材料科学
伤口愈合
细胞外基质
羊膜
成纤维细胞
细胞生物学
间充质干细胞
生物医学工程
体外
生物
免疫学
医学
生物化学
怀孕
胎儿
遗传学
作者
Yupei Wang,Han Wu,Ao Xiao,Jing Zhu,Jie Qiu,Kuan Yang,Qing Liu,Shengju Hao,Ling Hui,Xin Zhou,Qinzheng Hou,Haixiang Su,Zhaoyan Meng,Lingqian Chang
标识
DOI:10.1021/acsami.3c18547
摘要
Human amniotic membranes (hAMs) are widely used as wound management biomaterials, especially as grafts for corneal reconstruction due to the structure of the extracellular matrix and excellent biological properties. However, their fragile nature and rapid degradation rate hinder widespread clinical use. In this work, we engineered a novel self-powered electronic dress (E-dress), combining the beneficial properties of an amniotic membrane and a flexible electrical electrode to enhance wound healing. The E-dress displayed a sustained discharge capacity, leading to increased epidermal growth factor (EGF) release from amniotic mesenchymal interstitial stem cells. Live/dead staining, CCK-8, and scratch-wound-closure assays were performed in vitro. Compared with amniotic membrane treatment alone, the E-dress promoted cell proliferation and migration of mouse fibroblast cells and lower cytotoxicity. In a mouse full-skin defect model, the E-dress achieved significantly accelerated wound closure. Histological analysis revealed that E-dress treatment promoted epithelialization and neovascularization in mouse skin. The E-dress exhibited a desirable flexibility that aligned with tissue organization and displayed maximum bioactivity within a short period to overcome rapid degradation, implying great potential for clinical applications.
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