Tamimi Iskandar, Gasca María, Halbardier Alexandra, Martin Sergio, Martin Caballero Gregorio, Lucena Serrano Cristina, Martin Elena, Tamimi Faleh, González-Quevedo David, García de Quevedo David, Sobrino Beatriz, Palop Begoña, Guerado Enrique, Pérez Lara Almudena, Urdiales Cristina, Gómez de Gabriel Jesús Manuel
Orthopedic Surgery Department, Regional University Hospital of Malaga, Málaga, Spain.
Hospital HM de Malaga, Málaga, Spain.
Front Bioeng Biotechnol. 2024 Jul 2;12:1426388. doi: 10.3389/fbioe.2024.1426388. eCollection 2024.
The formation of bacterial biofilms on knee arthroplasty implants can have catastrophic consequences. The aim of this study was to analyze the effectiveness of the bioelectric effect in the elimination of bacterial biofilms on cultivated knee arthroplasty implants. A novel device was designed to deliver a bioelectric effect on the surface of knee arthroplasty implants. 4-femoral prosthetic implants were cultivated with a inoculum for 15 days. The components were divided into four different groups: A (not treated), B (normal saline 20-minutes), C (bioelectric effect 10-minutes), D (bioelectric effect 20-minutes). The implants were sonicated, and the detached colonies were quantified as the number of colony-forming unit (CFUs). The implants were sterilised and the process was repeated in a standardized manner four more times, to obtain a total of five samples per group. The number of the CFUs after a 10-minute exposure to the bioelectric effect was of 208.2 ± 240.4, compared with 6,041.6 ± 2010.7 CFUs in group A, representing a decrease of 96.5% ± 4.3 ( = 0.004). And a diminution of 91.8% ± 7.9 compared with 2,051.0 ± 1,364.0 CFUs in group B ( = 0.109). The number of bacterial colonies after a 20-minute exposure to the bioelectric effect was 70 ± 126.7 CFUs, representing a decrease of 98.9% ± 1.9 ( = 0.000) compared with group A. And a decrease of 97.8% ± 3.0 ( = 0.019) compared with group B. The bioelectric effect was effective in the elimination of bacterial biofilm from knee arthroplasty implants. This method could be used in the future as part of conventional surgical procedures.
膝关节置换植入物上细菌生物膜的形成可能会产生灾难性后果。本研究的目的是分析生物电效应在消除培养的膝关节置换植入物上细菌生物膜方面的有效性。设计了一种新型装置,用于在膝关节置换植入物表面产生生物电效应。将4个股骨假体植入物接种培养15天。这些组件被分为四个不同的组:A组(未处理)、B组(用生理盐水处理20分钟)、C组(施加生物电效应10分钟)、D组(施加生物电效应20分钟)。对接种物进行超声处理,将分离出的菌落定量为菌落形成单位(CFU)的数量。对接种物进行灭菌处理,并以标准化方式再重复该过程四次,以使每组总共获得五个样本。暴露于生物电效应10分钟后,CFU的数量为208.2±240.4,而A组为6,041.6±2010.7 CFU,减少了96.5%±4.3(P = 0.004)。与B组的2,051.0±1,364.0 CFU相比减少了91.8%±7.9(P = 0.109)。暴露于生物电效应20分钟后,细菌菌落数量为70±126.7 CFU,与A组相比减少了98.9%±1.9(P = 0.000)。与B组相比减少了97.8%±3.0(P = 0.019)。生物电效应在消除膝关节置换植入物上的细菌生物膜方面是有效的。该方法未来可作为传统外科手术的一部分使用。