Fibroblast-derived Spondin-2 promotes dysplastic transition in metaplastic gastric epithelial cells
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ABSTRACT: Background and Aims: Fibroblasts are increasingly recognized as active drivers of early gastric carcinogenesis, yet the specific fibroblast-derived factors that promote the transition from metaplasia to dysplasia remain unknown. We have recently found that coculture of metaplasia or cancer-derived fibroblasts with gastroids dominated by spasmolytic polypeptide-expressing metaplasia (SPEM) lineages leads to a decrease of metaplastic markers and a concomitant upregulation of dysplasia markers. We have now identified the matricellular protein Spondin-2 (SPON2) as a key fibroblast-secreted mediator of this transition. Methods: Single-cells RNAsequencing of patient-derived fibroblast populations and proteomic profiling of conditioned media were used to identify fibroblast-secreted factors. Spatial transcriptomics was used to evaluate localization of SPON2+ fibroblasts in human gastric tissue. Knockdown of SPON2 in cancer-derived fibroblasts was performed in coculture with SPEM lineage gastroids, and recombinant SPON2 treatment was applied to metaplastic gastroids. Results: Single-cell RNAsequencing and proteomic profiling revealed SPON2 as the most upregulated and selectively secreted protein in metaplasia- and cancer-derived fibroblasts compared to normal fibroblasts. Spatial transcriptomics demonstrated PDGFRA/SPON2 co-expressing fibroblasts localized adjacent to metaplastic glands in human gastric tissue. Knockdown of SPON2 in cancer-derived fibroblasts abrogated induction of dysplastic promotion in cocultured SPEM lineage gastroids, while preserving metaplastic markers. Conversely, recombinant SPON2 treatment promoted down-regulation of metaplastic markers and upregulation of dysplasia-associated proteins in metaplastic gastroids. Conclusions: These findings identify fibroblast-derived SPON2 as a potent secreted factor driving the metaplasia-to-dysplasia transition in gastric epithelium. Therefore, SPON2 represents the first fibroblast-derived secreted factor that can promote preneoplastic progression.
ORGANISM(S): Homo sapiens
PROVIDER: GSE335053 | GEO | 2026/07/20
REPOSITORIES: GEO
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