伤口愈合
再生(生物学)
细胞外基质
自愈水凝胶
过程(计算)
组织修复
生物医学工程
医学
外科
细胞生物学
材料科学
计算机科学
生物
高分子化学
操作系统
作者
Wenzhuo Fang,Ying Wang,Kaile Zhang,Ming–Hsuan Yang,Meng Liu,Yangwang Jin,Xianjie Xiu,Yuhui Wang,Zhenwei Yu,Ranxing Yang,Qiang Fu
标识
DOI:10.1002/advs.202409930
摘要
Abstract 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.
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