Kim Hosan, Makin Inder, Skiba Jeff, Ho Amy, Housler Greggory, Stojadinovic Alexander, Izadjoo Mina
Diagnostics and Translational Research Center, Henry M Jackson Foundation for the Advancement of Military Medicine, Gaithersburg, MD, USA.
Vomaris, Inc. Vomaris Innovations Inc., Chandler, AZ, USA.
Open Microbiol J. 2014 Feb 21;8:15-21. doi: 10.2174/1874285801408010015. eCollection 2014.
Silver-based wound dressings have been developed for the control of bioburden in wounds. However, the popularity and extensive use of silver-based dressings has been associated with emerging microbial resistances to silver. In this study we examined in vitro antibacterial efficacy of a bioelectric dressing containing silver and zinc against various wound pathogens. Antibiotic-sensitive clinical wound isolates showed a 100% reduction in bacterial growth, except that Enterococcus faecalis isolate was shown to survive with a bacterial log10 reduction rate of less than 10(2) CFU. We also investigated antibacterial efficacy against the extended spectrum β-lactamase (ESBL) bacteria, multidrug-resistant (MDR) bacteria, and methicillin-resistant Staphylococcus aureus (MRSA). The bioelectric dressing was effective in killing wound pathogens including ESBL, MDR, and MRSA in vitro. Furthermore, based on the primary results against E. faecalis, we carried out extensive studies against several nosocomial Enterococcus species including vancomycin-resistant species. Overall, the vancomycin-sensitive or -resistant Enterococcus species were resistant to this dressing at up to 48 h, except for the vancomycin-resistant Enterococcus raffinosus isolate only showing a 100% bacterial reduction at 48 h, but not at 24 h. The results demonstrated the effective bactericidal activity of a bioelectric dressing against antibiotic-sensitive and MDR strains, but Enterococcus species are bacteriostatic.
银基伤口敷料已被开发用于控制伤口中的生物负荷。然而,银基敷料的广泛使用与微生物对银的耐药性不断出现有关。在本研究中,我们检测了一种含银和锌的生物电敷料对各种伤口病原体的体外抗菌效果。除粪肠球菌分离株在细菌对数减少率小于10(2) CFU的情况下仍存活外,对多种抗生素敏感的临床伤口分离株的细菌生长减少了100%。我们还研究了该敷料对超广谱β-内酰胺酶(ESBL)细菌、多重耐药(MDR)细菌和耐甲氧西林金黄色葡萄球菌(MRSA)的抗菌效果。该生物电敷料在体外能有效杀灭包括ESBL、MDR和MRSA在内的伤口病原体。此外,基于对粪肠球菌的初步研究结果,我们对包括耐万古霉素菌种在内的几种医院内肠球菌进行了广泛研究。总体而言,万古霉素敏感或耐药的肠球菌在长达48小时内对该敷料具有耐药性,除了耐万古霉素棉子糖肠球菌分离株仅在48小时时细菌减少了100%,而在24小时时未出现这种情况。结果表明,生物电敷料对抗生素敏感和MDR菌株具有有效的杀菌活性,但对肠球菌属具有抑菌作用。