Xiangya School of Pharmaceutical Sciences, Central South University, Changsha 410013, P. R. China.
Hunan Key Laboratory of Diagnostic and Therapeutic Drug Research for Chronic Diseases, Changsha 410078, P. R. China.
ACS Appl Mater Interfaces. 2022 Sep 21;14(37):41671-41683. doi: 10.1021/acsami.2c07378. Epub 2022 Sep 9.
The formation of microbial biofilms is acknowledged as a major virulence factor in a range of persistent local infections. Failures to remove biofilms with antibiotics foster the emergence of antibiotic-resistant bacteria and result in chronic infections. As a result, the construction of effective biofilm-inhibiting and biofilm-eradicating chemicals is urgently required. Herein, we designed a water-soluble probe for membrane-active fluorescence and broad-spectrum antimicrobial actions, particularly against methicillin-resistant (MRSA), which shows multidrug resistance. and experiments demonstrate its high antibacterial effects comparable to vancomycin. Furthermore, it inhibits biofilm formation by effectively killing planktonic bacteria at low inhibitory concentrations, without toxicity to mammalian cells. More importantly, this probe can efficiently penetrate through biofilm barriers and exterminate bacteria that are enclosed within biofilms and startle existing biofilms. In the mouse model of implant-related biofilm infections, this probe exhibits strong antibiofilm activity against MRSA biofilms, thus providing a novel theranostic strategy to disrupt biofilms effectively. Our results indicate that this probe has the potential to be used for the development of a combinatorial theranostic platform with synergistic enhanced effects for the treatment of multidrug-resistant bacterial infections and antibiofilm medications.
微生物生物膜的形成被认为是多种持续性局部感染的主要毒力因子。未能用抗生素清除生物膜会助长抗生素耐药菌的出现,并导致慢性感染。因此,迫切需要构建有效的抑制生物膜和清除生物膜的化学物质。在这里,我们设计了一种水溶性探针,用于膜活性荧光和广谱抗菌作用,特别是针对耐甲氧西林金黄色葡萄球菌(MRSA),它表现出多药耐药性。 和 实验表明,它具有与万古霉素相当的高抗菌效果。此外,它可以通过在低抑制浓度下有效杀死浮游菌来抑制生物膜的形成,而对哺乳动物细胞没有毒性。更重要的是,这种探针可以有效地穿透生物膜屏障,消灭被生物膜包裹的细菌,并对现有的生物膜产生冲击。在与植入物相关的生物膜感染的小鼠模型中,该探针对 MRSA 生物膜表现出很强的抗生物膜活性,从而为有效破坏生物膜提供了一种新的治疗策略。我们的结果表明,该探针有可能被用于开发一种联合治疗诊断平台,具有协同增效作用,用于治疗多药耐药菌感染和抗生物膜药物。