Highlights
• ASPN+ FB is the dominant FB subtype in keloids with an enrichment of matrix-producing and neurogenesis functions.
• There is a subpopulation of IGFBP5+ SCs with an expansion in population and increased functions in neurogenesis and axonogenesis in keloid.
• The spatial distance between ASPN+ FBs and IGFBP5+ SCs is markedly reduced in keloids with a special activation of MDK signaling as revealed by cell–cell communication analysis.
• The expression of MDK is positively correlated with the severity of keloidal pain and pruritus in the clinical cohort of keloid patients.
• MDK promotes the proliferation of SCs and induces the transformation towards repairing phenotype. This activation of repairing SCs promotes a release of substance P from nerve fibers.

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