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Membrane potentials, oxidative stress and the dispersal response of bacterial biofilms to 405 nm light

机译:膜电位,氧化应激和细菌生物膜的分散反应至405 nm光

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摘要

The majority of chronic infections are caused by biofilms, which have higher levels of antibiotic resistance than planktonic growth. Violet-blue 405 nm light has recently emerged as a novel bactericide, but limited studies have been conducted on its effectiveness against biofilms. We found that in response to 405 nm light both Pseudomonas aeruginosa and Bacillus subtilis biofilms exhibited cell dispersal and membrane potential hyperpolarisations. The response to 405 nm light depended on the stage of biofilm growth. The use of reactive oxygen species scavengers reduced membrane hyperpolarisation and biofilm dispersal in response to 405 nm light. This is the first time that membrane potential hyperpolarisations have been linked with photooxidative stress in bacteria and with biofilm dispersal. These results provide a new insight into the role of membrane potentials in the bacterial stress response and could be used in the development of 405 nm light based biofilm treatments.
机译:大多数慢性感染是由生物膜引起的,其抗生素抗性水平高于浮游生物。 紫色蓝色405 nm光最近被出现为一种新的杀菌剂,但是已经对其对生物膜的有效性进行了有限的研究。 我们发现,响应于405nm光,铜绿假单胞菌和枯草芽孢杆菌生物膜都表现出细胞分散和膜潜在的超极化。 对405 nm光的反应取决于生物膜生长的阶段。 反应性氧气种类清除剂的使用减少了膜高渗透剂和生物膜分散,响应于405nm光。 这是膜潜在的高发射膜首次与细菌中的光氧化胁迫与生物膜分散相连。 这些结果提供了新的洞察膜电位在细菌应激反应中的作用,并且可以用于405nm基的生物膜处理的发展。

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