材料科学
纳米技术
模板
微流控芯片
微流控
可控性
3D打印
生物医学工程
制作
计算机科学
复合材料
工程类
医学
替代医学
数学
病理
应用数学
作者
Qian Zhou,Kaiyi Dong,Meng Wei,Bingfang He,Bingbing Gao
标识
DOI:10.1002/adfm.202316565
摘要
Abstract Microfluidic chips play crucial roles while lack satisfactory controllability and comprehensive functionality. Inspired by biological systems, this study proposes a method utilizing rolling microneedles (RMNs) to generate muti‐structured templates, realizing photonic crystal membrane (PC) based meta microfluidic microneedle chip (MMM) for efficient wound management. This approach offers advantages in terms of speed and cost‐effectiveness, achieving dual‐sided permeation and patterned design by directly RMNs at desired locations, serving as both template tools for microneedle fabrication. The integration of RMNs with a PC membrane results in the design of 3D multilayer microfluidic channels, effectively addressing issues related to spontaneous fluid flow. As fluid reaches the PC membrane, it generates distinctive structural colors and exhibits fluorescence enhancement, enabling the monitoring of inflammatory factors in mouse wounds and facilitating efficient wound management. In summary, this preparation method involving RMNs paves the way for the design and fluid control of microfluidic chips. This bioinspired patch holds significant potential not only for wound management but also for areas such as clinical drug delivery and point‐of‐care testing (POCT).
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