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“Life-like” assessment of antimicrobial surfaces by a new touch transfer assay displays strong superiority of a copper alloy compared to silver containing surfaces

机译:通过新的触摸转移测定法对抗菌剂表面进行“栩栩如生”评估,与含银表面相比,铜合金具有强大的优势

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摘要

Transmission of bacteria from inanimate surfaces in healthcare associated environments is an important source of hospital acquired infections. A number of commercially available medical devices promise to fulfill antibacterial activity to reduce environmental contamination. In this study we developed a touch transfer assay modeling fingerprint transmission to investigate the antibacterial activity of surfaces, with confirmed antibacterial activity by a modified ISO 22196 (JIS Z 2801) assay to test such surfaces under more realistic conditions. Bacteria were taken up from a dry standardized primary contaminated surface (PCS) with disinfected fingers or fingers covered with sterile and moistened cotton gloves. Subsequently, bacteria were transferred by pressing on secondary contaminated surfaces (SCS) with or without potential antibacterial activity and the relative reduction rate was determined after 24 h. A stable transmission rate between PCS and SCS was observed using moistened sterile gloves. A copper containing alloy displayed at least a tenfold reduction of the bacterial load consistently reaching less than 2.5 cfu/cm2. In contrast, no significant reduction of bacterial contamination by silver containing surfaces and matured pure silver was observed in the touch transfer assay. With the touch transfer assay we successfully established a new reproducible method modeling cross contamination. Using the new method we were able to demonstrate that several surfaces with confirmed antimicrobial activity in a modified ISO 22196 (JIS Z 2801) assay lacked effectiveness under defined ambient conditions. This data indicate that liquid based assays like the ISO 22196 should be critically reviewed before claiming antibacterial activity for surfaces in the setting of contamination of dry surfaces by contact to the human skin. We suggest the newly developed touch transfer assay as a new additional tool for the assessment of potential antimicrobial surfaces prior utilization in hospital environments.
机译:在与医疗保健相关的环境中,无生命表面的细菌传播是医院获得性感染的重要来源。许多可商购的医疗器械有望实现抗菌活性以减少环境污染。在这项研究中,我们开发了一种模拟指纹传输的触摸转移测定法,以研究表面的抗菌活性,并通过改进的ISO 22196(JIS Z 2801)测定法确认了抗菌活性,以在更现实的条件下测试此类表面。从干燥的标准化主要污染表面(PCS)上吸收细菌,并用消毒过的手指或用无菌和湿润的棉手套覆盖的手指。随后,通过压在具有或不具有潜在抗菌活性的次生污染表面(SCS)上转移细菌,并在24小时后确定相对减少率。使用潮湿的无菌手套观察到PCS和SCS之间的稳定传输速率。含铜合金的细菌负荷至少降低了十倍,始终低于2.5 cfu / cm 2 。相反,在触摸转移测定中未观察到含银表面和成熟的纯银对细菌污染的显着降低。通过触摸转移测定法,我们成功建立了模拟交叉污染的可重现的新方法。使用新方法,我们能够证明,在经过修改的ISO 22196(JIS Z 2801)分析中,具有确认抗菌活性的多个表面在规定的环境条件下缺乏有效性。该数据表明,在声称对人体皮肤有干燥表面污染的环境中要求对表面具有抗菌活性之前,应严格审查基于液体的测定(如ISO 22196)。我们建议将新开发的接触转移测定法作为一种新的附加工具,用于在医院环境中使用之前评估潜在的抗菌表面。

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