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Impact of TiO2 Nanoparticles on Growth Biofilm Formation and Flavin Secretion in Shewanella oneidensis

机译:TiO2纳米颗粒对拟南芥生长生物膜形成和黄素分泌的影响

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摘要

Understanding of nanoparticle impacts on critical bacteria functions allows us to gain a mechanistic understanding of toxicity and guides us towards design rules for creating safe nanomaterials. Herein and using analytical techniques, biofilm formation, a general bacteria function, and riboflavin secretion, a species-specific function, were monitored in Shewanella oneidensis, a metal reducing bacterium, following exposure to a variety of TiO2 nanoparticle types (synthesized, Aeroxide P25, and T-Eco). TEM images show that dosed nanoparticles are in close proximity to the bacteria but they are not internalized. Using quartz crystal microbalance (QCM), it was revealed that S. oneidensis biofilm formation is slowed in the presence of nanoparticles. Though S. oneidensis grows more slowly in the presence of TiO2 nanoparticles, riboflavin secretion, a function related to the S. oneidensis metal reducing capacity, was increased significantly in a nanoparticle dose-dependent manner. Both changes in biofilm formation and riboflavin secretion are supported by changes in gene expression in nanoparticle-exposed S. oneidensis. This broad study of bacterial nanotoxicity, including use of sensitive analytical tools for functional assessments of biofilm formation, riboflavin secretion, and gene expression has implications for total ecosystem health as the use of engineered nanoparticles grows.
机译:了解纳米颗粒对关键细菌功能的影响,使我们对毒性有了机械的了解,并指导我们遵循创建安全纳米材料的设计规则。在本文中,并使用分析技术,在暴露于多种TiO2纳米颗粒类型(合成的,Aeroxide P25或TiO2纳米颗粒)中,对金属还原细菌Shewanella oneidensis进行了生物膜形成(一般细菌功能)和核黄素分泌(物种特异性功能)的监测。和T-Eco)。 TEM图像显示,定量的纳米颗粒与细菌非常接近,但没有被内化。使用石英晶体微量天平(QCM),发现在存在纳米颗粒的情况下,葡萄球菌生物膜的形成减慢了。尽管在TiO2纳米颗粒的存在下,oneidensis的生长较慢,但核黄素的分泌(一种与anidensis的金属还原能力有关的功能)以纳米颗粒剂量依赖性的方式显着增加。生物膜形成和核黄素分泌的变化都受到纳米颗粒暴露的沙门氏菌基因表达的变化的支持。这项对细菌纳米毒性的广泛研究,包括使用敏感的分析工具对生物膜形成,核黄素分泌和基因表达进行功能评估,随着工程纳米颗粒的使用不断增长,对整个生态系统健康都具有影响。

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