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Aerobic condition enhances bacteriostatic effects of silver nanoparticles in aquatic environment: an antimicrobial study on Pseudomonas aeruginosa

机译:有氧条件增强了水环境中银纳米颗粒的抑菌作用:铜绿假单胞菌的抗菌研究

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摘要

The intensive applications of silver nanoparticles (AgNPs) inevitably cause continuous release of such materials into environments, as a consequence posing potential risks to microbial communities in engineered or natural ecosystems. However, the magnitude of antibacterial capacity of nanoparticles is still inconclusive, owing to influential factors such as the size of nanoparticle, microbial species, or environmental conditions. To reveal whether the presence of air would alter AgNPs ecotoxicity, Pseudomonas aeruginosa PAO1, a facultative denitrifying bacterium and an opportunity pathogen, was used to study antibacterial assays under both anaerobic and aerobic conditions. The results indicate that the respiration status of P. aeruginosa affect the ecotoxicity of AgNPs. P. aeruginosa cultured under aerobic condition were more susceptible to AgNPs than that under anaerobic condition. Aerobic condition greatly enhanced bacteriostatic effects of AgNPs but not their bactericidal effects, as the ratio of viable but nonculturable (VBNC) bacteria remained above 90% when 5 mg L−1 AgNPs applied. Our findings offer further understanding for the degree of toxicity of nanoparticles on microbial ecosystems and underscore the importance of exposure condition (e.g. oxygen) in the mode of action of AgNPs.
机译:银纳米颗粒(AgNPs)的大量应用不可避免地导致此类材料不断释放到环境中,从而对工程化或自然生态系统中的微生物群落构成潜在风险。然而,由于诸如纳米颗粒的尺寸,微生物种类或环境条件的影响因素,纳米颗粒的抗菌能力的大小仍然不确定。为了揭示空气的存在是否会改变AgNPs的生态毒性,使用了兼性反硝化细菌和机会病原体的铜绿假单胞菌PAO1来研究厌氧和有氧条件下的抗菌测定。结果表明铜绿假单胞菌的呼吸状态影响AgNPs的生态毒性。在有氧条件下培养的铜绿假单胞菌比在无氧条件下对AgNPs更敏感。有氧条件极大地增强了AgNPs的抑菌作用,但没有增强其杀菌作用,因为当使用5mg L -1 AgNPs时,存活但不可培养的(VBNC)细菌的比例保持在90%以上。我们的发现为纳米颗粒对微生物生态系统的毒性程度提供了进一步的理解,并强调了暴露条件(例如氧气)在AgNPs作用方式中的重要性。

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