchlin,María de la Luz García-Hernández,John A. Carucci
出处
期刊:Science immunology [American Association for the Advancement of Science]
卷期号:8 (84): eabq7991-eabq7991 被引量:89
标识
DOI:10.1126/sciimmunol.abq7991
摘要

Whereas the cellular and molecular features of human inflammatory skin diseases are well characterized, their tissue context and systemic impact remain poorly understood. We thus profiled human psoriasis (PsO) as a prototypic immune-mediated condition with a high predilection for extracutaneous involvement. Spatial transcriptomics (ST) analyses of 25 healthy, active lesion, and clinically uninvolved skin biopsies and integration with public single-cell transcriptomics data revealed marked differences in immune microniches between healthy and inflamed skin. Tissue-scale cartography further identified core disease features across all active lesions, including the emergence of an inflamed suprabasal epidermal state and the presence of B lymphocytes in lesional skin. Both lesional and distal nonlesional samples were stratified by skin disease severity and not by the presence of systemic disease. This segregation was driven by macrophage-, fibroblast-, and lymphatic-enriched spatial regions with gene signatures associated with metabolic dysfunction. Together, these findings suggest that mild and severe forms of PsO have distinct molecular features and that severe PsO may profoundly alter the cellular and metabolic composition of distal unaffected skin sites. In addition, our study provides a valuable resource for the research community to study spatial gene organization of healthy and inflamed human skin.
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