化学
药品
药物输送
癌症研究
炎症
免疫系统
自愈水凝胶
血管生成
伤口愈合
移植
机制(生物学)
病态的
活性氧
口腔粘膜
医学
药理学
作者
Weiwei Yu,Xiang Li,Xufang Liu,Xinyi Hao,Wen Qin,Guoqing Qi,Gaopeng Dang,Ziyuan Tian,Shiyin Jin,Conrado Aparicio,Kaiyan Wang,Wen Niu,Lina Niu
标识
DOI:10.1016/j.bioactmat.2026.01.016
摘要
Oral ulceration is a prevalent mucosal disorder, and its healing process is frequently hampered by poor local drug retention and inadequate mucosal adhesion. However, the underlying pathological mechanisms remain incompletely elucidated. In this study, transcriptomic sequencing revealed that ferroptosis serves as a key driver of oral ulcer progression. To address the limitations of conventional formulations in the wet and dynamic oral environment, we constructed an asymmetrically adhesive, ferroptosis-targeting, spermidine (SPD)-functionalized Janus hydrogel microneedle system (MN-HTSO-C). This system was fabricated via chemical grafting and dynamic Schiff base crosslinking, enabling targeted drug delivery into mucosal tissues. By specifically delivering SPD, this system effectively inhibited ferroptosis, reduced reactive oxygen species (ROS) accumulation, reprogrammed the local immune microenvironment, and thereby promoted angiogenesis and epithelial regeneration. Our work not only identifies a novel pathological mechanism but also proposes an integrated therapeutic strategy that combines targeted delivery, immunomodulation, and ferroptosis inhibition, providing a new direction for the treatment of oral ulcers and other ferroptosis-related mucosal diseases.
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