脚手架
材料科学
形状记忆合金
双层
机制(生物学)
生物医学工程
形状记忆聚合物
纳米技术
血管生成
过程(计算)
生物物理学
共形映射
解码方法
丝素
计算机科学
生物系统
原子力显微镜
编码(内存)
伤口愈合
生物膜
药物输送
适配器分子crk
结构完整性
作者
L GONG,Jiming He,Zhijuan Li,Jinru Liu,Xinquan Yang,Rong Yin,Jing Xie,Bitao Lu,Kun Yu,Fei Lu,Guangqian Lan,Enling Allen Hu,Xiangjun Wang,Ruiqi Xie,Dahua Shou,Wentao Lin,S. C. Pan
标识
DOI:10.1002/adfm.202529119
摘要
ABSTRACT The management of Mayer‐Rokitansky‐Küster‐Hauser (MRKH) syndrome is severely hampered by the inability of existing therapies to achieve conformal fitting and sustained drug release within the dynamic, moist vaginal environment. Herein, we report a novel Janus‐structured microneedle (MN) system engineered from a poly(vinyl alcohol)/silk fibroin (PVA/SF) hybrid that overcomes these critical limitations through intelligent, hydration‐triggered shape adaptation. A facile one‐pot process induces spontaneous spatial segregation, forming an asymmetric bilayer architecture with a PVA‐rich upper layer and an SF‐enriched lower layer. This unique structure enables the device to be pre‐programmed into a compact coil for minimally invasive insertion, which subsequently unfurls upon vaginal moisture exposure to achieve conformal contact with irregular wound surfaces. Crucially, we decipher the shape memory mechanism through 2D correlation spectroscopy and molecular dynamics simulations. These analyses reveal a sequential disruption of hydrogen bonds, while hydrophobic interactions from SF β‐sheets provide exceptional mechanical stability in the hydrated state. In a rat model of severe vaginal injury, the arbutin‐loaded MN (ARMN) scaffold orchestrates a holistic healing process—effectively scavenging ROS, suppressing IL‐6‐mediated inflammation, promoting VEGF‐driven angiogenesis and PCNA‐enhanced proliferation, and mitigating surgery‐induced dysbiosis. This work establishes a pioneering paradigm of stimuli‐responsive, self‐adapting medical devices for transformative therapy in complex mucosal tissue regeneration.
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