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Human Airway Basal Cells Undergo Reversible Squamous Differentiation and Reshape Innate Immunity

鳞状化生 生物 Wnt信号通路 细胞分化 先天免疫系统 细胞生物学 上皮 炎症 化生 基础(医学) 免疫学 病理 癌症研究 免疫系统 医学 信号转导 内分泌学 基因 胰岛素 生物化学
作者
Yihan Zhang,Katharine E. Black,Thien-Khoi N. Phung,Sujatha Thundivalappil,Lin Tian,Wei Wang,Jie Xu,Cheng Zhang,Lida P. Hariri,Allen Lapey,Hu Li,Paul H. Lerou,Xingbin Ai,Jianwen Que,Jin‐Ah Park,Bryan P. Hurley,Hongmei Mou
出处
期刊:American Journal of Respiratory Cell and Molecular Biology [American Thoracic Society]
卷期号:68 (6): 664-678 被引量:9
标识
DOI:10.1165/rcmb.2022-0299oc
摘要

Histological and lineage immunofluorescence examination revealed that healthy conducting airways of humans and animals harbor sporadic poorly differentiated epithelial patches mostly in the dorsal noncartilage regions that remarkably manifest squamous differentiation. In vitro analysis demonstrated that this squamous phenotype is not due to intrinsic functional change in underlying airway basal cells. Rather, it is a reversible physiological response to persistent Wnt signaling stimulation during de novo differentiation. Squamous epithelial cells have elevated gene signatures of glucose uptake and cellular glycolysis. Inhibition of glycolysis or a decrease in glucose availability suppresses Wnt-induced squamous epithelial differentiation. Compared with pseudostratified airway epithelial cells, a cascade of mucosal protective functions is impaired in squamous epithelial cells, featuring increased epithelial permeability, spontaneous epithelial unjamming, and enhanced inflammatory responses. Our study raises the possibility that the squamous differentiation naturally occurring in healthy airways identified herein may represent "vulnerable spots" within the airway mucosa that are sensitive to damage and inflammation when confronted by infection or injury. Squamous metaplasia and hyperplasia are hallmarks of many airway diseases, thereby expanding these areas of vulnerability with potential pathological consequences. Thus, investigation of physiological and reversible squamous differentiation from healthy airway basal cells may provide critical knowledge to understand pathogenic squamous remodeling, which is often nonreversible, progressive, and hyperinflammatory.

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