微塑料和纳米塑料对鱼类三种塑料类型的行为和分子影响:风化微纤维对纳米颗粒的反应相似。

IF 3.6 Q2 TOXICOLOGY
Frontiers in toxicology Pub Date : 2024-11-26 eCollection Date: 2024-01-01 DOI:10.3389/ftox.2024.1490223
Sara J Hutton, Lauren Kashiwabara, Erin Anderson, Samreen Siddiqui, Bryan Harper, Stacey Harper, Susanne M Brander
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引用次数: 0

摘要

微和纳米塑料(MNPs)在环境中无处不在,在大多数生态系统中都被检测到,包括偏远地区。MNP保护伞下的污染物类别相当广泛,包括可变的聚合物类型,形状和大小。在环境中最常检测到的是纤维,其次是碎片,但仍然只占实验室研究的一小部分。许多毒性研究都是用聚苯乙烯微珠进行的,它既不代表聚合物,也不代表环境中最常见的形状。此外,这些研究大多是使用原始颗粒完成的,而大多数MNP污染来自二次微塑料,这些微塑料随着时间的推移已经风化和分解。为了解决这些数据缺口,我们将模型鱼内陆银鱼(Menidia beryllina)暴露在微纳米低温碾磨轮胎颗粒、微纳米聚乳酸和聚酯微纤维中21天,并对风化和未风化处理进行了测试。我们评估了这些颗粒对生长、行为和基因表达的影响,以比较不同颗粒的相对毒性。我们发现,总的来说,纳米颗粒和风化纤维对行为和基因表达的影响最大。基因本体论分析显示强有力的证据表明MNP暴露会影响肌肉收缩和功能的通路。未风化的微纤维生长减少,这可能是食物稀释的结果。我们的研究结果还表明,在风化条件下,聚酯微纤维分解成更小的尺寸,并诱导类似纳米颗粒的毒性。本研究强调了MNPs在鱼类中的可变效应,并强调了在毒性研究中考虑颗粒形状和大小的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Behavioral and molecular effects of micro and nanoplastics across three plastic types in fish: weathered microfibers induce a similar response to nanosized particles.

Micro and nanoplastics (MNPs) are ubiquitous in the environment and have been detected in most ecosystems, including remote regions. The class of contaminants under the MNP umbrella is quite broad and encompasses variable polymer types, shapes, and sizes. Fibers are the most frequently detected in the environment, followed by fragments, but still represent only a small fraction of laboratory studies. Many toxicity studies have been done using polystyrene microbeads which represent neither the polymer nor shape most present in the environment. Additionally, most of these studies are done using virgin particles when the majority of MNP pollution is from secondary microplastics which have weathered and broken down over time. To address these data gaps, we exposed the model fish Inland Silverside, Menidia beryllina, for 21-days to micro and nano cryo-milled tire particles, micro and nano polylactic acid, and polyester microfibers, both weathered and unweathered treatments were tested. We evaluated the impacts of these particles on growth, behavior, and gene expression to compare the relative toxicities of the different particles. We found that overall, the nanoparticles and weathered fibers had the greatest effect on behavior and gene expression. Gene ontology analysis revealed strong evidence suggesting MNP exposure affected pathways involved in muscle contraction and function. Unweathered microfibers decreased growth which may be a result of food dilution. Our results also suggest that under weathering conditions polyester microfibers breakdown into smaller sizes and induce toxicity similar to nanoparticles. This study highlights the variable effects of MNPs in fish and emphasizes the importance of considering particle shape and size in toxicity studies.

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CiteScore
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