伤口愈合
转基因
生物医学工程
癌症研究
转基因小鼠
细胞生物学
药理学
医学
组织修复
化学
材料科学
西妥因1
基因传递
遗传增强
作者
Ruyue Luo,Huifeng Wang,Chongwen Duan,Michelle Jen,Hsin-Yu Kuo,Xinlong Wang,Milan Mrksich,Guillermo A. Ameer
标识
DOI:10.1016/j.bioactmat.2026.06.007
摘要
Diabetes mellitus severely impairs wound healing, in part due to persistent inflammation, impaired angiogenesis, and dysregulated cellular responses. Sirtuin-1 (Sirt1), an NAD + -dependent deacetylase, has emerged as a promising therapeutic target for restoring regenerative capacity in diabetic wounds. However, effective and localized gene delivery remains a major challenge. Here, we report an injectable thermoresponsive poly(polyethylene glycol citrate-co-N-isopropylacrylamide) (PPCN) hydrogel as a localized delivery platform for lentiviruses encoding Sirt1 (LV-Sirt1) to promote sustained gene expression and tissue regeneration in diabetic full-thickness dermal wounds. Encapsulation of LV-Sirt1 within PPCN enabled in situ gelation and significantly accelerated wound closure compared with hydrogel or virus alone. Histological analyses revealed enhanced re-epithelialization, increased granulation tissue formation, and improved epidermal barrier restoration. Immunofluorescence staining demonstrated elevated fibroblast activity, reduced inflammatory response, and a facilitated polarization of macrophage from a pro-inflammatory M1 phenotype toward a regenerative M2 phenotype. Transcriptomic analysis further revealed that Sirt1 modulates key genes associated with immune regulation ( Spp1, Ccl24, Ggt1 ), epithelial migration ( Krt8 ), vascular stabilization ( Aspn , Plscr4 ), and nerve regeneration ( Nefm ). Collectively, these results demonstrate that thermoresponsive PPCN hydrogels enable effective localized lentiviral gene delivery, and that sustained Sirt1 expression promotes angiogenesis, immune modulation, and tissue regeneration in diabetic wounds. This platform provides a promising strategy for controlled gene therapy in chronic wound management and other regenerative applications.
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