IEEE Trans Biomed Eng. 2021 Nov;68(11):3241-3249. doi: 10.1109/TBME.2021.3066995. Epub 2021 Oct 19.
This work introduces an integrated system incorporated seamlessly with a commercial Foley urinary catheter for bacterial growth sensing and biofilm treatment.
The system is comprised of flexible, interdigitated electrodes incorporated with a urinary catheter via a 3D-printed insert for impedance sensing and bioelectric effect-based treatment. Each of the functions were wirelessly controlled using a custom application that provides a user-friendly interface for communicating with a custom PCB via Bluetooth to facilitate implementation in practice.
The integrated catheter system maintains the primary functions of indwelling catheters - urine drainage, balloon inflation - while being capable of detecting the growth of Escherichia coli, with an average decrease in impedance of 13.0% after 24 hours, tested in a newly-developed simulated bladder environment. Furthermore, the system enables bioelectric effect-based biofilm reduction, which is performed by applying a low-intensity electric field that increases the susceptibility of biofilm bacteria to antimicrobials, ultimately reducing the required antibiotic dosage.
Overall, this modified catheter system represents a significant step forward for catheter-associated urinary tract infection (CAUTI) management using device-based approaches, integrating flexible electrodes with an actual Foley catheter along with the control electronics and mobile application.
CAUTIs, exacerbated by the emergence of antibiotic-resistant pathogens, represent a significant challenge as one of the most prevalent healthcare-acquired infections. These infections are driven by the colonization of indwelling catheters by bacterial biofilms.
本工作介绍了一个集成系统,该系统与商用 Foley 导尿管无缝集成,用于细菌生长感应和生物膜处理。
该系统由柔性叉指电极组成,通过 3D 打印插件与导尿管集成,用于阻抗感应和基于生物电的治疗。每个功能都通过一个定制应用程序进行无线控制,该应用程序提供了一个用户友好的界面,通过蓝牙与定制 PCB 进行通信,以方便在实际中实施。
集成导管系统保持留置导管的主要功能 - 尿液引流、球囊充气 - 同时能够检测大肠杆菌的生长,在新开发的模拟膀胱环境中,24 小时后阻抗平均降低 13.0%。此外,该系统还能够实现基于生物电的生物膜减少,通过施加低强度电场来提高生物膜细菌对抗生素的敏感性,从而减少所需的抗生素剂量。
总体而言,该改良导管系统代表了在基于设备的方法中管理与导管相关的尿路感染 (CAUTI) 的重要进展,它将柔性电极与实际的 Foley 导尿管以及控制电子设备和移动应用集成在一起。
CAUTIs 是最常见的医院获得性感染之一,由于抗生素耐药病原体的出现,这是一个重大挑战。这些感染是由细菌生物膜在留置导管上的定植引起的。