Department of Urology, Paediatric Urology and Andrology, Justus Liebig Universität Giessen, Giessen, Germany.
Department of Chemical Biology, Helmholtz Centre for Infection Research, Braunschweig, Germany; German Center for Infection Research, Hannover-Braunschweig Site, Braunschweig, Germany.
Eur Urol Focus. 2024 Sep;10(5):720-721. doi: 10.1016/j.euf.2024.08.011. Epub 2024 Sep 7.
Bacteria develop biofilms for protection and persistent colonization. Biofilms of pathogenic bacteria can lead to serious medical problems. Bacterial biofilms on catheters used in the treatment of urinary tract diseases represent a major challenge for antibiotic therapy. Several attempts to eradicate biofilms using classical antibiotics and various alternatives, including antibiotic treatment of surfaces, surfaces that release silver ions, and surfaces with anti-adhesive properties, have not shown clinical efficacy in biofilm prevention or removal. Pseudomonas aeruginosa is one of the most problematic biofilm-forming uropathogens and accounts for approximately 10% of urinary tract infections. Novel glycomimetics that inhibit bacterial lectins have shown promising results in the prevention of P. aeruginosa biofilms and in interference with bacterial virulence. This mini-review summarizes the status of glycomimetic development and provides a perspective on their use in clinical practice. PATIENT SUMMARY: For patients with recurrent urinary tract infections and patients needing long-term catheter use to manage urinary problems, biofilms formed by bacteria can be a problem and are difficult to treat. New compounds that mimic carbohydrates, called glycomimetics, have shown promise in inhibiting these bacteria and the biofilms they form. More research on these compounds is needed before they can be used to treat patients.
细菌形成生物膜以提供保护和持久定植。致病性细菌的生物膜可导致严重的医学问题。用于治疗尿路感染疾病的导管上的细菌生物膜对抗生素治疗构成了重大挑战。为了消除生物膜,人们曾尝试使用经典抗生素和各种替代方法,包括抗生素处理表面、释放银离子的表面以及具有抗黏附特性的表面,但在预防或去除生物膜方面并未显示出临床疗效。铜绿假单胞菌是最成问题的生物膜形成尿路病原体之一,约占尿路感染的 10%。抑制细菌凝集素的新型糖模拟物在预防铜绿假单胞菌生物膜形成和干扰细菌毒力方面显示出有希望的结果。这篇迷你综述总结了糖模拟物开发的现状,并对其在临床实践中的应用提供了展望。患者总结:对于复发性尿路感染患者和需要长期使用导管来管理尿液问题的患者,细菌形成的生物膜可能是一个问题,并且难以治疗。模仿碳水化合物的新型化合物,称为糖模拟物,在抑制这些细菌及其形成的生物膜方面显示出了希望。在将这些化合物用于治疗患者之前,还需要对它们进行更多的研究。