Dynamic microenvironment-regulated hydrogels releasing celastrol lead to urethral scarless repair
Yangwang Jin, Fei Qin, Ranxing Yang, Wenzhuo Fang, Kaile Zhang, Meng Liu, Ming Yang, Ying Wang, Qiang Fu
Journal:Materials Today Bio
IF:11
DOI:10.1016/j.mtbio.2026.102917
PMID:41737466
Published:2026-02-11
research field:组织工程学炎症与纤维化机制研究药剂学生物材料学泌尿外科学创伤修复学
Abstract
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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