Cuprorivaite as a Multifunctional Material for Hypertrophic Scar Modulation with Intrinsic Photothermal Enhancement
Hongping Ge, Shisheng Chen, Chenle Dong, Tongyue Yang, Yifan Jin, Bo Li, Chen Wang, Tong Lin, Chen Fan
Journal:ACS Applied Materials & Interfaces
IF:7.8
DOI:10.1021/acsami.6c08933
PMID:
Published:2026-06-25
research field:肿瘤学转化医学细胞生物学瘢痕修复生物材料学呼吸生物学光热治疗离子疗法分子病理学
Abstract
Hypertrophic scarring remains a challenging clinical problem because of its multifactorial pathology involving reduced apoptosis, excessive collagen deposition, aberrant fibroblast migration, and sustained inflammation. Here, we report Cuprorivaite as a multifunctional biomaterial for hypertrophic scar modulation with intrinsic photothermal enhancement. Through sustained multi-ion release, Cuprorivaite enables concomitant modulation of key scar-associated cellular processes, including apoptosis, collagen deposition, migration, and inflammatory responses. In addition to ionic regulation, the material exhibits an intrinsic photothermal response under near-infrared irradiation, which further enhances ion-mediated cellular modulation without introducing additional photothermal agents. In vitro and in vivo evaluations demonstrate effective attenuation of hypertrophic scarring, evidenced by reduced collagen accumulation, increased apoptotic activity, and improved scar architecture. Transcriptomic analysis coupled with functional validation further identifies representative regulatory factors, including H3C14 and SOX9, associated with the combined material response, providing mechanistic insight at the level of cellular regulation. Together, these findings highlight Cuprorivaite as a multifunctional material integrating ionic regulation and intrinsic photothermal enhancement for hypertrophic scar modulation.
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