ArticleFrontiers in oncology2026
Single-cell transcriptomics and a boundary wound model reveal temporal decoupling and microenvironmental heterogeneity in radiation-induced fibrosis.
Article in Frontiers in oncology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Background: Radiotherapy is a key treatment method for cancer, but high-dose treatment can lead to damage to normal tissues and chronic fibrosis. There is a lack of systematic temporal analysis of the dynamic progression from early damage signals to late extracellular matrix (ECM) deposition. Methods and materials: We reanalyzed publicly available scRNA-seq count matrices from GSE211713 to explore microenvironmental remodeling during fibrosis. Then, we established an Results: scRNA-seq revealed temporal decoupling between ECM-related transcription and myofibroblast function. Our mouse model showed spatial heterogeneity: although the fully irradiated wound exhibited typical inhibition of healing, the wound across the irradiation boundary showed a rapid, matrix-rich response within 14 days. TGF-β/SMAD-related signals, myofibroblast markers, and collagen deposition in the animal model were not strictly synchronous. Additionally, CellChat predicted SPP1-centered communication at the late fibrosis stage. Conclusions: Fibrosis after radiotherapy may be influenced not only by local damage but also by the boundary microenvironment. These findings support a shift toward ECM-dominant remodeling and provide a hypothesis-generating basis for targeted intervention.
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