Department of Pharmacy, Faculty of Pharmacy, Al-Zaytoonah University of Jordan, P. O. Box 130, Amman, 11733, Jordan.
Sci Rep. 2022 Mar 10;12(1):3900. doi: 10.1038/s41598-022-07953-3.
Catheter-associated urinary tract infections (CAUTIs) are nosocomial infections causing more than one million hospital cases annually. The progress of CAUTIs leads to severe health complications. Infections result in blockage of the medical device due to biofilm formation, which necessitates the replacement of the device. The objective of this study is to improve urological biomaterials to minimize microbial growth and reduce the incidence of CAUTIs. Challenges from mixed biofilm are crucial and need to be addressed in the development of new coating materials. Herein, an investigation highlighted the reduction of mixed biofilm overgrowth and attachment tendency on poly-2-hydroxyethyl methacrylate (p-HEMA) surface by loading the hydrogel with rifampicin (RIF), cefixime trihydrate (CFX), and combined ratios of RIF and CFX. Mixed biofilm-formation ability in (3:1) RIF: CFX-loading p-HEMA (F6) surface showed best tendency to resist form biofilm. Persistent antimicrobial activity increased in p-HEMA loaded with combined ratios of RIF and CFX surface compared to p-HEMA alone, antimicrobial activity lasted for 8 days. All fabricated films exhibited %cell viability higher than 75% on HEK 293 cells. The addition of RIF and CFX may improve the duration of urological device employment before replacement.
导管相关尿路感染(CAUTIs)是一种医院感染,每年导致超过 100 万例医院感染。CAUTIs 的进展会导致严重的健康并发症。感染会导致生物膜形成而导致医疗器械堵塞,从而需要更换设备。本研究的目的是改善泌尿科生物材料,以最大限度地减少微生物生长并降低 CAUTIs 的发生率。混合生物膜带来的挑战至关重要,需要在开发新的涂层材料时加以解决。在此,研究强调了通过在水凝胶中加载利福平(RIF)、头孢克肟三水合物(CFX)和 RIF 与 CFX 的组合比例,减少聚-2-羟乙基甲基丙烯酸酯(p-HEMA)表面上混合生物膜的过度生长和附着倾向。(3:1)RIF:CFX 加载 p-HEMA(F6)表面上的混合生物膜形成能力显示出最好的抵抗形成生物膜的趋势。与单独加载 p-HEMA 相比,加载 RIF 和 CFX 组合比例的 p-HEMA 持续的抗菌活性增加,抗菌活性持续了 8 天。所有制备的薄膜在 HEK 293 细胞上的细胞活力%均高于 75%。添加 RIF 和 CFX 可能会延长泌尿科器械在更换前的使用时间。