材料科学
胶粘剂
主动脉夹层
生物医学工程
塔
复合材料
酮咯酸
外科
药理学
医学
主动脉
历史
古代史
图层(电子)
止痛药
作者
Mengxiao Shi,Rui Liu,Hong Fang,Ying Wu,Cheng Chen,Bin Kong,Qing Zhou
标识
DOI:10.1021/acsami.5c02565
摘要
Aortic dissection is a serious health risk and has led to interest in creating effective drug treatments like ketorolac. However, conventional administration techniques lack specificity, which limits their effectiveness and may result in adverse effects. A microneedle patch system (MNPS) offers a minimally invasive, pain-free alternative with a high capacity for drug delivery, but there is still a gap in the direction of treating aortic dissection. Here, we present a novel biodegradable MNPS with a pagoda-shaped structure designed for drug loading. These MNPS were fabricated using a stepwise mold replication method, with the medication embedded in the top layer of the MNPS. The double-layered pagoda structure enhances MNPS adhesion, enabling it to withstand the impact of aortic blood flow and enhancing drug targeting. In conclusion, our pagoda MNPS introduces a new approach for treating aortic dissection, providing hope for affected patients.
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