材料科学
伤口愈合
纳米技术
体内
透明质酸
光催化
医学
生物
免疫学
有机化学
催化作用
化学
生物技术
解剖
作者
Shugao Shi,Yujie Jiang,Yixin Yu,Manman Liang,Qiang Bai,Lina Wang,Dongqin Yang,Ning Sui,Zhiling Zhu
标识
DOI:10.1002/adfm.202210850
摘要
Abstract Wound infection is arguably the most common, and potentially the most devastating, complication of the wound healing process. The ideal treatment strategy has to eliminate bacteria, alleviate inflammation, and promote wound healing and skin formation. Herein, a multifunctional heterostructure is designed consisting of ultrasmall platinum–ruthenium nanoalloys and porous graphitic carbon nitride C 3 N 5 nanosheets (denoted as PtRu/C 3 N 5 ), which concurrently possesses piezoelectric enhanced oxidase ‐mimic nanozyme activity and photocatalytic hydrogen gas production capacity. Moreover, these hybrid nanotherapeutics are integrated in natural hyaluronic acid microneedles, which exhibit almost 100% broad‐spectrum antibacterial efficacy against multiple bacterial strains in vitro and in vivo within 10 min ultrasound treatment, and effectively inhibit inflammation reactions after 1 h visible light irradiation, promising for accelerating the cutaneous wound healing in the bacterial infected mice. This study highlights a competitive strategy for development of all‐in‐one antibacterial and anti‐inflammatory therapies.
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