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Influence of Bacterial Interactions on the Susceptibility to Photodynamic Inactivation

机译:细菌相互作用对光动力失活敏感性的影响

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Photodynamic therapy has emerged as a possible supplement to the existing protocols for endodontic disinfection. Microbes are known to gain significant ecological advantage when they survive as coaggregates and biofilms in an infected tissue. Such microbial coaggregates and biofilms have been confirmed to play a key role in the pathogenicity of many infections. So far, not many studies have correlated the efficacy of antimicrobial photodynamic inactivation (APDI) to the different modes of bacterial growth. This study aims to evaluate the APDI of 3 strains of Enterococcus faecatis in planktonic phase, in a co-aggregated suspension and in a 4-day old biofilm. The results showed that the biofilm mode of growth offered the greatest resistance to APDI and the inclusion of an efflux pump inhibitor significantly increased the APDI of biofilm bacteria. From this study, we conclude that APDI of bacteria in biofilms is the most challenging and that the use of bacterial efflux pump inhibitors enhances its photodynamic anti-biofilm efficacy.
机译:光动力疗法已经出现,可以作为对牙髓消毒的现有方案的可能补充。众所周知,当微生物在被感染的组织中以聚集体和生物膜的形式生存时,它们将获得显着的生态优势。已经证实这种微生物聚集体和生物膜在许多感染的致病性中起关键作用。到目前为止,很少有研究将抗菌素光动力学灭活(APDI)的功效与细菌生长的不同模式相关联。本研究旨在评估浮游期,共聚集悬浮液和4天龄生物膜中3株粪肠球菌的APDI。结果表明,生物膜的生长方式提供了对APDI的最大抵抗力,而外排泵抑制剂的加入显着增加了生物膜细菌的APDI。从这项研究中,我们得出结论,生物膜中细菌的APDI是最具挑战性的,并且细菌外排泵抑制剂的使用可增强其光动力学抗生物膜功效。

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