化学
自愈水凝胶
尿道狭窄
细胞生物学
组织修复
雷公藤醇
伤口愈合
尿道
机制(生物学)
调解人
炎症反应
机械转化
细胞
生物医学工程
细胞迁移
作者
Yangwang Jin,Fei Qin,Ranxing Yang,Wenzhuo Fang,Kaile Zhang,Meng Liu,Ming Yang,Ying Wang,Qiang Fu
标识
DOI:10.1016/j.mtbio.2026.102917
摘要
The dynamic pathological microenvironment formed post-urethral injury drives an inflammatory-fibrotic cascade, leading to urethral stricture. Herein, we designed a novel hydrogel dressing (CPT-Cel) to modulate this dynamic urethral microenvironment for scarless reconstruction. The hydrogel responsively degrades and releases its contents upon encountering acidic environments and ROS bursts, interrupting the severe oxidative stress-inflammation cycle and creating a favorable regenerative microenvironment in the early wound phase. The incorporated celastrol continuously releases into the late repair phase, inhibiting the hyperactivation of urethral fibroblasts via the TGF-β/NF-κB pathway in urethral microenviroment, thereby preventing excessive collagen secretion. Furthermore, the dressing, featuring an ECM-mimicking microstructure, effectively adheres to and integrates with the injury site, providing hemostatic and antibacterial functions. In animal models of urethral injury, CPT-Cel accelerated urethral repair within the inflammatory milieu, significantly reduced collagen deposition and ultimately improved stricture outcomes. This study not only validates the core mechanism by which an intelligent drug-loaded hydrogel modulates the dynamic urethral microenvironment but also proposes a new paradigm for urethral tissue engineering.
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