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Factors impacting the interactions of engineered nanoparticles with bacterial cells and biofilms: Mechanistic insights and state of knowledge

机译:影响工程化纳米颗粒与细菌细胞和生物膜相互作用的因素:机理见解和知识状态

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Since their advent a few decades ago, engineered nanoparticles (ENPs) have been extensively used in consumer products and industrial applications and their use is expected to continue at the rate of thousands of tons per year in the next decade. The widespread use of ENPs poses a potential risk of large scale environmental proliferation of ENPs which can impact and endanger environmental health and safety. Recent studies have shown that microbial biofilms can serve as an important biotic component for partitioning and perhaps storage of ENPs released into aqueous systems. Considering that biofilms can be one of the major sinks for ENPs in the environment, and that the field of biofilms itself is only three to four decades old, there is a recent and growing body of literature investigating the ENP-biofilm interactions. While looking at biofilms, it is imperative to consider the interactions of ENPs with the planktonic microbial cells inhabiting the bulk systems in the vicinity of surface-attached biofihns. In this review article, we attempt to establish the state of current knowledge regarding the interactions of ENPs with bacterial cells and biofilms, identifying key governing factors and interaction mechanisms, as well as prominent knowledge gaps. Since the context of ENP-biofilm interactions can be multifarious-ranging from ecological systems to water and wastewater treatment to dental/medically relevant biofilms- and includes devising novel strategies for biofilm control, we believe this review will serve an interdisciplinary audience. Finally, the article also touches upon the future directions that the research in the ENP-microbial cells/biofilm interactions could take. Continued research in this area is important to not only enhance our scientific knowledge and arsenal for biofilm control, but to also support environmental health while reaping the benefits of the 'nanomaterial revolution'.
机译:自从几十年前问世以来,工程纳米颗粒(ENP)已广泛用于消费产品和工业应用,并且在未来十年中,预计每年将以数千吨的速度继续使用它们。 ENP的广泛使用带来了ENP大规模环境扩散的潜在风险,这可能影响并危及环境健康和安全。最近的研究表明,微生物生物膜可以作为重要的生物成分,用于分配和存储释放到水系统中的ENP。考虑到生物膜可能是环境中ENP的主要吸收者之一,而且生物膜本身的领域只有三到四十年的历史,因此有越来越多的文献研究ENP与生物膜的相互作用。在观察生物膜时,必须考虑ENPs与浮游微生物细胞的相互作用,该浮游微生物细胞居住在表面附着生物膜附近的整体系统中。在这篇综述文章中,我们试图建立有关ENP与细菌细胞和生物膜相互作用的当前知识状态,确定关键的控制因素和相互作用机制,以及突出的知识差距。由于ENP-生物膜相互作用的背景非常广泛,从生态系统到水和废水处理再到与牙齿/医学相关的生物膜-包括设计生物膜控制的新策略,我们相信本综述将为跨学科的读者服务。最后,本文还谈到了ENP-微生物细胞/生物膜相互作用研究的未来方向。在这一领域的持续研究不仅对于增强我们的生物膜控制科学知识和武器库非常重要,而且对于在获取“纳米材料革命”的好处的同时支持环境健康也很重要。

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