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微塑料在微藻细胞聚集中的作用:原子力显微镜在分子尺度上的研究。

The role of microplastics in microalgae cells aggregation: A study at the molecular scale using atomic force microscopy.

机构信息

TBI, Université de Toulouse, INSA, INRAE, CNRS, Toulouse, France; LAAS, Université de Toulouse, CNRS, Toulouse, France.

UMR 5623 IMRCP, CNRS, Toulouse, France.

出版信息

Sci Total Environ. 2022 Aug 1;832:155036. doi: 10.1016/j.scitotenv.2022.155036. Epub 2022 Apr 4.

Abstract

Plastic pollution has become a significant concern in aquatic ecosystems, where photosynthetic microorganisms such as microalgae represent a major point of entry in the food chain. For this reason an important challenge is to better understand the consequences of plastic pollution on microalgae and the mechanisms underlying the interaction between plastic particles and cell's interfaces. In this study, to answer such questions, we developed an interdisciplinary approach to investigate the role of plastic microparticles in the aggregation of a freshwater microalgae species, Chlorella vulgaris. First, the biophysical characterization, using atomic force microscopy, of the synthetic plastic microparticles used showed that they have in fact similar properties than the ones found in the environment, with a rough, irregular and hydrophobic surface, thereby making them a relevant model. Then a combination of optical imaging and separation experiments showed that the presence of plastic particles in microalgae cultures induced the production of exopolysaccharides (EPS) by the cells, responsible for their aggregation. However, cells that were not cultured with plastic particles could also form aggregates when exposed to the particles after culture. To understand this, advanced single-cell force spectroscopy experiments were performed to probe the interactions between cells and plastic microparticles; the results showed that cells could directly interact with plastic particles through hydrophobic interactions. In conclusion, our experimental approach allowed highlighting the two mechanisms by which plastic microparticles trigger cell aggregation; by direct contact or by inducing the production of EPS by the cells. Because these microalgae aggregates containing plastic are then consumed by bigger animals, these results are important to understand the consequences of plastic pollution on a large scale.

摘要

塑料污染已成为水生生态系统中的一个重大问题,而光合微生物,如微藻,则是食物链中的主要入口。因此,一个重要的挑战是更好地了解塑料污染对微藻的影响,以及塑料颗粒与细胞界面之间相互作用的机制。在这项研究中,为了回答这些问题,我们开发了一种跨学科的方法来研究塑料微颗粒在淡水微藻物种——普通小球藻聚集过程中的作用。首先,使用原子力显微镜对合成塑料微颗粒进行生物物理特性表征,结果表明它们实际上具有与环境中相同的性质,表面粗糙、不规则且疏水,因此成为一个相关的模型。然后,光学成像和分离实验的结合表明,塑料颗粒在微藻培养物中的存在会诱导细胞产生胞外多糖(EPS),从而导致其聚集。然而,即使在没有塑料颗粒培养的情况下,当细胞暴露于培养后的颗粒时,它们也可以形成聚集体。为了理解这一点,我们进行了先进的单细胞力谱实验,以探测细胞与塑料微颗粒之间的相互作用;结果表明,细胞可以通过疏水相互作用直接与塑料颗粒相互作用。总之,我们的实验方法强调了塑料微颗粒引发细胞聚集的两种机制;通过直接接触或通过诱导细胞产生 EPS。因为这些含有塑料的微藻聚集体随后被更大的动物消耗,所以这些结果对于了解塑料污染在大规模上的影响非常重要。

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