Department of Urology, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai Eastern Institute of Urologic Reconstruction, Shanghai Jiao Tong University, Shanghai, 200233, China.
Department of Urology, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai Eastern Institute of Urologic Reconstruction, Shanghai Jiao Tong University, Shanghai, 200233, China.
Biomaterials. 2025 Jan;312:122711. doi: 10.1016/j.biomaterials.2024.122711. Epub 2024 Jul 23.
The unsuitable deformation stimulus, harsh urine environment, and lack of a regenerative microenvironment (RME) prevent scaffold-based urethral repair and ultimately lead to irreversible urethral scarring. The researchers clarify the optimal elastic modulus of the urethral scaffolds for urethral repair and design a multilayered PVA hydrogel scaffold for urethral scar-free healing. The inner layer of the scaffold has self-healing properties, which ensures that the wound effectively resists harsh urine erosion, even when subjected to sutures. In addition, the scaffold's outer layer has an extracellular matrix-like structure that synergizes with adipose-derived stem cells to create a favorable RME. In vivo experiments confirm successful urethral scar-free healing using the PVA multilayered hydrogel scaffold. Further mechanistic study shows that the PVA multilayer hydrogel effectively resists the urine-induced inflammatory response and accelerates the transition of urethral wound healing to the proliferative phase by regulating macrophage polarization, thus providing favorable conditions for urethral scar-free healing. This study provides mechanical criteria for the fabrication of urethral tissue-engineered scaffolds, as well as important insights into their design.
不合适的变形刺激、恶劣的尿液环境以及缺乏再生微环境(RME)会阻碍基于支架的尿道修复,最终导致不可逆转的尿道瘢痕形成。研究人员阐明了用于尿道修复的尿道支架的最佳弹性模量,并设计了一种多层 PVA 水凝胶支架用于无尿道瘢痕愈合。支架的内层具有自修复特性,可确保伤口有效抵抗恶劣尿液的侵蚀,即使在缝合时也是如此。此外,支架的外层具有类似细胞外基质的结构,与脂肪来源干细胞协同作用,创造有利的 RME。体内实验证实,使用 PVA 多层水凝胶支架可成功实现无尿道瘢痕愈合。进一步的机制研究表明,PVA 多层水凝胶通过调节巨噬细胞极化有效抵抗尿液引起的炎症反应,并加速尿道伤口愈合向增殖期的过渡,从而为无尿道瘢痕愈合提供有利条件。这项研究为尿道组织工程支架的制造提供了机械标准,并为其设计提供了重要见解。