Department of Urology, Shanghai 6th People's Hospital, Shanghai Jiaotong University, Shanghai, China.
Urology. 2012 Feb;79(2):246-53. doi: 10.1016/j.urology.2011.08.043. Epub 2011 Oct 19.
To review the advances in the basic research and clinical application of tissue engineering and stem cell technology in urethral reconstruction. Urethral defects resulting from congenital malformations, trauma, inflammation, or cancer are a common urologic issue. Traditional urethral reconstruction is associated with various complications. Tissue engineering and stem cell technology hold novel therapeutic promise for urethral reconstruction.
One of us searched the PubMed database (January 1999 to January 2011) using the English search terms "tissue engineering," "stem cells," "urethral reconstruction," and "urethra." A total of 86 reports were retrieved. After the repetitive and irrelevant reports were excluded, 40 were included in the final analysis. The review outlined and evaluated the advances in basic research and clinical application and the current status and prospects of tissue engineering and stem cell technology in urinary reconstruction.
Two therapeutic strategies are available for urethral reconstruction using tissue engineering: the acellular matrix bioscaffold model and the cell-seeded bioscaffold model. The acellular matrix bioscaffold model has been successfully used in the clinic and the cell-seeded bioscaffold model is making its transition from bench to bedside.
Stem cells can provide the seed cells for urologic tissue engineering, but much basic research is still needed before their clinical use is possible.
综述组织工程和干细胞技术在尿道重建中的基础研究和临床应用进展。先天性畸形、创伤、炎症或癌症导致的尿道缺损是常见的泌尿科问题。传统的尿道重建术存在多种并发症。组织工程和干细胞技术为尿道重建带来了新的治疗希望。
我们中的一位作者使用英文检索词“tissue engineering(组织工程)”、“stem cells(干细胞)”、“urethral reconstruction(尿道重建)”和“urethra(尿道)”,在 PubMed 数据库(1999 年 1 月至 2011 年 1 月)中进行了检索。共检索到 86 篇报告。排除重复和不相关的报告后,最终有 40 篇报告纳入了分析。本综述概述和评估了组织工程和干细胞技术在尿路重建中的基础研究和临床应用进展,以及目前的状况和前景。
组织工程学中有两种用于尿道重建的治疗策略:去细胞生物支架模型和细胞接种生物支架模型。去细胞生物支架模型已成功应用于临床,细胞接种生物支架模型正从实验室向临床过渡。
干细胞可为泌尿科组织工程提供种子细胞,但在其临床应用之前,仍需要进行大量的基础研究。