Laboratory for Stem Cell Research, Department of Health Science and Technology, Aalborg University, 9220 Aalborg, Denmark.
Pediatric Surgery Department, Hamad General Hospital, 3050 Doha, Qatar.
Int J Mol Sci. 2019 Apr 10;20(7):1763. doi: 10.3390/ijms20071763.
Several congenital and acquired conditions may result in severe narrowing of the urethra in men, which represent an ongoing surgical challenge and a significant burden on both health and quality of life. In the field of urethral reconstruction, tissue engineering has emerged as a promising alternative to overcome some of the limitations associated with autologous tissue grafts. In this direction, preclinical as well as clinical studies, have shown that degradable scaffolds are able to restore the normal urethral architecture, supporting neo-vascularization and stratification of the tissue. While a wide variety of degradable biomaterials are under scrutiny, such as decellularized matrices, natural, and synthetic polymers, the search for scaffold materials that could fulfill the clinical performance requirements continues. In this article, we discuss the design requirements of the scaffold that appear to be crucial to better resemble the structural, physical, and biological properties of the native urethra and are expected to support an adequate recovery of the urethral function. In this context, we review the biological performance of the degradable polymers currently applied for urethral reconstruction and outline the perspectives on novel functional polymers, which could find application in the design of customized urethral constructs.
多种先天性和获得性疾病可导致男性尿道严重狭窄,这是一个持续存在的外科挑战,对健康和生活质量都有重大影响。在尿道重建领域,组织工程已成为克服自体组织移植物相关局限性的一种有前途的替代方法。在这方面,临床前和临床研究表明,可降解支架能够恢复正常的尿道结构,支持新血管生成和组织分层。虽然有多种可降解生物材料正在受到关注,如脱细胞基质、天然和合成聚合物,但仍在寻找能够满足临床性能要求的支架材料。本文讨论了支架的设计要求,这些要求似乎对更好地模拟天然尿道的结构、物理和生物学特性至关重要,并有望支持尿道功能的充分恢复。在此背景下,我们回顾了目前应用于尿道重建的可降解聚合物的生物学性能,并概述了新型功能聚合物的应用前景,这些聚合物可能在定制尿道结构的设计中找到应用。