Esophageal extracellular matrix hydrogel mitigates metaplastic change in a dog model of Barrett's esophagus
Chronic inflammatory gastric reflux alters the esophageal microenvironment and induces metaplastic transformation of the epithelium, a precancerous condition termed Barrett's esophagus (BE). The microenvironmental niche, which includes the extracellular matrix (ECM), substantially influences ce...
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Veröffentlicht in: | Science advances 2020-07, Vol.6 (27), p.eaba4526-eaba4526 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Chronic inflammatory gastric reflux alters the esophageal microenvironment and induces metaplastic transformation of the epithelium, a precancerous condition termed Barrett's esophagus (BE). The microenvironmental niche, which includes the extracellular matrix (ECM), substantially influences cell phenotype. ECM harvested from normal porcine esophageal mucosa (eECM) was formulated as a mucoadhesive hydrogel, and shown to largely retain basement membrane and matrix-cell adhesion proteins. Dogs with BE were treated orally with eECM hydrogel and omeprazole (
= 6) or omeprazole alone (
= 2) for 30 days. eECM treatment resolved esophagitis, reverted metaplasia to a normal, squamous epithelium in four of six animals, and downregulated the pro-inflammatory tumor necrosis factor-α
cell infiltrate compared to control animals. The metaplastic tissue in control animals (
= 2) did not regress. The results suggest that in vivo alteration of the microenvironment with a site-appropriate, mucoadhesive ECM hydrogel can mitigate the inflammatory and metaplastic response in a dog model of BE. |
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ISSN: | 2375-2548 2375-2548 |
DOI: | 10.1126/sciadv.aba4526 |