supported by the National Natural Science Foundation of China,China(Project 82202325,82072072,32171326,32261160372);the Guangdong Basic and Applied Basic Research Foundation,China(2022B1515130010,2021A1515111035);Dongguan Science and Technology of Social Development Program,China(20231800906311,20231800900332);China Postdoctoral Science Foundation,China(2022M721524);Leading Talent Project of Guangzhou Development District,China(2020-L013)。
Thrombus formation and tissue embedding significantly impair the clinical efficacy and retrievability of temporary interventional medical devices.Herein,we report an insect sclerotization-inspired antifouling armor fo...