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生态冠在水生系统中的纳米材料上的形成减轻了它们的毒性影响:全面综述。

Eco-corona formation on the nanomaterials in the aquatic systems lessens their toxic impact: A comprehensive review.

机构信息

School of Biosciences and Technology, VIT University, Vellore, India; Centre for Nanobiotechnology, VIT, Vellore, Tamil Nadu, India.

School of Agricultural Innovations and Advanced Learning, VIT, Vellore, Tamil Nadu, India.

出版信息

Environ Res. 2021 Mar;194:110669. doi: 10.1016/j.envres.2020.110669. Epub 2020 Dec 24.

Abstract

Recent studies have shown that nanosized materials including plastics as a major cause of concern in the aquatic ecosystem. Fortunately, in the aquatic environment, the surface of the materials is often colonized by exudates of aquatic microorganisms (biofilm), where these materials are attached and surrounded by a secreted matrix with a sticky layer. The significance of these biofilms on the existence and beneficial implications of these pollutants has been studied in recent decades. Here we develop the concept of these pollutants as a complex matrix of polymers to which Extracellular Polymeric Substances (EPS) binds to form eco-corona modifying its density and surface charge of these particles. This review critically integrates the outstanding properties and functions of algal EPS in the aquatic environment and their dynamic interactions of early colonization on the surface of these pollutants, the impact of biofilm formation on stability, reactivity and, toxicity from the current literature. Due to the modifications of the environmental processes, EPS can have an impact on the toxicity thus special attention is focused on their behavior to decrease the toxicity of the pollutants in the aquatic environment. Although there has been an increasing number of researches in this area, further progress is needed to explore the extent to which ecological processes could be impacted, including the modifications in the behavior of aquatic pollutants. Thus, this review provides a recent perspective into the mechanisms of how eco-corona formation mitigates the toxicity of nanomaterials prevalent in aquatic ecosystems.

摘要

最近的研究表明,纳米材料包括塑料是水生生态系统中一个主要关注的问题。幸运的是,在水生环境中,材料的表面通常会被水生微生物的分泌物(生物膜)定植,这些材料附着在分泌基质上并被其包围,形成一个具有粘性层的结构。近几十年来,人们研究了这些生物膜对这些污染物存在和有益影响的意义。在这里,我们将这些污染物的概念发展为一种聚合物的复杂基质,其中细胞外聚合物物质(EPS)与污染物结合,形成生态冠,改变这些颗粒的密度和表面电荷。这篇综述批判性地整合了藻类 EPS 在水生环境中的突出特性和功能,以及它们在这些污染物表面早期定植的动态相互作用,生物膜形成对稳定性、反应性和毒性的影响,综述了当前文献中的研究。由于环境过程的改变,EPS 可能会对毒性产生影响,因此特别关注它们的行为,以降低水生环境中污染物的毒性。尽管在这一领域已经有越来越多的研究,但仍需要进一步的进展来探索生态过程可能受到的影响程度,包括对水生污染物行为的改变。因此,本文综述了生态冠形成如何减轻水生生态系统中普遍存在的纳米材料毒性的机制的最新观点。

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