Related Experiment Video
Updated: Aug 5, 2026

Surgical Model for Single-Staged Tissue-Engineered Urothelial Tubes in Minipigs
Published on: July 5, 2024
Biomimetic multilayered hydrogel scaffold with dual cell types and mesh support for urethral reconstruction
Aivaras Grybas1, Barasa Povilas2, Darius Dasevicius3
1Center of Urology, Vilnius University Hospital Santaros Klinikos, Santariškių g. 2, Vilnius, 08661, Lithuania.
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Urethral strictures and hypospadias remain major challenges in urology, with current treatments limited by donorsite morbidity, graft shrinkage, and poor long-term outcomes. To address these limitations, we developed a biomimetic multilayered hydrogel scaffold with dual cell types and mesh reinforcement for urethral reconstruction. The construct combined predifferentiated buccal mucosa cells and adipose-derived mesenchymal stem cells within a gelatin methacrylate-silk fibroin (GelMA-SF) hydrogel supported by electrowritten and electrospun polymeric meshes, designed to reproduce both epithelial and smooth muscle layers of the native urethra. Implanted into the rabbit urethra and followed for 12 weeks, the scaffold showed favorable integration with early but transient immune activation, preservation of systemic stability, and maintenance of urethral lumen architecture. Histological evaluation revealed the formation of a stratified urothelium and organized smooth muscle bundles with limited fibrosis, highlighting the scaffold's potential to support functional urethral regeneration and serve as an alternative to graft-based urethroplasty.

