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Persistent desmoglein-1 downregulation and periostin accumulation in histologic remission of eosinophilic esophagitis

  • Hannes Hoelz
  • , Tim Faro
  • , Marie Luise Frank
  • , Ignasi Forné
  • , Daniela Kugelmann
  • , Anja Jurk
  • , Simon Buehler
  • , Kolja Siebert
  • , Monica Matchado
  • , Tobias Straub
  • , Annett Hering
  • , Guido Piontek
  • , Susanna Mueller
  • , Sibylle Koletzko
  • , Markus List
  • , Katja Steiger
  • , Martina Rudelius
  • , Jens Waschke
  • , Tobias Schwerd
  • Ludwig-Maximilians-Universität München
  • Technical University of Munich
  • University of Warmia and Mazury

Research output: Contribution to journalArticlepeer-review

8 Scopus citations

Abstract

Background: Patients with eosinophilic esophagitis (EoE) require long-lasting resolution of inflammation to prevent fibrostenosis and dysphagia. However, the dissociation between symptoms and histologic improvement suggests persistent molecular drivers despite histologic remission. Objective: We characterized persisting molecular alterations in pediatric patients with EoE using tissue transcriptomics and proteomics. Methods: Esophageal biopsy samples (n = 247) collected prospectively during 189 endoscopies from pediatric patients with EoE (n = 36, up to 11 follow-up endoscopies) and pediatric controls (n = 44, single endoscopies) were subjected to bulk transcriptomics (n = 96) and proteomics (n = 151). Intercellular junctions (desmoglein-1/3, desmoplakin, E-cadherin) and epithelial-to-mesenchymal transition (vimentin:E-cadherin ratio) were assessed by immunofluorescence staining. Results: Active EoE (≥15 eosinophils per high-power field [eos/hpf]), inactive EoE (<15 eos/hpf), and deep-remission EoE (0 eos/hpf) were diagnosed in 107 of 185, 78 of 185, and 41 of 185 biopsy samples, respectively. Among the dysregulated genes (up-/downregulated 310/112) and proteins (up-/downregulated 68/16) between active EoE and controls, 17 genes, and 6 proteins remained dysregulated in inactive EoE. Using persistently upregulated genes (n = 9) and proteins (n = 3) only, such as ALOX15, CXCL1, CXCL6, CTSG, CDH26, PRRX1, CLC, EPX, and periostin (POSTN), was sufficient to separate inactive EoE and deep-remission biopsy samples from control tissue. While 32 differentially expressed genes persisted in deep-remission EoE compared to controls, the proteome normalized except for persistently upregulated POSTN. Epithelial-to-mesenchymal transition normalized in inactive EoE, whereas desmosome recovery remained impaired as a result of desmoglein-1 downregulation. Conclusion: The analysis of molecular changes shows persistent EoE-associated esophageal dysregulation despite histologic remission. These data expand our understanding of inflammatory processes and possible mechanisms that underlie tissue remodeling in EoE.

Original languageEnglish
Pages (from-to)505-519
Number of pages15
JournalJournal of Allergy and Clinical Immunology
Volume155
Issue number2
DOIs
StatePublished - Feb 2025

Keywords

  • Eosinophilic esophagitis
  • epithelial barrier dysfunction
  • fibrosis
  • proteome
  • transcriptome

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