Fang Wenzhuo, Wang Ying, Zhang Kaile, Yang Ming, Liu Meng, Jin Yangwang, Xiu Xianjie, Wang Yuhui, Yu Zhenwei, Yang Ranxing, Fu Qiang
Department of Urology, Affiliated Sixth People's Hospital, Shanghai Jiaotong University School of Medicine, No. 600 Yi-Shan Road, Shanghai, 200233, P. R. China.
Adv Sci (Weinh). 2025 Feb;12(6):e2409930. doi: 10.1002/advs.202409930. Epub 2024 Dec 18.
The harsh microenvironment of the urethral injury often carries high risks of early undesirable healing as well as late scar tissue formation. Indeed, the infection and inflammatory response in the early stages as well as blood vessel formation and tissue regeneration in the later stages fundamentally impact the outcomes of urethral wound healing. Innovatively, an integrated whole-process repair hydrogel (APF/C/L@dECM) is designed. After rigorous testing, it is found that hydrogels formed by hydrophobic association and double cross-linking of amide bonds can procedurally regulate wound healing in all phases to match the repair process. In rabbit models of urethral wound, APF/C/L@dECM hydrogel can achieve scarless reconstruction with significantly better results than other hydrogels. Noteworthily, multi-stage mechanistic explorations reveal the expression profiles of inflammation, vascularization, and extracellular matrix secretion-related genes in wound tissue at different times. In summary, this study develops an overall treatment for urethral injury through a whole-process repair system that promotes healthy healing of urethral wounds and prevents the formation of scar tissue.
尿道损伤的恶劣微环境往往伴随着早期不良愈合以及后期瘢痕组织形成的高风险。事实上,早期的感染和炎症反应以及后期的血管形成和组织再生从根本上影响尿道伤口愈合的结果。创新性地,设计了一种一体化的全过程修复水凝胶(APF/C/L@dECM)。经过严格测试,发现由酰胺键的疏水缔合和双重交联形成的水凝胶可以在各个阶段程序性地调节伤口愈合,以匹配修复过程。在兔尿道伤口模型中,APF/C/L@dECM水凝胶可以实现无瘢痕重建,效果明显优于其他水凝胶。值得注意的是,多阶段机制探索揭示了伤口组织在不同时间的炎症、血管生成和细胞外基质分泌相关基因的表达谱。总之,本研究通过促进尿道伤口健康愈合并防止瘢痕组织形成的全过程修复系统,开发了一种针对尿道损伤的整体治疗方法。