Beiko Darren T, Knudsen Bodo E, Watterson James D, Cadieux Peter A, Reid Gregor, Denstedt John D
Department of Urology, Queen's University, Kingston, University of Western Ontario, London, Ontario, Canada.
J Urol. 2004 Jun;171(6 Pt 1):2438-44. doi: 10.1097/01.ju.0000125001.56045.6c.
As a result of endourological advances, biomaterials have become increasingly used within the urinary tract. This review article provides an update on the current status of urinary tract biomaterials, discussing issues of biocompatibility, biomaterials available for use, clinical applications and biomaterial related complications. Perspectives on future materials for use in the urinary tract are also provided.
We performed a comprehensive search of the peer reviewed literature on all aspects of biomaterials in the urinary tract using PubMed and MEDLINE. All pertinent articles were reviewed in detail.
Any potential biomaterial must undergo rigorous physical and biocompatibility testing prior to its commercialization and use in humans. There are currently many different bulk materials and coatings available for the manufacturing of biomaterials, although the ideal material has yet to be discovered. For use in the urinary tract, biomaterials may be formed into devices, including ureteral and urethral stents, urethral catheters and percutaneous nephrostomy tubes. Despite significant advances in basic science research involving biocompatibility issues and biofilm formation, infection and encrustation remain associated with the use of biomaterials in the urinary tract and, therefore, limit their long-term indwelling time.
Prosthetic devices formed from biomaterials will continue to be an essential tool in the practicing urologist's armamentarium. Ongoing research is essential to optimize biocompatibility and decrease biomaterial related complications such as infection and encrustation within the urinary tract. Future advances include biodegradables, novel coatings and tissue engineering.
由于腔内泌尿外科技术的进步,生物材料在泌尿道中的应用越来越广泛。这篇综述文章介绍了泌尿道生物材料的现状,讨论了生物相容性问题、可用的生物材料、临床应用以及与生物材料相关的并发症。还提供了关于未来泌尿道用材料的展望。
我们使用PubMed和MEDLINE对有关泌尿道生物材料各方面的同行评审文献进行了全面检索。对所有相关文章进行了详细审查。
任何潜在的生物材料在商业化并用于人体之前都必须经过严格的物理和生物相容性测试。目前有许多不同的块状材料和涂层可用于制造生物材料,尽管理想的材料尚未找到。用于泌尿道时,生物材料可制成装置,包括输尿管和尿道支架、尿道导管和经皮肾造瘘管。尽管在涉及生物相容性问题和生物膜形成的基础科学研究方面取得了重大进展,但感染和结垢仍然与泌尿道生物材料的使用相关,因此限制了它们的长期留置时间。
由生物材料制成的假体装置将继续是泌尿外科医生必备工具中的重要组成部分。持续的研究对于优化生物相容性和减少与生物材料相关的并发症(如泌尿道感染和结垢)至关重要。未来的进展包括可生物降解材料、新型涂层和组织工程。