Skok Kristijan, Bele Uroš, Pintar Špela, Peršin Zdenka, Kuzmič Katja, Bračič Matej, Fras Zemljič Lidija, Maver Uroš
Diagnostic and Research Institute of Pathology, Medical University of Graz, Neue Stiftingtalstraße 6, 8010, Graz, Austria.
University of Maribor, Faculty of Medicine, Institute of Biomedical Sciences, Taborska Ulica 8, SI-2000, Maribor, Slovenia.
Mater Today Bio. 2025 Aug 20;34:102225. doi: 10.1016/j.mtbio.2025.102225. eCollection 2025 Oct.
Catheter associated urinary tract infection (CAUTI) is the most frequent healthcare associated infection, arising from microbial adhesion to catheter surfaces, biofilm development, and the growing problem of antimicrobial resistance. Many publications have addressed CAUTI epidemiology, biofilm biology, or biomaterials for catheters in isolation, yet there is little literature that connects these areas into a coherent translational perspective. This review seeks to fill that gap by combining an overview of biofilm pathophysiology with recent advances in material based innovations for catheter design, including nanostructured and responsive coatings, sensor enabled systems, additive manufacturing, and three dimensional printing. Established approaches such as hydrophilic or antimicrobial impregnated catheters are considered alongside bio inspired surface textures, zwitterionic polymers, and multifunctional hydrogels. Each strategy is evaluated in terms of maturity, clinical applicability, and barriers to translation, with a focus on shifting from antibiotic dependent treatment toward prevention of biofilm formation. By bringing together knowledge from microbiology, engineering, and clinical urology, the review outlines pathways for developing the next generation of catheters that improve outcomes and reduce infection rates.
导尿管相关尿路感染(CAUTI)是最常见的医疗保健相关感染,其起因是微生物粘附于导尿管表面、生物膜形成以及抗菌药物耐药性问题日益严重。许多出版物分别探讨了CAUTI的流行病学、生物膜生物学或导尿管生物材料,但很少有文献将这些领域从连贯的转化视角联系起来。本综述旨在通过结合生物膜病理生理学概述与基于材料的导尿管设计创新的最新进展来填补这一空白,这些创新包括纳米结构和响应性涂层、传感器启用系统、增材制造和三维打印。亲水性或抗菌浸渍导尿管等既定方法与仿生表面纹理、两性离子聚合物和多功能水凝胶一起被考虑。每种策略都根据成熟度、临床适用性和转化障碍进行评估,重点是从依赖抗生素的治疗转向预防生物膜形成。通过汇集微生物学、工程学和临床泌尿外科的知识,本综述概述了开发下一代导尿管的途径,以改善治疗效果并降低感染率。