Highlights
• By conditionally inhibiting endogenous exosome biogenesis, we provide direct genetic evidence positioning fibroblast-secreted exosomes as indispensable paracrine effectors orchestrating multicellular crosstalk governing physiological angiogenesis.
• Through unbiased sequencing coupled with functional validations, we identify exosome-transferred microRNA-24-3p as a vital genetic cargo that enhances HIF-1α stability by suppressing VHL in recipient endothelial cells.
• We delineate the activation of VEGF–VEGFR2 master signaling cascade, underlying fibroblast exosome stimulated proliferation, migration, and tubulogenesis of endothelial cells.
• As compelling proof-of-concept of translational potential, we demonstrate simply topical application of fibroblast exosomes can effectively rescue severely impaired vascularization within ischemic chronic wounds in murine diabetic models.

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