生物粘附
透皮
纳米技术
可控性
自愈水凝胶
粘附
材料科学
药物输送
生物医学工程
复合材料
工程类
高分子化学
数学
应用数学
药理学
医学
作者
Zhenwei Ma,Claire Bourquard,Qiman Gao,Shuaibing Jiang,Tristan De Iure-Grimmel,Ran Huo,Xuan Li,Zixin He,Zhen Yang,Galen Yang,Yixiang Wang,Edmond Lam,Zu‐Hua Gao,Outi Supponen,Jianyu Li
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2022-08-11
卷期号:377 (6607): 751-755
被引量:117
标识
DOI:10.1126/science.abn8699
摘要
Tough bioadhesion has important implications in engineering and medicine but remains challenging to form and control. We report an ultrasound (US)–mediated strategy to achieve tough bioadhesion with controllability and fatigue resistance. Without chemical reaction, the US can amplify the adhesion energy and interfacial fatigue threshold between hydrogels and porcine skin by up to 100 and 10 times. Combined experiments and theoretical modeling suggest that the key mechanism is US-induced cavitation, which propels and immobilizes anchoring primers into tissues with mitigated barrier effects. Our strategy achieves spatial patterning of tough bioadhesion, on-demand detachment, and transdermal drug delivery. This work expands the material repertoire for tough bioadhesion and enables bioadhesive technologies with high-level controllability.
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