February 2026 in “International Journal of Nanomedicine” This study found that controlled release of hIGF-1 from TF/hIGF-1 effectively enhanced re-epithelialization and granulation tissue formation in diabetic wounds in animal models compared to controls, suggesting a promising approach for diabetic wound treatment.
February 2018 in “Archivio Istituzionale della Ricerca (Universita Degli Studi Di Milano)” This study concluded that macrophage iron retention due to Ferroportin inactivation hinders skin wound healing but does not affect liver damage or fibrogenesis in a mouse model.
113 citations
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December 2000 in “The journal of investigative dermatology. Symposium proceedings/The Journal of investigative dermatology symposium proceedings” This study reports that overexpression of activin in transgenic mice enhances granulation tissue formation during wound healing, highlighting a novel role for activin in cutaneous repair processes.
32 citations
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March 2014 in “PLOS ONE” This study demonstrates that FMOD deficiency in mice alters TGF-β ligand and receptor expression during wound healing stages, leading to delayed wound closure and increased scar size.
9 citations
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August 2022 in “Frontiers in Pharmacology” This study found that Kangfuxin improved cell proliferation, migration, and wound healing in a mouse model of cutaneous injury through the activation of the STAT3 signaling pathway.