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纳米塑料和微塑料对海洋青鳉鱼氧化状态和肠道微生物群的不同影响。

Different effects of nano- and microplastics on oxidative status and gut microbiota in the marine medaka Oryzias melastigma.

机构信息

Marine Biotechnology Research Center, Korea Institute of Ocean Science and Technology, Busan 49111, South Korea.

Department of Biological Sciences, College of Science, Sungkyunkwan University, Suwon 16419, South Korea.

出版信息

J Hazard Mater. 2021 Mar 5;405:124207. doi: 10.1016/j.jhazmat.2020.124207. Epub 2020 Oct 15.

Abstract

Plastic is regarded as a major environmental concern. In particular, nanoplastics and microplastics (NMPs) are attracting global attention due to their potential impact on aquatic organisms. Here, we examined the effects of NMPs (50 nm polystyrene microbead nanoplastics [NPs] and 45 µm microplastics [MPs]) on oxidative status and gut microbiota in the marine medaka Oryzias melastigma. The NP-exposed group exhibited stronger oxidative stress with higher activation levels of antioxidants compared to the MP-exposed group. However, the MP-exposed group demonstrated induction of intestinal damage (e.g., increased mucus ratio) with further alterations of gut microbiota, compared to the NP-exposed group. In particular, MPs caused more significant alterations of microbiota composition at both phylum and genus levels. Thus, in this study we show distinct toxicity pathways of NPs and MPs, an oxidative stress-mediated pathway (e.g., antioxidants) induced by NP exposure and dysbiosis of gut microbiota in association with immune dysfunction induced by MP exposure. Our results are helpful for expanding our knowledge about the impacts of NMPs as potentially harmful substances in the aquatic environment.

摘要

塑料被认为是一个主要的环境问题。特别是纳米塑料和微塑料(NMPs)由于其对水生生物的潜在影响而引起了全球关注。在这里,我们研究了 NMPs(50nm 聚苯乙烯微珠纳米塑料[NP]和 45μm 微塑料[MP])对海洋泥鳅 Oryzias melastigma 的氧化状态和肠道微生物群的影响。与 MP 暴露组相比,NP 暴露组表现出更强的氧化应激,抗氧化剂的激活水平更高。然而,与 NP 暴露组相比,MP 暴露组表现出肠道损伤的诱导(例如,粘液比例增加),并进一步改变了肠道微生物群。特别是,MPs 在门和属水平上引起了更显著的微生物群落组成的改变。因此,在这项研究中,我们展示了 NPs 和 MPs 的不同毒性途径,即 NP 暴露引起的氧化应激介导途径(例如,抗氧化剂)和与 MP 暴露引起的免疫功能障碍相关的肠道微生物群失调。我们的结果有助于扩展我们对 NMPs 作为水生环境中潜在有害物质的影响的认识。

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