Aug 2026· Journal of Allergy and Clinical Immunology· 0 citations
Medicine
TL;DR
These findings demonstrate that IL1A coordinates epithelial inflammatory and regenerative responses in the human esophagus, and show that the outcome of IL1A signaling is determined by the surrounding inflammatory milieu, providing a framework for understanding epithelial remodeling in eosinophilic esophagitis.
Abstract
Background
The ability of barrier epithelia to sense environmental perturbations and initiate local inflammation is essential for progenitor-mediated epithelial repair and restoration of tissue integrity.
Objective
To characterize human esophageal epithelial progenitor cell heterogeneity and identify molecular mechanisms regulating epithelial regeneration in eosinophilic esophagitis (EoE).
Methods
Single-cell RNA sequencing of the adult human esophagus was integrated with spatial characterization of epithelial cell populations and functional analyses using primary human esophageal organoids and air-liquid interface cultures.
Results
Using NGFR and P73, we defined a layer of human basal progenitor cells spanning both papillary and interpapillary regions of the human esophageal epithelium. Proliferating basal progenitor cells were enriched within the papillary epithelium, and a subset of papillary basal progenitor cells displayed active YAP signaling, revealing spatially organized heterogeneity within the progenitor compartment. NGFR-positive basal cells exhibited enhanced organoid-forming capacity and suppressed NOTCH signaling to maintain basal identity. During epithelial regeneration, IL1A was induced in primary human organoids, and an intraepithelial apical-to-basal IL1A signaling axis was identified in patients with EoE. IL1A activated NF-κB-dependent transcription, promoted basal progenitor expansion, and enhanced epithelial barrier function. Although IL13 selectively rewired IL1A-dependent transcriptional and regenerative programs, IL1A signaling remained active under inflammatory conditions.
Conclusion
These findings demonstrate that IL1A coordinates epithelial inflammatory and regenerative responses in the human esophagus. They further show that the outcome of IL1A signaling is determined by the surrounding inflammatory milieu, providing a framework for understanding epithelial remodeling in eosinophilic esophagitis.
A model in which transient, controlled E-cadherin downregulation promotes epithelial repair promotes epithelial repair and may represent a promising therapeutic approach to promote mucosal healing in IBD patients is supported.
Bereket Girma, Hammed Ayansola, Jiecheng Chen et al.· American Journal of Physiolo...· 0 citations
Summary Immune-epithelial interactions are essential for intestinal homeostasis, yet organoid monocultures lack immune components and fail to model how immune cells shape epithelial identity. Here, we establish a macrophage-organoid co-culture integrating bone marrow-derived macrophages (BMDMs) into the intestinal nich...
Lisa Tonini, Tae‐Baek Lee, Eunju Jang et al.· Stem Cell Reports· 0 citations
A fibroblast-dominated Sfrp1/Frzb-mediated niche is identified that constrains AT2 differentiation into AT1 cells, providing a cellular basis for impaired alveolar regeneration in BPD and suggesting potential therapeutic targets.
Ming Xu, Liyan Xiang, Gongxia Ling et al.· American Journal of Respirat...· 0 citations
The lung epithelium is continuously exposed to injury via pathogens and pollutants and its capacity for healthy, non-pathological repair is essential to maintain structure and function. In homeostatic repair, type 2 alveolar epithelial (AT2) cells - the stem cells of the alveolar epithelium - differentiate into type 1...
J. Masso-Silva, A. Kumar· American Journal of Physiolo...· 0 citations
Due to a rapid cell turnover, the esophageal stratified squamous epithelium must maintain homeostasis. This process is ensured by a long-lived subpopulation of basal stem cells that express Keratin 15 (Krt15). However, the mechanisms that specifically control their characteristics, i.e. self-renewal, multipotency and r...
Marjorie Rolland, Dominique Jean, M. Hamilton et al.· Journal of Cell Science· 0 citations
This study uncovers spatially organized inflammatory niches that precede and promote early gastric tumorigenesis by linking precancerous inflammation to stemness acquisition through spatial microenvironmental remodeling, highlighting a critical, targetable window for early intervention in GC.
Tiantian Du, Hui-Ru Gao, Jie Gao et al.· Chinese Medical Journal· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.