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微(纳)塑料对海胆造成的物理和化学威胁。

Physical and chemical threats posed by micro(nano)plastic to sea urchins.

机构信息

ENEA, Department for Sustainability, Division Protection and Enhancement of the Natural Capital, P. le E. Fermi 1, 80055 Portici, Na, Italy.

ENEA, Department for Sustainability, Division Protection and Enhancement of the Natural Capital, P. le E. Fermi 1, 80055 Portici, Na, Italy.

出版信息

Sci Total Environ. 2022 Feb 20;808:152105. doi: 10.1016/j.scitotenv.2021.152105. Epub 2021 Dec 2.

DOI:10.1016/j.scitotenv.2021.152105
PMID:34863733
Abstract

The awareness of the plastic issue is rising in recent years. Our seas and coastal seawaters are investigated with the aim to evaluate the possible fate, behavior and the impact of these novel contaminants upon marine biota. In particular, benthic organisms are exposed to micro(nano)plastics that sink and accumulated on the seabed. Sea urchins can be prone to the plastic impact for all their lifespan with effect that can be extended upon the trophic cascade since their key role as grazer organisms. Moreover, they are largely used in the assessment of contaminant impact both as adult individuals and as early larval stages. This review analyzes the recent literature about the chemical and physical hazards posed by diverse polymers to sea urchins, in relation to their peculiar characteristics and to their size. The search was based on a query of the keyword terms: microplastic _ OR nanoplastic_AND Sea urchins in Web of Science and Google Scholar. The effects provoked by exposure of different sea urchin biological form are highlighted, considering both laboratory exposure and collection in real world. Additional focus has also been given upon the exposure methods utilized in laboratory test and in the existing limitations in the testing procedures. In conclusion, the micro(nano)plastics major impact seemed to be attributable to leaching compounds, however variability and lacking of realisms in the procedures do not allow a full understanding of the hazard posed by micro(nano)plastics for sea urchins. Finally, the work provides insights into the future research strategies to better characterize the actual risk for sea urchins.

摘要

近年来,人们对塑料问题的认识不断提高。我们对海洋和沿海水域进行了调查,旨在评估这些新型污染物在海洋生物群中的可能归宿、行为和影响。特别是,底栖生物会接触到下沉并积聚在海底的微(纳)塑料。由于海胆在整个生命周期内都容易受到塑料的影响,并且由于它们作为食草生物的关键作用,这种影响可能会在营养级联中进一步扩大。此外,它们被广泛用于评估污染物对成年个体和早期幼虫阶段的影响。

本综述分析了最近关于不同聚合物对海胆造成的化学和物理危害的文献,这些危害与它们的特殊特征和大小有关。搜索基于在 Web of Science 和 Google Scholar 中查询关键字:microplastic _ OR nanoplastic_AND Sea urchins。突出了不同海胆生物形式暴露所引起的影响,同时考虑了实验室暴露和在现实世界中的采集。还特别关注了实验室测试中使用的暴露方法以及测试程序中存在的局限性。

总之,微(纳)塑料的主要影响似乎归因于浸出化合物,然而,程序的可变性和缺乏现实性使得无法充分了解微(纳)塑料对海胆造成的危害。最后,这项工作为未来的研究策略提供了思路,以更好地描述海胆面临的实际风险。

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引用本文的文献

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Are Microfibers a Threat to Marine Invertebrates? A Sea Urchin Toxicity Assessment.微纤维对海洋无脊椎动物构成威胁吗?海胆毒性评估。
Toxics. 2024 Oct 17;12(10):753. doi: 10.3390/toxics12100753.
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(Micro)Plastics Are Toxic Pollutants.(微)塑料是有毒污染物。
Toxics. 2023 Nov 17;11(11):935. doi: 10.3390/toxics11110935.
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Exposure of adult sea urchin to stranded heavy fuel oil causes developmental toxicity on larval offspring.成年海胆暴露于搁浅的重质燃料油中会对幼虫后代造成发育毒性。
PeerJ. 2022 Apr 19;10:e13298. doi: 10.7717/peerj.13298. eCollection 2022.