生物
CXCR4型
造血
免疫学
炎症
细胞生物学
染色质
中性粒细胞胞外陷阱
受体
趋化性
癌症研究
趋化因子
干细胞
遗传学
DNA
作者
Iván Ballesteros,Andrea Rubio-Ponce,Marco Genua,Eleonora Lusito,Immanuel Kwok,Gabriel F. Calvo,Tariq Khoyratty,Erinke van Grinsven,Sara González-Hernández,José Ángel Nicolás-Ávila,Tommaso Vicanolo,Antonio Maccataio,Alberto Benguría,J Li,José M. Adrover,Alejandra Aroca-Crevillén,Juan A. Quintana,Sandra Martín-Salamanca,Francisco Mayo,Stefanie Ascher
出处
期刊:Cell
[Cell Press]
日期:2020-10-23
卷期号:183 (5): 1282-1297.e18
被引量:495
标识
DOI:10.1016/j.cell.2020.10.003
摘要
Classically considered short-lived and purely defensive leukocytes, neutrophils are unique in their fast and moldable response to stimulation. This plastic behavior may underlie variable and even antagonistic functions during inflammation or cancer, yet the full spectrum of neutrophil properties as they enter healthy tissues remains unexplored. Using a new model to track neutrophil fates, we found short but variable lifetimes across multiple tissues. Through analysis of the receptor, transcriptional, and chromatin accessibility landscapes, we identify varying neutrophil states and assign non-canonical functions, including vascular repair and hematopoietic homeostasis. Accordingly, depletion of neutrophils compromised angiogenesis during early age, genotoxic injury, and viral infection, and impaired hematopoietic recovery after irradiation. Neutrophils acquired these properties in target tissues, a process that, in the lungs, occurred in CXCL12-rich areas and relied on CXCR4. Our results reveal that tissues co-opt neutrophils en route for elimination to induce programs that support their physiological demands.
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