伤口愈合
透皮
材料科学
细菌
抗菌活性
血管生成
透明质酸
纳米颗粒
纳米技术
生物医学工程
药理学
癌症研究
医学
生物
外科
遗传学
解剖
作者
Kang Qin,Yuan Gui,Yanchun Li,Xinyi Li,Fei Meng,Dianpeng Han,Lianqun Du,Shuang Li,Yu Wang,Huanying Zhou,Hongyuan Yan,Yuan Peng,Zhixian Gao
标识
DOI:10.1021/acsami.2c17328
摘要
Bacteria-infected skin wounds caused by external injuries remain a serious challenge to the whole society. Wound healing dressings, with excellent antibacterial activities and potent regeneration capability, are increasingly needed clinically. Here, we reported a novel functional microneedle (MN) array comprising methacrylated hyaluronic acid (MeHA) embedded with pH-responsive functionalized zeolitic imidazolate framework-8 (ZIF-8) nanoparticles to treat bacteria-infected cutaneous wounds. Antibacterial activity was introduced into Zn-ZIF-8 to achieve sterilization through releasing Zn ions, as well as increased angiogenesis by dimethyloxalylglycine (DMOG) molecules that were distributed within its framework. Furthermore, biodegradable MeHA was chosen as a substrate material carrier to fabricate DMOG@ZIF-8 MN arrays. By such design, DMOG@ZIF-8 MN arrays would not only exhibit excellent antibacterial activity against pathogenic bacteria but also enhance angiogenesis within wound bed by upregulating the expression of HIF-1α, leading to a significant therapeutic efficiency on bacteria-infected cutaneous wound healing. Based on these results, we conclude that this new treatment strategy can provide a promising alternative for accelerating infected wound healing via effective antibacterial activity and ameliorative angiogenesis.
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