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细菌-纳米颗粒相互作用在纳米污垢中的作用。

Bacteria-nanoparticle interactions in the context of nanofouling.

机构信息

Saint-Hyacinthe Research and Development Centre, 3600 Casavant Blvd West, Saint-Hyacinthe, QC J2S 8E3, Canada.

Kentville Research and Development Centre, 32 Main Street, Kentville, NS B4N 1J5, Canada.

出版信息

Adv Colloid Interface Sci. 2020 Mar;277:102106. doi: 10.1016/j.cis.2020.102106. Epub 2020 Jan 15.

Abstract

The attachment of microbial communities to surfaces is a well-known problem recognized to be involved in a variety of critical issues in the sectors of food processing, chronic wounds, infection from implants, clogging of membranes and corrosion of equipment. Considering the importance of the detrimental impact of biofouling, it has received much attention in the scientific community and from concerned stakeholders. With the development of nanotechnology and the nowadays widespread use of engineered nanoparticles (ENPs), concerns have been raised regarding their fate in terrestrial and aquatic environments. Safety aspects and public health issues are critical in the management of handling nanomaterials and their nanowastes. The interactions of various types of nanoparticles (NPs) with planktonic bacteria have also received attention due to their antimicrobial properties. However, their behavior in regard to biofilms is not well understood although, in the environment, most of the bacteria prefer living in sessile communities. The question appears relevant considering the need to build knowledge on the fate of nanoparticles and the fact that no one can exclude the risk of accumulation of nanoparticles in biofilms and on surfaces leading to a form of nanofouling involving both engineered nanoparticles (ENPs) and nanoplastics. The present analysis of recent research accounts allows in identifying that (1) research activities related to water remediation systems have been mostly oriented on the impact of NPs on pre-existing biofilms, (2) experimental designs are restricted to few scenarios of exposure, usually limited to relative short-time periods although nanofouling could favour the development of multi-resistant bacterial species through sub-lethal exposures over prolong periods of time (3) nanofouling in other systems in which biofilms develop remains to be addressed, and (4) new research directions are required for investigating the mechanisms involved and the subsequent impact of nanofouling on bacterial consortium responses encountered in a variety of environments such as those prevailing in food production/processing settings. Finally, this review aims at providing recent information and insights on nanoparticle-bacterial interactions in the context of biofilms in order to supply an updated outlook of research perspectives that could help establish the framework for production, use and fate of nanomaterials as well as future research directions.

摘要

微生物群落附着在表面是一个众所周知的问题,被认为涉及食品加工、慢性伤口、植入物感染、膜堵塞和设备腐蚀等多个关键领域。鉴于生物污垢的有害影响的重要性,它在科学界和相关利益相关者中受到了广泛关注。随着纳米技术的发展和当今工程纳米颗粒(ENP)的广泛使用,人们对它们在陆地和水生环境中的命运产生了担忧。在处理纳米材料及其纳米废物时,安全方面和公共卫生问题至关重要。由于其抗菌特性,各种类型的纳米颗粒(NP)与浮游细菌的相互作用也受到了关注。然而,尽管在环境中,大多数细菌更喜欢生活在静止的群落中,但它们在生物膜中的行为还不是很清楚。考虑到需要建立对纳米颗粒命运的了解,而且没有人可以排除纳米颗粒在生物膜和表面上积累的风险,从而形成涉及工程纳米颗粒(ENP)和纳米塑料的纳米污垢,这个问题似乎很重要。对最近研究的分析表明,(1)与水修复系统相关的研究活动主要集中在 NPs 对现有生物膜的影响上,(2)实验设计仅限于几种暴露情况,通常仅限于相对较短的时间内,尽管纳米污垢可能会通过长时间的亚致死暴露促进多耐药细菌的发展,(3)其他生物膜形成系统中的纳米污垢仍然需要解决,(4)需要新的研究方向来研究所涉及的机制以及纳米污垢对在各种环境中遇到的细菌群落反应的后续影响,例如在食品生产/加工环境中。最后,本综述旨在提供有关生物膜中纳米颗粒-细菌相互作用的最新信息和见解,以提供研究视角的最新观点,这有助于为纳米材料的生产、使用和命运建立框架以及未来的研究方向。

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